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WO2025077130A1 - 服务器安装结构及服务器系统 - Google Patents

服务器安装结构及服务器系统 Download PDF

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Publication number
WO2025077130A1
WO2025077130A1 PCT/CN2024/087891 CN2024087891W WO2025077130A1 WO 2025077130 A1 WO2025077130 A1 WO 2025077130A1 CN 2024087891 W CN2024087891 W CN 2024087891W WO 2025077130 A1 WO2025077130 A1 WO 2025077130A1
Authority
WO
WIPO (PCT)
Prior art keywords
locking module
server
locking
slide rail
column
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
PCT/CN2024/087891
Other languages
English (en)
French (fr)
Inventor
李小政
袁佳金
王丽
尹秀忠
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Suzhou Metabrain Intelligent Technology Co Ltd
Original Assignee
Suzhou Metabrain Intelligent Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Suzhou Metabrain Intelligent Technology Co Ltd filed Critical Suzhou Metabrain Intelligent Technology Co Ltd
Publication of WO2025077130A1 publication Critical patent/WO2025077130A1/zh
Pending legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F15/00Digital computers in general; Data processing equipment in general
    • G06F15/16Combinations of two or more digital computers each having at least an arithmetic unit, a program unit and a register, e.g. for a simultaneous processing of several programs
    • G06F15/161Computing infrastructure, e.g. computer clusters, blade chassis or hardware partitioning
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

Definitions

  • the present application belongs to the field of server technology, and specifically relates to a server installation structure and a server system.
  • the server needs to be installed in a cabinet, and the cabinet is equipped with connecting wires and other devices.
  • a ball rail is usually connected to the server, the server is moved to the opening of the cabinet, and then the server is pushed into the cabinet through the ball rail.
  • the cost of the ball rail is relatively high, which increases the cost of installing the server.
  • the purpose of the embodiments of the present application is to provide a server installation structure and a server system, which at least solves the problem that the cost of ball rails is high, thereby increasing the cost of server installation.
  • an embodiment of the present application provides a server installation structure, the server installation structure comprising: a server, the server is used to be installed in a cabinet, the cabinet comprises a receiving cavity and an opening, the opening is communicated with the receiving cavity;
  • the first locking module includes a first spring sheet, a locking member and a first spring
  • the second locking module includes a second spring sheet, a portion of the first spring sheet is fixed to the slide rail, and a first gap is formed between the first spring sheet and the slide rail, the locking member is rotatably connected to the slide rail, and one end of the first spring is connected to the first spring sheet, and the other end of the first spring is connected to the locking member, a portion of the second spring sheet is fixed to the slide rail, and an angle is formed between a portion of the second spring sheet and the slide rail, and a blocking member is provided on the second spring sheet;
  • the locking piece When the first locking module is in a locked state, the locking piece is partially located in the first gap, and the first spring is in a stretched state; when the first locking module is in an unlocked state, the locking piece is located outside the first gap, and the first spring returns to its initial state; when the second locking module is in a locked state, the angle is a first angle, and the blocking piece is away from the slide rail; when the second locking module is in an unlocked state, the angle is a second angle, and the blocking piece is close to the slide rail; wherein the first angle is greater than the second angle.
  • the first elastic sheet extends along the extension direction of the slide rail, the first elastic sheet includes a first elastic portion and a second elastic portion, the first elastic portion is connected to the second elastic portion, the first elastic portion is close to the second locking module, and the second elastic portion is far from the second locking module;
  • the first elastic part is fixed to the slide rail, a first gap is formed between the second elastic part and the slide rail, the locking member is rotatably connected to the slide rail, one end of the first spring is connected to the first elastic part, the other end of the first spring is connected to the locking member, and a blocking sheet is provided on the second elastic part;
  • the locking piece When the first locking module is in a locked state, the locking piece is partially located in the first gap to increase the first gap, and the first spring is in a stretched state; when the first locking module is in an unlocked state, the locking piece is located outside the first gap, and the first spring returns to its initial state.
  • the slide rail includes a body and a mounting plate, the body is slidably connected to the side of the server, the mounting plate is connected to the body, and the first elastic part is fixed to the body, a gap is provided between the second elastic part and the body, the locking member is rotatably connected to the body, a limiting groove is provided on the mounting plate, the limiting groove extends along the extension direction of the slide rail, and a portion of the locking member is located in the limiting groove.
  • the limiting groove has a first groove wall and a second groove wall opposite to each other along the extending direction of the slide rail;
  • part of the locking member in the limiting groove abuts against the first groove wall; when the first locking module is in an unlocked state, part of the locking member in the limiting groove abuts against the second groove wall.
  • the locking member includes a locking portion and a connecting portion, the connecting portion is L-shaped, the locking portion is connected to one end of the connecting portion, the connecting portion is rotationally connected to the slide rail, and the connecting portion is connected to the first spring;
  • the locking portion When the first locking module is in a locked state, the locking portion is located in the first gap, and the connecting portion is deflected relative to the slide rail position; when the first locking module is in an unlocked state, the locking portion moves out of the first gap, and the connecting portion is reset under the action of the first spring.
  • a surface of the locking member facing the slide rail is provided with an avoidance groove, and the first spring portion is located in the avoidance groove and is connected to the locking member.
  • a connecting hole is provided on the locking member, and the first spring is connected to the connecting hole.
  • the second elastic portion has a recessed portion along a direction from the second elastic portion to the slide rail;
  • a first guide structure is provided on the locking member, and when the locking member partially moves into the first gap and the first guide structure contacts the recessed portion, the first guide portion guides the locking member to move between the recessed portion and the slide rail.
  • the second elastic sheet extends along the extension direction of the slide rail, the second elastic sheet includes a third elastic portion and a fourth elastic portion, the third elastic portion is connected to the fourth elastic portion, the third elastic portion is fixed to the slide rail, an angle is formed between the fourth elastic portion and the slide rail, and a blocking member is provided on a surface of the fourth elastic portion away from the slide rail, the third elastic portion is away from the first locking module, and the fourth elastic portion is close to the first locking module;
  • the angle between the fourth elastic part and the slide rail is a first angle, and the blocking member is away from the slide rail; when the second locking modules are in an unlocked state, the angle between the fourth elastic part and the slide rail is a second angle, and the blocking member is close to the slide rail; wherein the first angle is greater than the second angle.
  • a second guiding structure is provided on a side of the blocking member close to the first locking module, and the second guiding structure is used to guide the blocking member when the blocking member enters the accommodating cavity.
  • the second locking module further includes a button, which is fixed to a surface of the fourth elastic portion facing away from the slide rail, and is located between the blocking member and the third elastic portion.
  • a third guiding structure is provided on a side of the key facing away from the blocking member, and the third guiding structure is used to guide the key when the server is moved out of the accommodating cavity.
  • a pressing mark is provided on the key, and the pressing mark is used to indicate that the key is pressed at the pressing mark.
  • the second locking module further includes a second spring, one end of the second spring is connected to the slide rail, the other end of the second spring is connected to the button, and the expansion and contraction direction of the spring is the same as the pressing direction of the button.
  • the fourth elastic portion is provided with an avoidance hole, and the second spring is passed through the avoidance hole.
  • a slide groove is provided on the slide rail, and a fixing piece is provided on the side of the server, the fixing piece passes through the slide groove, and the size of the slide groove along the extension direction of the slide rail is larger than the size of the fixing piece, so that the slide groove can slide relative to the slide rail.
  • an embodiment of the present application provides a server system, the server system comprising a cabinet and a server installation structure according to any one of the first aspects above;
  • the cabinet includes a receiving cavity and an opening, wherein the opening is communicated with the receiving cavity;
  • the first locking module and the second locking module are both located outside the accommodating cavity, the first locking module is in an unlocked state, and the second locking module is in a locked state; when the first locking module follows the server to move into the accommodating cavity and the second locking module is outside the accommodating cavity, the first locking module and the second locking module are both in a locked state; when the second locking module follows the server to move to the opening, the second locking module can be switched from a locked state to an unlocked state to allow the server and the second locking module to move into the accommodating cavity.
  • the first locking module when both the first locking module and the second locking module are located in the accommodating cavity, the first locking module is in a locked state, and the second locking module is in a locked state;
  • the second locking module can be switched from a locked state to an unlocked state.
  • the cabinet has a first direction, a second direction and a third direction intersecting each other, a first column, a second column, a third column and a fourth column are arranged in the accommodating cavity, the accommodating cavity has a first cavity wall and a second cavity wall opposite to each other along the first direction, the first column and the third column are arranged at intervals on the first cavity wall along the second direction, the second column and the fourth column are arranged at intervals on the second cavity wall along the second direction, the first column and the second column are opposite to each other in the first direction, the third column and the fourth column are opposite to each other in the first direction, a plurality of brackets are arranged between the first column and the second column and between the third column and the fourth column, the plurality of brackets are arranged at intervals along the third direction, and the brackets extend in a direction from the opening to the inside of the accommodating cavity;
  • the bracket When the first locking module follows the server to move into the accommodating cavity, the bracket carries the server, the server slides relative to the bracket, and the bracket acts on the first locking module to put the first locking module in a locked state.
  • the second column or the fourth column blocks the first locking module so that the first locking module no longer moves relative to the accommodating cavity.
  • the bracket includes a top plate, a bottom plate and a connecting plate, the top plate and the bottom plate are spaced apart, the connecting plate is located between the top plate and the bottom plate, and the connecting plate is respectively connected to the top plate and the bottom plate, the gap between the top plate and the bottom plate is used to accommodate the server or the slide rail on the server, the bottom plate is used to act on the first locking module to put the first locking module in a locked state, and the connecting plate is used to connect the cabinet.
  • a cabinet door is provided at the opening, and the cabinet door is movably connected to the cabinet.
  • universal wheels are provided at the bottom of the cabinet.
  • the server since the opening of the cabinet is connected to the accommodating cavity, the server can be installed in the accommodating cavity through the opening. Since two opposite sides of the server are respectively connected with slide rails, and the slide rails extend along the direction from the opening to the inside of the accommodating cavity, when the server is moved to the opening, part of the server can be extended into the accommodating cavity, and the server is pushed into the accommodating cavity through the slide rails. Since the first locking module and the second locking module are arranged at intervals along the direction from the opening to the inside of the accommodating cavity on the slide rail, the first locking module and the second locking module can switch between a locked state and an unlocked state.
  • the first locking module and the second locking module are both located outside the accommodating cavity, the first locking module is in an unlocked state, and the second locking module is in a locked state, so that the server can continue to be pushed into the accommodating cavity.
  • the first locking module and the second locking module can both be in a locked state. The server is continued to be pushed so that when the second locking module moves with the server to the opening, the second locking module can switch from a locked state to an unlocked state, so that the second locking module can enter the accommodating cavity.
  • the slide rail on the side of the server and arranging the first locking module and the second locking module on the slide rail, The first locking module and the second locking module are only provided on the slide rail, so that the installation cost for the server can be reduced.
  • FIG2 shows one of the schematic diagrams of a first locking module provided in an embodiment of the present application
  • FIG3 is a schematic diagram of a bracket provided in an embodiment of the present application.
  • FIG4 is a schematic diagram of a cabinet provided in an embodiment of the present application.
  • FIG5 is a schematic diagram of a server installation structure provided in an embodiment of the present application.
  • Fig. 6 shows an enlarged view of point A in Fig. 5;
  • FIG7 shows a second schematic diagram of a server installation structure provided in an embodiment of the present application.
  • FIG8 shows an enlarged view of point B in FIG7 ;
  • FIG. 10 shows a second schematic diagram of a first locking module provided in an embodiment of the present application.
  • first or “second” in the specification and claims of this application may include one or more of the features explicitly or implicitly.
  • plural means two or more.
  • and/or in the specification and claims means at least one of the connected objects, and the character “/” generally means that the objects connected before and after are in an “or” relationship.
  • the terms “installed”, “connected”, and “connected” should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components.
  • installed should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components.
  • the server installation structure includes: a server 20, the server 20 is used to be installed in a cabinet 10, the cabinet 10 includes a receiving cavity 11 and an opening 12, and the opening 12 is connected to the receiving cavity 11.
  • the sides are respectively connected to the slide rail 30, and the slide rail 30 extends along the direction from the opening 12 to the inside of the accommodating chamber 11.
  • the first locking module 40 and the second locking module 50 are arranged on the slide rail 30 in a spaced manner along the direction from the opening 12 to the inside of the accommodating chamber 11.
  • the first locking module 40 and the second locking module 50 are switched between a locked state and an unlocked state.
  • the first locking module 40 includes a first elastic sheet 41, a locking member 42 and a first spring 43.
  • the second locking module 50 includes a second elastic sheet 51.
  • the first elastic sheet 41 is partially fixed to the slide rail 30, and there is a first gap between the first elastic sheet 41 and the slide rail 30.
  • the locking member 42 is rotatably connected to the slide rail 30, and one end of the first spring 43 is connected to the first elastic sheet 41, and the other end of the first spring 43 is connected to the locking member 42.
  • the second elastic sheet 51 is partially fixed to the slide rail 30, and there is an angle between part of the second elastic sheet 51 and the slide rail 30.
  • the second elastic sheet 51 is provided with a blocking member 51.
  • first locking module 40 and the second locking module 50 are arranged on the slide rail 30 along the direction from the opening 12 to the inside of the accommodating cavity 11, the first locking module 40 and the second locking module 50 are switched between a locked state and an unlocked state, so that in the process of installing the server 20, once the server 20 is moved to the opening 12, at this time, the first locking module 40 and the second locking module 50 are both located outside the accommodating cavity 11, the first locking module 40 is in an unlocked state, and the second locking module 50 is in a locked state, so that the server 20 It can continue to be pushed into the accommodating cavity 11.
  • the first locking module 40 and the second locking module 50 can be in a locked state.
  • the server 20 is continued to be pushed, so that when the second locking module 50 follows the server 20 to move to the opening 12, the second locking module 50 can be switched from a locked state to an unlocked state, so that the second locking module 50 can enter the accommodating cavity 11. That is, in the embodiment of the present application, by installing the slide rail 30 on the side of the server 20, and arranging the first locking module 40 and the second locking module 50 on the slide rail 30, the installation of the server 20 can be achieved. In addition, it is avoided to connect the ball rail to the server 20, and only the first locking module 40 and the second locking module 50 are arranged on the slide rail 30, so that the cost of installing the server 20 can be reduced.
  • first locking module 40 includes a first spring 41, a locking piece 42 and a first spring 43
  • second locking module includes a second spring 51
  • the cost of the first locking module 40 and the second locking module 50 is lower, thereby reducing the cost of installing the server 20.
  • slide rails 30 of different sizes can be designed for servers 20 of different sizes, and the slide rails 30 only need to be adapted to the server 20. Therefore, the slide rails 30, the first locking module 40 and the second locking module 50 of the present application can be designed so that the slide rails 30, the first locking module 40 and the second locking module 50 of the present application can be installed for servers 20 of various sizes, thereby making the slide rails 30, the first locking module 40 and the second locking module 50 on the server 20 universal.
  • the first locking module 40 and the second locking module 50 are both located in the accommodating cavity 11.
  • the first locking module 40 is in a locked state
  • the second locking module 50 is in a locked state; when the server 20 is moved out of the accommodating cavity 11 and the second locking module 50 is moved to the opening 12, the second locking module 50 can be switched from a locked state to an unlocked state.
  • the cabinet 10 has a first direction, a second direction, and a third direction intersecting each other, and a first column 111, a second column 112, a third column 113, and a fourth column 114 are disposed in the accommodating cavity 11, and the accommodating cavity 11 has a first cavity wall and a second cavity wall relative to each other along the first direction, the first column 111 and the second column 112 are arranged at intervals on the first cavity wall along the second direction, the third column 113 and the fourth column 114 are arranged at intervals on the second cavity wall along the second direction, the first column 111 and the third column 113 are opposite to each other in the first direction, and the second column 112 is arranged at intervals on the second cavity wall along the second direction.
  • the first column 112 and the fourth column 114 are opposite to each other in the first direction, and a plurality of brackets 60 are arranged between the first column 111 and the second column 112 and between the third column 113 and the fourth column 114.
  • the plurality of brackets 60 are spaced apart along the third direction, and the brackets 60 extend from the opening 12 to the inside of the accommodating cavity 11.
  • the server 20 can be partially extended into the accommodating cavity 11, and the slide rail 30 will enter the accommodating cavity 11 with the server 20, that is, the slide rail 30 and part of the server 20 will enter the bracket 60, so that the bracket 60 will carry the server 20, and the first locking module 40 will contact the bracket 60, so that the bracket 60 will act on the first locking module 40, so that the first locking module 40 is in a locked state, that is, through the action of the bracket 60, the first locking module 40 is switched from an unlocked state to a locked state.
  • the number of the brackets 60 can be set according to actual needs.
  • the number of the brackets 60 is 10.
  • the number of the brackets 60 is 15.
  • the specific number of the brackets 60 is not limited in the embodiment of the present application.
  • the second column 112 or the fourth column 114 blocks the first locking module 40, so that the first locking module 40 no longer moves relative to the accommodating cavity 11.
  • the first locking module 40 contacts the second column 112 or the fourth column 114, the first locking module 40 will be blocked by the second column 112 or the fourth column 114, and the first locking module 40 is fixed on the slide rail 30, so that the slide rail 30 also stops moving due to the blocking of the first locking module 40, that is, the slide rail 30 is equivalent to being blocked, so that the slide rail 30 no longer continues to move with the server 20, thereby avoiding the slide rail 30 from excessively extending into the accommodating cavity 11, and affecting the connection wires or connection terminals and other components in the accommodating cavity 11.
  • the bracket 60 includes a top plate 61, a bottom plate 62 and a connecting plate 63.
  • the top plate 61 and the bottom plate 62 are spaced apart, the connecting plate 63 is located between the top plate 61 and the bottom plate 62, and the connecting plate 63 is respectively connected to the top plate 61 and the bottom plate 62.
  • the gap between the top plate 61 and the bottom plate 62 is used to accommodate the server 20 or the slide rail 30 on the server 20.
  • the bottom plate 62 is used to act on the first locking module 40 to put the first locking module 40 in a locked state.
  • the connecting plate 63 is used to connect the cabinet 10.
  • the connecting plate 63 can be connected to the cavity wall of the accommodating cavity 11 in the cabinet 10, thereby fixing the bracket 60 in the accommodating cavity 11.
  • the first locking module 40 actually enters the gap between the top plate 61 and the bottom plate 62, so that the first locking module 40 contacts the bottom plate 62, and the bottom plate 62 acts on the first locking module 40, so that the first locking module 40 switches from the unlocked state to the locked state.
  • the first elastic sheet 41 extends along the extension direction of the slide rail 30, the first elastic sheet 41 includes a first elastic portion 411 and a second elastic portion 412, the first elastic portion 411 is connected to the second elastic portion 412, the first elastic portion 411 is close to the second locking module 50, and the second elastic portion 412 is away from the second locking module 50; the first elastic portion 411 is fixed to the slide rail 30, and a first gap is provided between the second elastic portion 412 and the slide rail 30, the locking member 42 is rotatably connected to the slide rail 30, and one end of the first spring 43 is connected to the first elastic portion 411, and the other end of the first spring 43 is connected to the locking member 42, and a blocking sheet 4122 is provided on the second elastic portion 412; when the first locking module 40 is in a locked state, the locking member 42 is partially located in the first gap to increase the first gap, and the first spring 43 is in a stretched state; when the first locking module 40 is in an unlocked state
  • the bracket 60 in the accommodating cavity 11 acts on the first locking module 40, so that the locking member 42 rotates relative to the slide rail 30, the locking member 42 pulls the first spring 43, and a portion of the locking member 42 enters the first gap, so that the first locking module 40 is in a locked state.
  • the first spring 43 returns to its initial state, so that the first spring 43 drives the locking member 42 to reset, so that the locking member 42 moves out of the first gap, and the first locking module 40 is in an unlocked state.
  • the first locking module 40 may further include a motor and a blocking rod connected to the motor, and the motor may drive the blocking rod to move.
  • the motor drives the blocking rod to move in the first direction, and the blocking rod will not be blocked by the first column 111 or the third column 113, so that the first locking module 40 can enter the accommodating chamber 11.
  • the motor may drive the blocking rod to move, so that the blocking rod moves in the second direction, and the blocking rod will be blocked by the second column 112 or the fourth column 114, so that the slide rail 30 is blocked, and the slide rail 30 will not continue to move with the movement of the server 20.
  • the locking member 42 and the slide rail 30 can be rotatably connected in a manner that a rotation hole is provided on the locking member 42, a rotating member is inserted into the rotation hole, and the rotating member is embedded in the slide rail 30, so that the locking member 42 can rotate around the rotating member.
  • the rotating member includes but is not limited to rivets, screws, etc.
  • the slide rail 30 includes a body 31 and a mounting plate 32, the body 31 is slidably connected to the side of the server 20, the mounting plate 32 is connected to the body 31, and the first elastic portion 411 is fixed to the body 31, a gap is provided between the second elastic portion 412 and the body 31, the locking member 42 is rotatably connected to the body 31, a limiting groove 321 is provided on the mounting plate 32, the limiting groove 321 extends along the extension direction of the slide rail 30, a portion of the locking member 42 is located in the limiting groove 321, and the limiting groove 321 has opposite first groove walls 3211 and second groove walls 3212 along the extension direction of the slide rail 30;
  • the first groove wall 3211 and the second groove wall 3212 will limit the movement of the locking member 42, thereby preventing the locking member 42 from rotating too much during the rotation process.
  • the first locking module 40 is in a locked state, and the locking member 42 is blocked by the first groove wall 3211, thereby preventing the locking member 42 from rotating too much.
  • the first locking module 40 is in an unlocked state, and the locking member 42 is blocked by the second groove wall 3212, thereby also preventing the locking member 42 from rotating too much.
  • the locking member 42 includes a locking portion 421 and a connecting portion 422, the connecting portion 422 is L-shaped, the locking portion 421 is connected to one end of the connecting portion 422, the connecting portion 422 is rotatably connected to the slide rail 30, and the connecting portion 422 is connected to the first spring 43; when the first locking module 40 is in a locked state, the locking portion 421 is located in the first gap, and the connecting portion 422 is deflected relative to the position of the slide rail 30; when the first locking module 40 is in an unlocked state, the locking portion 421 moves outside the first gap, and the connecting portion 422 is reset under the action of the first spring 43.
  • connection part 422 may be provided with a rotation hole, and the rotation member is passed through the rotation hole and embedded in the slide rail 30, so that the connection part 422 is rotatably connected to the slide rail 30.
  • the rotation member includes but is not limited to rivets, screws, etc.
  • a surface of the locking member 42 facing the slide rail 30 is provided with an avoidance groove 4201 , and a portion of the first spring 43 is located in the avoidance groove 4201 and is connected to the locking member 42 .
  • the avoidance groove 4201 is not provided on the locking member 42, when the first spring 43 is connected to the locking member 42, due to the certain volume of the first spring 43, in order to achieve the connection between the locking member 42 and the first spring 43, it is necessary to increase the distance between the locking member 42 and the slide rail 30, thereby freeing up avoidance space for the first spring 43, so that the first spring 43 is connected to the locking member 42.
  • the avoidance groove 4201 is provided on the locking member 42, which is equivalent to playing the role of avoiding the first spring 43, avoiding the problem of increasing the distance between the locking member 42 and the slide rail 30.
  • the second elastic portion 412 has a recessed portion 4121 along the direction from the second elastic portion 412 to the slide rail 30; when the first locking module 40 is in a locked state, the locking member 42 is partially located in the first gap and between the recessed portion 4121 and the slide rail 30 to increase the first gap.
  • the second guide structure 5131 will play a guiding role, so that the blocking member 513 is reduced by the first column 111 or the third column 113, which is conducive to the blocking member 513 entering the accommodating cavity 11 along with the server 20.
  • the button 52 can be pressed so that the button 52 applies force to the third elastic part 511, so that the button 52 is close to the slide rail 30, so that the second locking module 50 is in an unlocked state, so that the button 52 can enter the accommodating cavity 11.
  • the button 52 can be moved to the outside of the accommodating cavity 11, and the blocking member 513 is located inside the accommodating cavity 11, that is, the first column 111 or the third column 113 is located between the button 52 and the blocking member 513, so that the blocking member 513 can be blocked by the first column 111 or the third column 113 to prevent the blocking member 513 from moving to the outside of the accommodating cavity 11.
  • the button 52 when the server 20 is moved out of the accommodating chamber 11, the button 52 may also need to be moved out of the accommodating chamber 11, so that a third guide structure 521 is provided on the side of the button 52 away from the blocking member 513.
  • the third guide structure 521 can play a guiding role, so that after the button 52 contacts the first column 111 or the third column 113, the blocking force of the first column 111 or the third column 113 on the button 52 is reduced, which is conducive to moving the button 52 out of the accommodating chamber 11.
  • a pressing mark 522 is provided on the key 52, and the pressing mark 522 is used to indicate that the key 52 is pressed at the pressing mark 522.
  • the pressing mark 522 may be a pressing groove, a pressing boss, or a sprayed pattern.
  • the specific type of the pressing mark 522 is not limited in the present embodiment.
  • the second locking module 50 also includes a second spring 53, one end of the second spring 53 is connected to the slide rail 30, and the other end of the second spring 53 is connected to the button 52, and the expansion and contraction direction of the spring is the same as the pressing direction of the button 52.
  • the button 52 can drive the second spring 53 to be pressed, so that once the force pressing the button 52 is cancelled, the second spring 53 can drive the button 52 to reset, and the button 52 drives the fourth elastic part 512 to move, so that the fourth elastic part 512 is away from the slide rail 30. That is, by providing the second spring 53, it is equivalent to supplementing the fourth elastic part 512 with the second spring 53, so that the fourth elastic part 512 can drive the blocking member 513 to be farther away from the slide rail 30.
  • the pressing mark 522 when a pressing mark 522 is provided on the button 52 , the pressing mark 522 may be located opposite to the second spring 53 .
  • a slide groove 301 is provided on the slide rail 30, and a fixing member 201 is provided on the side of the server 20, and the fixing member 201 is inserted into the slide groove 301, and the size of the slide groove 301 along the extension direction of the slide rail 30 is larger than the size of the fixing member 201, so that the slide groove 301 can slide relative to the slide rail 30.
  • the fixing member 201 can move relative to the slide groove 301 on the one hand, and on the other hand, the fixing member 201 can also play a fixing role, so that the slide rail 30 can be fixed on the server 20.
  • the fixing member 201 includes but is not limited to screws, rivets, pins, etc.
  • the two slide grooves 301 there are two slide grooves 301, and the two slide grooves 301 are staggered.
  • the slide rail 30 can slide more smoothly relative to the server 20, and the length of the slide groove 301 can be set according to actual needs, and the two slide grooves 301 are staggered to avoid the weaker parts of the slide rail 30.
  • the lengths of the two slide grooves 301 are the same.
  • the number of the chutes 301 can also be set according to actual needs, for example, the number of the chutes 301 is 3, and for another example, the number of the chutes 301 is 4.
  • the specific number of the chutes 301 is not limited in the embodiment of the present application.
  • a cabinet door (not shown in the figure) is provided at the opening 12 , and the cabinet door is movably connected to the cabinet 10 .
  • the cabinet door By providing a cabinet door, after the server 20 is installed in the accommodating cavity 11, the cabinet door can be closed, so that the cabinet door protects the server 20 in the cabinet 10, and the cabinet door can be opened when the server 20 needs to be repaired.
  • the cabinet door and the cabinet 10 can be connected by hinges, so that the cabinet door and the cabinet 10 are movably connected.
  • the cabinet door and the cabinet 10 can also be connected by a rotating shaft. The embodiment of the present application does not limit the way in which the cabinet door and the cabinet 10 are movably connected.
  • universal wheels 101 are provided at the bottom of the cabinet 10.
  • the cabinet 10 can be directly pushed, and the cabinet 10 can be moved through the universal wheels 101. That is, by providing the universal wheels 101, the cabinet 10 can be easily moved.
  • the number of the universal wheels 101 can be set according to actual needs.
  • the number of the universal wheels 101 is 4, and for another example, the number of the universal wheels 101 is 8. This embodiment of the present application does not limit this.
  • the server 20 When the server 20 needs to be installed in the accommodating cavity 11 of the cabinet 10, the server 20 can be moved to the opening 12, and the server 20 can be partially inserted into the opening 12, and then the server 20 can be pushed along the direction from the opening 12 to the accommodating cavity 11, and in this process, the server 20 will enter the accommodating cavity 11, and the slide rail 30 will also enter the accommodating cavity 11.
  • the first locking module 40 does not enter the accommodating cavity 11
  • the first locking module 40 is in an unlocked state, that is, the locking member 42 does not rotate, and the locking member 42 does not enter the first gap between the second elastic portion 412 and the body 31 of the slide rail 30, and the second locking module 50 is in a locked state.
  • the server 20 When the server 20 is pushed further, the first locking module 40 enters the accommodating cavity 11.
  • the slide rail 30 and the first locking module 40 enter the bracket 60, that is, the slide rail 30 and the first locking module 40 enter between the top plate 61 and the bottom plate 62 of the bracket 60.
  • the bottom plate 62 will apply force to the locking member 42, and due to the pushing effect, the bottom plate 62 causes the locking member 42 to rotate relative to the slide rail 30.
  • the locking member 42 rotates, it will drive the first spring 43, so that the first spring 43 stretches, and due to the rotation of the locking member 42, the locking portion 421 of the locking member 42 will enter the first gap between the second elastic portion 412 and the slide rail 30.
  • the second elastic portion 412 is provided with a recessed portion 4121.
  • the locking portion 421 will enter the gap between the recessed portion 4121 and the slide rail 30 under the guidance of the first guide portion, so that the locking portion 421 will expand the gap between the recessed portion 4121 and the slide rail 30, so that the first gap can be further increased, and the second elastic portion 412 is provided with a recessed portion 4121.
  • the locking portion 421 will enter the gap between the recessed portion 4121 and the slide rail 30 under the guidance of the first guide portion, so that the locking portion 421 will expand the gap between the recessed portion 4121 and the slide rail 30, so that the first gap can be further increased.
  • the second elastic part 412 is away from the slide rail 30, and the blocking piece 4122 on the second elastic part 412 is away from the slide rail 30.
  • the blocking member 513 on the fourth elastic part 512 in the second locking module 50 will contact the first column 111 or the third column 113, and the blocking member 513 is provided with a second guide structure 5131.
  • the second guide structure 5131 will play a guiding role, so that the blocking of the blocking member 513 by the first column 111 or the third column 113 is reduced, so that the blocking member 513 continues to move and moves into the accommodating cavity 11.
  • the first column 111 or the third column 113 will press the blocking member 513, so that the distance between the fourth elastic part 512 and the slide rail 30 is reduced.
  • the fourth elastic portion 512 After the blocking member 513 completely enters the accommodating cavity 11, that is, the blocking member 513 has passed through the first column 111 or the third column 113, the fourth elastic portion 512 will return to its initial state due to its own elasticity.
  • the fourth elastic portion 512 is fixed with a button 52, which will be blocked by the first column 111 or the third column 113.
  • the user needs to press the button 52, so that by pressing the button 52, a force is applied to the fourth elastic portion 512, so that the distance between the fourth elastic portion 512 and the slide rail 30 is reduced, and then the distance between the button 52 and the slide rail 30 is reduced, so that the button 52 can pass through the first column 111 or the third column 113 and enter the accommodating cavity 11.
  • the second spring 53 will also support the button 52, so that when the button 52 does not enter the accommodating cavity 11, the distance between the button 52 and the slide rail 30 is large enough, and the button 52 is blocked by the first column 111 or the third column 113. At this time, the second locking module 50 can be considered to be in a locked state. Once the button 52 is pressed and the button 52 completely enters the accommodating cavity 11, the server 20 can be pushed further so that the server 20 continues to enter the accommodating cavity 11.
  • the slide rail 30 is slidably connected to the server 20, that is, a slide groove 301 is set on the slide rail 30, and a fixing part 201 is set on the server 20.
  • the slide rail 30 is blocked, so that when the server continues to be pushed into the accommodating cavity 11, the server 20 continues to move relative to the slide rail 30, that is, the fixing part 201 slides in the slide groove 301, until the server 20 is pushed into a suitable position, and the blocking piece 4122 is blocked by the second column 112 or the fourth column 114, so as to prevent the slide rail 30 from affecting components such as connecting wires or connecting terminals in the accommodating cavity 11.
  • the server 20 When the server 20 needs to be pulled out of the accommodating chamber 11, force can be applied to the server 20, so that the server 20 will move outside the accommodating chamber 11. While the server 20 continues to move outside the accommodating chamber 11, once the button 52 moves to the first column 111 or the third column 113, the first column 111 or the third column 113 will block the button 52, but the button 52 is provided with a third guide structure 521. Once the button 52 contacts the first column 111 or the third column 113 of the accommodating chamber 11, the third guide structure 521 can play a guiding role, so that after the button 52 contacts the first column 111 or the third column 113, the blocking force of the first column 111 or the third column 113 on the button 52 is reduced, and the button 52 can be moved out of the accommodating chamber 11.
  • the blocking member 513 When the button 52 is located outside the accommodating cavity 11 through the first column 111 or the third column 113, the blocking member 513 will be close to the first column 111 or the third column 113, and the existence of the blocking member 513 will make the first column 111 or the third column 113 only located between the button 52 and the blocking member 513, that is, the blocking member 513 is blocked by the first column 111 or the third column 113, so that the slide rail 30 will not move with the movement of the server 20.
  • the server 20 will continue to be pulled out, and the slide rail 30 will be always located in the accommodating chamber 11 because the blocking member 513 is blocked by the first column 111 or the third column 113, and the fixing member 201 on the server 20 moves relative to the slide groove 301 on the slide rail 30, so that the server 20 can be pulled out more, which is conducive to the maintenance of the server 20 after being pulled out more, and because the server 20 is pulled out more, the server 20 will not be The other servers 20 in the cabinet 10 are affected, resulting in a problem of being difficult to repair.
  • the server 20 can be installed in the accommodating cavity 11 through the opening 12. Since the two opposite sides of the server 20 are respectively connected with the slide rails 30, and the slide rails 30 extend along the direction from the opening 12 to the inside of the accommodating cavity 11, when the server 20 is moved to the opening 12, the server 20 can be partially extended into the accommodating cavity 11, and the server 20 is pushed into the accommodating cavity 11 through the slide rails 30.
  • first locking module 40 and the second locking module 50 are arranged on the slide rail 30 along the direction from the opening 12 to the inside of the accommodating cavity 11, the first locking module 40 and the second locking module 50 are switched between a locked state and an unlocked state, so that in the process of installing the server 20, once the server 20 is moved to the opening 12, at this time, the first locking module 40 and the second locking module 50 are both located outside the accommodating cavity 11, the first locking module 40 is in an unlocked state, and the second locking module 50 is in a locked state, so that the server 20 It can continue to be pushed into the accommodating cavity 11.
  • the first locking module 40 and the second locking module 50 can be in a locked state.
  • the server 20 is continued to be pushed, so that when the second locking module 50 follows the server 20 to move to the opening 12, the second locking module 50 can be switched from a locked state to an unlocked state, so that the second locking module 50 can enter the accommodating cavity 11. That is, in the embodiment of the present application, by installing the slide rail 30 on the side of the server 20, and arranging the first locking module 40 and the second locking module 50 on the slide rail 30, the installation of the server 20 can be achieved. In addition, it is avoided to connect the ball rail to the server 20, and only the first locking module 40 and the second locking module 50 are arranged on the slide rail 30, so that the cost of installing the server 20 can be reduced.
  • the embodiment of the present application provides a server 20 system, which includes a cabinet 10 and a server 20 installation structure in any of the above embodiments.
  • the cabinet 10 includes a storage cavity 11 and an opening 12, and the opening 12 is connected to the storage cavity 11; when the server 20 is moved to the opening 12 and installed in the storage cavity 11, the first locking module 40 and the second locking module 50 are both located outside the storage cavity 11, the first locking module 40 is in an unlocked state, and the second locking module 50 is in a locked state; when the first locking module 40 follows the server 20 to move into the storage cavity 11, and the second locking module 50 is outside the storage cavity 11, the first locking module 40 and the second locking module 50 are both in a locked state; when the second locking module 50 follows the server 20 to move to the opening 12, the second locking module 50 can be switched from a locked state to an unlocked state, so that the server 20 and the second locking module 50 are moved into the storage cavity 11.
  • the first locking module 40 and the second locking module 50 when the first locking module 40 and the second locking module 50 are both located in the accommodating cavity 11, the first locking module 40 is in a locked state, and the second locking module 50 is in a locked state; when the server 20 is moved out of the accommodating cavity 11 and the second locking module 50 is moved to the opening 12, the second locking module 50 can be switched from a locked state to an unlocked state.
  • the cabinet 10 has a first direction, a second direction and a third direction intersecting each other, and the accommodating cavity 11 is provided with a first column 111, a second column 112, a third column 113 and a fourth column 114, and the accommodating cavity 11 has a first cavity wall and a second cavity wall relative to each other along the first direction, the first column 111 and the third column 113 are arranged at intervals on the first cavity wall along the second direction, the second column 112 and the fourth column 114 are arranged at intervals on the second cavity wall along the second direction, the first column 111 and the second column 112 are opposite in the first direction, the third column 113 and the fourth column 114 are opposite in the first direction, and a plurality of brackets 60 are arranged between the first column 111 and the second column 112 and between the third column 113 and the fourth column 114, the plurality of brackets 60 are distributed at intervals along the third direction, and the brackets 60 extend from the opening 12 to the inside of the
  • the second column 112 or the fourth column 114 blocks the first locking module 40 so that the first locking module 40 no longer moves relative to the accommodating cavity 11.
  • the bracket 60 includes a top plate 61, a bottom plate 62 and a connecting plate 63.
  • the top plate 61 and the bottom plate 62 are spaced apart, the connecting plate 63 is located between the top plate 61 and the bottom plate 62, and the connecting plate 63 is respectively connected to the top plate 61 and the bottom plate 62.
  • the gap between the top plate 61 and the bottom plate 62 is used to accommodate the server 20 or the slide rail 30 on the server 20.
  • the bottom plate 62 is used to act on the first locking module 40 so that the first locking module 40 is in a locked state.
  • the connecting plate 63 is used to connect the cabinet 10.
  • a cabinet 10 door is provided at the opening 12 , and the cabinet 10 door is movably connected to the cabinet 10 .

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Abstract

本申请公开了一种服务器安装结构及服务器系统,属于服务器技术领域。包括:服务器;服务器相对的两个侧面分别连接有滑轨,滑轨沿开口至容纳腔内部的方向沿伸,滑轨上沿开口至容纳腔内部的方向间隔设置有第一锁定模组和第二锁定模组,第一锁定模组以及第二锁定模组均在锁定状态与解锁状态之间切换;第一锁定模组包括第一弹片、锁定件以及第一弹簧,第二锁定模组包括第二弹片,第一弹片部分的固定于滑轨,且第一弹片与滑轨之间具有第一间隙,锁定件转动连接于滑轨,且第一弹簧的一端连接于第一弹片,第一弹簧的另一端连接于锁定件,第二弹片部分的固定于滑轨,且部分第二弹片与滑轨之间具有夹角,第二弹片上设置有阻挡件。

Description

服务器安装结构及服务器系统
相关申请的交叉引用
本申请要求于2023年10月09日提交中国专利局,申请号为202311303066.3,申请名称为“服务器安装结构及服务器系统”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请属于服务器技术领域,具体涉及一种服务器安装结构及服务器系统。
背景技术
随着科技的发展,服务器的使用逐渐广泛。通常,需要将服务器安装在机柜中,机柜中设置有连接线等器件。而在将服务器安装在机柜上中的过程中,通常在服务器上连接滚珠轨,将服务器挪动至机柜的开口处,然后将服务器通过滚珠轨推入机柜中。但相关技术中,滚珠轨的成本较高,使得针对服务器的安装的成本增加。
发明内容
本申请实施例的目的是提供一种服务器安装结构及服务器系统,至少解决滚珠轨的成本较高,使得针对服务器的安装的成本增加的问题。
第一方面,本申请实施例提供了一种服务器安装结构,服务器安装结构包括:服务器,服务器用于安装在机柜中,机柜包括容纳腔以及开口,开口与容纳腔连通;
第一锁定模组包括第一弹片、锁定件以及第一弹簧,第二锁定模组包括第二弹片,第一弹片部分的固定于滑轨,且第一弹片与滑轨之间具有第一间隙,锁定件转动连接于滑轨,且第一弹簧的一端连接于第一弹片,第一弹簧的另一端连接于锁定件,第二弹片部分的固定于滑轨,且部分第二弹片与滑轨之间具有夹角,第二弹片上设置有阻挡件;
在第一锁定模组处于锁定状态的情况下,锁定件部分的位于第一间隙中,第一弹簧处于拉伸状态;在第一锁定模组处于解锁状态的情况下,锁定件位于第一间隙外,第一弹簧恢复至初始状态;在第二锁定模组处于锁定状态的情况下,夹角为第一角度,阻挡件远离滑轨;在第二锁定模组处于解锁状态的情况下,夹角为第二角度,阻挡件靠近滑轨;其中,第一角度大于第二角度。
可选地,第一弹片沿滑轨的延伸方向延伸,第一弹片包括第一弹性部和第二弹性部,第一弹性部与第二弹性部连接,第一弹性部靠近第二锁定模组,第二弹性部远离第二锁定模组;
第一弹性部固定于滑轨,第二弹性部与滑轨之间具有第一间隙,锁定件转动连接于滑轨,且第一弹簧的一端连接于第一弹性部,第一弹簧的另一端连接于锁定件,第二弹性部上设置有阻挡片;
在第一锁定模组处于锁定状态的情况下,锁定件部分的位于第一间隙中,以增大第一间隙,第一弹簧处于拉伸状态;在第一锁定模组处于解锁状态的情况下,锁定件位于第一间隙外,第一弹簧恢复至初始状态。
可选地,滑轨包括本体以及安装板,本体与服务器的侧面滑动连接,安装板上连接在本体上,且第一弹性部固定于本体,第二弹性部与本体之间具有间隙,锁定件转动连接于本体,安装板上设置有限位槽,限位槽沿滑轨的延伸方向延伸,锁定件部分的位于限位槽中, 且限位槽沿滑轨的延伸方向具有相对的第一槽壁和第二槽壁;
在第一锁定模组处于锁定状态的情况下,位于限位槽中的部分锁定件与第一槽壁抵接;在第一锁定模组处于解锁状态的情况下,位于限位槽中的部分锁定件与第二槽壁抵接。
可选地,锁定件包括锁定部以及连接部,连接部呈L型,锁定部与连接部的一端连接,连接部与滑轨转动连接,且连接部与第一弹簧连接;
在第一锁定模组处于锁定状态的情况下,锁定部位于第一间隙中,且连接部相对滑轨位置偏转;在第一锁定模组处于解锁状态的情况下,锁定部移动至第一间隙外,连接部在第一弹簧的作用下复位。
可选地,锁定件朝向滑轨的表面设置有避让槽,第一弹簧部分位于避让槽中,与锁定件连接。
可选地,锁定件上设置有连接孔,第一弹簧连接于连接孔。
可选地,第二弹性部沿第二弹性部至滑轨的方向具有凹陷部;
在第一锁定模组处于锁定状态的情况下,锁定件部分的位于第一间隙中,且位于凹陷部与滑轨之间,以增大第一间隙。
可选地,锁定件上设置有第一导向结构,在锁定件部分的移动至第一间隙中,且第一导向结构与凹陷部接触的情况下,第一导向部引导锁定件移动至凹陷部与滑轨之间。
可选地,第二弹片沿滑轨的延伸方向延伸,第二弹片包括第三弹性部以及第四弹性部,第三弹性部与第四弹性部连接,第三弹性部固定于滑轨,第四弹性部与滑轨之间具有夹角,且第四弹性部背离滑轨的表面设置有阻挡件,第三弹性部远离第一锁定模组,第四弹性部靠近第一锁定模组;
在第二锁定模组均处于锁定状态的情况下,第四弹性部与滑轨之间的夹角为第一角度,阻挡件远离滑轨;在第二锁定模组处于解锁状态的情况下,第四弹性部与滑轨之间的夹角为第二角度,阻挡件靠近滑轨;其中,第一角度大于第二角度。
可选地,阻挡件靠近第一锁定模组的一侧设置有第二导向结构,第二导向结构用于在阻挡件进入容纳腔中时对阻挡件进行导向。
可选地,第二锁定模组还包括按键,按键固定于第四弹性部背离滑轨的表面,且按键位于阻挡件与第三弹性部之间。
可选地,按键背离阻挡件的一侧设置有第三导向结构,第三导向结构用于在服务器从容纳腔中移出时,对按键进行导向。
可选地,按键上设置有按压标记,按压标记用于指示在按压标记处按压按键。
可选地,第二锁定模组还包括第二弹簧,第二弹簧的一端连接于滑轨,第二弹簧的另一端连接于按键,弹簧的伸缩方向与按键的按压方向相同。
可选地,第四弹性部上设置有避让孔,第二弹簧穿设于避让孔。
可选地,滑轨上设置有滑槽,服务器的侧面上设置固定件,固定件穿设于滑槽,且滑槽沿滑轨的延伸方向的尺寸大于固定件的尺寸,以使滑槽相对滑轨可滑动。
可选地,滑槽的数量为两个,两个滑槽错位。
第二方面,本申请实施例提供了一种服务器系统,服务器系统包括机柜以及上述第一方面中任一项的服务器安装结构;
机柜包括容纳腔以及开口,开口与容纳腔连通;
在将服务器挪动至开口,且安装于容纳腔中的情况下,第一锁定模组以及第二锁定模组均位于容纳腔的外部,第一锁定模组处于解锁状态,第二锁定模组处于锁定状态;在第一锁定模组跟随服务器移动至容纳腔中,且第二锁定模组处于容纳腔的外部的情况下,第一锁定模组以及第二锁定模组均处于锁定状态;在第二锁定模组跟随服务器移动至开口处的情况下,第二锁定模组可由锁定状态切换至解锁状态,以使服务器以及第二锁定模组移动至容纳腔中。
可选地,在第一锁定模组以及第二锁定模组均位于容纳腔中的情况下,第一锁定模组处于锁定状态,第二锁定模组处于锁定状态;
在服务器从容纳腔中移出,且第二锁定模组移动至开口处的情况下,第二锁定模组可由锁定状态切换至解锁状态。
可选地,机柜具有相交的第一方向、第二方向和第三方向,容纳腔中设置有第一立柱、第二立柱、第三立柱以及第四立柱,容纳腔沿第一方向具有相对第一腔壁和第二腔壁,第一立柱以及第三立柱沿第二方向间隔设置于第一腔壁,第二立柱和第四立柱沿第二方向间隔设置于第二腔壁,第一立柱与第二立柱在第一方向上位置相对,第三立柱与第四立柱在第一方向上位置相对,第一立柱与第二立柱之间以及第三立柱与第四立柱之间均设置有多个托架,多个托架沿第三方向间隔分布,托架沿开口至容纳腔内部的方向延伸;
在第一锁定模组跟随服务器移动至容纳腔中的情况下,托架承载服务器,服务器相对于托架滑动,且托架作用于第一锁定模组,以使第一锁定模组处于锁定状态。
可选地,在第一锁定模组以及第二锁定模组均位于容纳腔中,且第一锁定模组与第二立柱或第四立柱抵接的情况下,第二立柱或第四立柱阻挡第一锁定模组,以使第一锁定模组不再相对容纳腔移动。
可选地,托架包括顶板、底板和连接板,顶板与底板间隔分布,连接板位于顶板与底板之间,且连接板分别与顶板以及底板连接,顶板与底板之间的间隙用于容纳服务器或服务器上的滑轨,底板用于作用于第一锁定模组,以使第一锁定模组处于锁定状态,连接板用于连接机柜。
可选地,开口处设置有机柜门,机柜门与机柜活动连接。
可选地,机柜的底部设置有万向轮。
在本申请实施例中,由于机柜的开口与容纳腔连通,因此,可以通过开口将服务器安装于容纳腔中。由于服务器相对的两个侧面分别连接有滑轨,滑轨沿开口至容纳腔内部的方向沿伸,因此,在将服务器挪动至开口处时,可以将服务器部分的伸入容纳腔,且服务器通过滑轨推入容纳腔中。由于滑轨上沿开口至容纳腔内部的方向间隔设置有第一锁定模组和第二锁定模组,第一锁定模组以及第二锁定模组均在锁定状态与解锁状态之间切换,从而在安装服务器的过程中,一旦将服务器挪动至开口处,此时,第一锁定模组以及第二锁定模组均位于容纳腔的外部,第一锁定模组处于解锁状态,第二锁定模组处于锁定状态,从而使得服务器可以继续被推入容纳腔,在继续推动服务器的过程中,一旦第一锁定模组跟随服务器移动至容纳腔中,且第二锁定模组处于容纳腔的外部时,第一锁定模组以及第二锁定模组均可以处于锁定状态,继续推动服务器,使得第二锁定模组跟随服务器移动至开口处时,第二锁定模组可由锁定状态切换至解锁状态,从而第二锁定模组便可以进入容纳腔。也即是,在本申请实施例中,通过在服务器的侧面安装滑轨,且滑轨上设置第一锁定模组以及第二锁定模 组,可以实现针对服务器的安装,另外,避免在服务器上连接滚珠轨,仅在滑轨上设置第一锁定模组以及第二锁定模组,从而可以降低针对服务器安装的成本。
附图说明
图1表示本申请实施例提供的一种服务器连接滑轨的示意图;
图2表示本申请实施例提供的一种第一锁定模组的示意图之一;
图3表示本申请实施例提供的一种托架的示意图;
图4表示本申请实施例提供的一种机柜的示意图;
图5表示本申请实施例提供的一种服务器安装结构的示意图之一;
图6表示图5中A处的放大图;
图7表示本申请实施例提供的一种服务器安装结构的示意图之二;
图8表示图7中B处的放大图;
图9表示本申请实施例提供的一种第二锁定模组的示意图;
图10表示本申请实施例提供的一种第一锁定模组的示意图之二。
附图标记:
10:机柜;11:容纳腔;12:开口;101:万向轮;111:第一立柱;112:第二立柱;
113:第三立柱;114:第四立柱;20:服务器;201:固定件;30:滑轨;301:滑槽;31:本体;32;安装板;321:限位槽;3211:第一槽壁;3212:第二槽壁;40:第一锁定模组;41:第一弹片;411:第一弹性部;412:第二弹性部;4121:凹陷部;4122:阻挡片;42:锁定件;421:锁定部;4211:第一导向结构;422:连接部;4201:避让槽;4202:连接孔;43:第一弹簧;50:第二锁定模组;51:第二弹片;511:第三弹性部;512:第四弹性部;5121:避让孔;513:阻挡件;5131:第二导向结构;52:按键;521:第三导向结构;522:按压标记;53:第二弹簧;60:托架;61:顶板;62:底板;63:连接板。
具体实施方式
本申请的说明书和权利要求书中的术语“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请的描述中,除非另有说明,“多个”的含义是两个或两个以上。此外,说明书以及权利要求中“和/或”表示所连接对象的至少其中之一,字符“/”,一般表示前后关联对象是一种“或”的关系。
在本申请的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”、“顺时针”、“逆时针”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请中的具体含义。
如图1至图10所示,该服务器安装结构包括:服务器20,服务器20用于安装在机柜10中,机柜10包括容纳腔11以及开口12,开口12与容纳腔11连通。服务器20相对的两 个侧面分别连接有滑轨30,滑轨30沿开口12至容纳腔11内部的方向沿伸,滑轨30上沿开口12至容纳腔11内部的方向间隔设置有第一锁定模组40和第二锁定模组50,第一锁定模组40以及第二锁定模组50均在锁定状态与解锁状态之间切换。第一锁定模组40包括第一弹片41、锁定件42以及第一弹簧43,第二锁定模组50包括第二弹片51,第一弹片41部分的固定于滑轨30,且第一弹片41与滑轨30之间具有第一间隙,锁定件42转动连接于滑轨30,且第一弹簧43的一端连接于第一弹片41,第一弹簧43的另一端连接于锁定件42,第二弹片51部分的固定于滑轨30,且部分第二弹片51与滑轨30之间具有夹角,第二弹片51上设置有阻挡件513;在第一锁定模组40处于锁定状态的情况下,锁定件42部分的位于第一间隙中,第一弹簧43处于拉伸状态;在第一锁定模组40处于解锁状态的情况下,锁定件42位于第一间隙外,第一弹簧43恢复至初始状态;在第二锁定模组50处于锁定状态的情况下,夹角为第一角度,阻挡件513远离滑轨30;在第二锁定模组50处于解锁状态的情况下,夹角为第二角度,阻挡件513靠近滑轨30;其中,第一角度大于第二角度。
在本申请实施例中,由于机柜10的开口12与容纳腔11连通,因此,可以通过开口12将服务器20安装于容纳腔11中。由于服务器20相对的两个侧面分别连接有滑轨30,滑轨30沿开口12至容纳腔11内部的方向沿伸,因此,在将服务器20挪动至开口12处时,可以将服务器20部分的伸入容纳腔11,且服务器20通过滑轨30推入容纳腔11中。由于滑轨30上沿开口12至容纳腔11内部的方向间隔设置有第一锁定模组40和第二锁定模组50,第一锁定模组40以及第二锁定模组50均在锁定状态与解锁状态之间切换,从而在安装服务器20的过程中,一旦将服务器20挪动至开口12处,此时,第一锁定模组40以及第二锁定模组50均位于容纳腔11的外部,第一锁定模组40处于解锁状态,第二锁定模组50处于锁定状态,从而使得服务器20可以继续被推入容纳腔11,在继续推动服务器20的过程中,一旦第一锁定模组40跟随服务器20移动至容纳腔11中,且第二锁定模组50处于容纳腔11的外部时,第一锁定模组40以及第二锁定模组50均可以处于锁定状态,继续推动服务器20,使得第二锁定模组50跟随服务器20移动至开口12处时,第二锁定模组50可由锁定状态切换至解锁状态,从而第二锁定模组50便可以进入容纳腔11。也即是,在本申请实施例中,通过在服务器20的侧面安装滑轨30,且滑轨30上设置第一锁定模组40以及第二锁定模组50,可以实现针对服务器20的安装,另外,避免在服务器20上连接滚珠轨,仅在滑轨30上设置第一锁定模组40以及第二锁定模组50,从而可以降低针对服务器20安装的成本。
另外,通过设置第一锁定模组40以及第二锁定模组50,且第一锁定模组40包括第一弹片41、锁定件42以及第一弹簧43,第二锁定模组包括第二弹片51,使得第一锁定模组40以及第二锁定模组50的成本较低,降低安装服务器20的成本。
另外,在本申请实施例中,针对不同尺寸的服务器20,可以设计不同尺寸的滑轨30,只需滑轨30与服务器20适配即可,从而可以根据本申请的滑轨30、第一锁定模组40以及第二锁定模组50,进行设计,使得针对各种尺寸的服务器20,均可以安装本申请的滑轨30、第一锁定模组40以及第二锁定模组50,从而使得服务器20上的滑轨30、第一锁定模组40以及第二锁定模组50具有通用性。
另外,在本申请实施例中,在第一锁定模组40以及第二锁定模组50均位于容纳腔11 中的情况下,第一锁定模组40处于锁定状态,第二锁定模组50处于锁定状态;在服务器20从容纳腔11中移出,且第二锁定模组50移动至开口12处的情况下,第二锁定模组50可由锁定状态切换至解锁状态。
通过这样的设置,一旦第二锁定模组50进入容纳腔11中,第二锁定模组50处于锁定状态,从而可以避免在不需要服务器20从容纳腔11中移出时,服务器20从容纳腔11中脱离的问题出现。另外,在需要将服务器20从容纳腔11中移出时,一旦第二锁定模组50移动至开口12处,第二锁定模组50便可以由锁定状态切换至解锁状态,使得服务器20可以继续从容纳腔11中脱离。
另外,在一些实施例中,如图7所示,机柜10具有相交的第一方向、第二方向和第三方向,容纳腔11中设置有第一立柱111、第二立柱112、第三立柱113以及第四立柱114,容纳腔11沿第一方向具有相对第一腔壁和第二腔壁,第一立柱111以及第二立柱112沿第二方向间隔设置于第一腔壁,第三立柱113和第四立柱114沿第二方向间隔设置于第二腔壁,第一立柱111与第三立柱113在第一方向上位置相对,第二立柱112与第四立柱114在第一方向上位置相对,第一立柱111与第二立柱112之间以及第三立柱113与第四立柱114之间均设置有多个托架60,多个托架60沿第三方向间隔分布,托架60沿开口12至容纳腔11内部的方向延伸;在第一锁定模组40跟随服务器20移动至容纳腔11中的情况下,托架60承载服务器20,服务器20相对于托架60滑动,且托架60作用于第一锁定模组40,以使第一锁定模组40处于锁定状态。
通过这样的设置,在将服务器20挪动至开口12处之后,可以使得服务器20部分的伸入容纳腔11中,且滑轨30会随着服务器20进入容纳腔11中,即滑轨30以及部分服务器20会进入托架60,从而托架60便会承载服务器20,且第一锁定模组40会与托架60接触,从而托架60便会对第一锁定模组40产生作用,使得第一锁定模组40处于锁定状态,即通过托架60的作用,使得第一锁定模组40由解锁状态切换至锁定状态。
需要说明的是,托架60的数量可以根据实际需要进行设定,例如,托架60的数量为10个,再例如,托架60的数量为15个。对于托架60的具体数量,本申请实施例在此不作限定。
另外,在本申请实施例中,在第一锁定模组40以及第二锁定模组50均位于容纳腔11中,且第一锁定模组40与第二立柱112或第四立柱114抵接的情况下,第二立柱112或第四立柱114阻挡第一锁定模组40,以使第一锁定模组40不再相对容纳腔11移动。通过这样的设置,一旦第一锁定模组40与第二立柱112或第四立柱114接触,此时,第一锁定模组40便会被第二立柱112或第四立柱114阻挡,而第一锁定模组40固定在滑轨30上,使得滑轨30也由于第一锁定模组40被阻挡而停止移动,即滑轨30相当于被阻挡,使得滑轨30不再继续随着服务器20移动,从而避免滑轨30过度伸入容纳腔11中,对容纳腔11中的连接线或连接端子等部件产生影响的问题出现。
另外,在一些实施例中,如图3所示,托架60包括顶板61、底板62和连接板63,顶板61与底板62间隔分布,连接板63位于顶板61与底板62之间,且连接板63分别与顶板61以及底板62连接,顶板61与底板62之间的间隙用于容纳服务器20或服务器20上的滑轨30,底板62用于作用于第一锁定模组40,以使第一锁定模组40处于锁定状态,连接板63用于连接机柜10。
通过这样的设置,在将托架60安装在机柜10中时,连接板63可以与机柜10中容纳腔11的腔壁连接,从而将托架60固定在容纳腔11中。而第一锁定模组40进入容纳腔11之后,第一锁定模组40其实进入顶板61与底板62之间的间隙中,从而第一锁定模组40便会与底板62接触,从而底板62对第一锁定模组40作用,使得第一锁定模组40从解锁状态切换至锁定状态。
另外,在一些实施例中,如图2、图6和图10所示,第一弹片41沿滑轨30的延伸方向延伸,第一弹片41包括第一弹性部411和第二弹性部412,第一弹性部411与第二弹性部412连接,第一弹性部411靠近第二锁定模组50,第二弹性部412远离第二锁定模组50;第一弹性部411固定于滑轨30,第二弹性部412与滑轨30之间具有第一间隙,锁定件42转动连接于滑轨30,且第一弹簧43的一端连接于第一弹性部411,第一弹簧43的另一端连接于锁定件42,第二弹性部412上设置有阻挡片4122;在第一锁定模组40处于锁定状态的情况下,锁定件42部分的位于第一间隙中,以增大第一间隙,第一弹簧43处于拉伸状态;在第一锁定模组40处于解锁状态的情况下,锁定件42位于第一间隙外,第一弹簧43恢复至初始状态。
通过这样的设置,一旦第一锁定模组40移动容纳腔11中,此时,容纳腔11中的托架60便会作用于第一锁定模组40,从而使得锁定件42相对滑轨30转动,锁定件42拉动第一弹簧43,且部分锁定件42进入第一间隙,使得第一锁定模组40处于锁定状态。一旦第一锁定模组40移动至容纳腔11的外部,第一弹簧43恢复至初始状态,从而第一弹簧43带动锁定件42复位,从而锁定件42从第一间隙中移出,第一锁定模组40处于解锁状态。
需要说明的是,当托架60包括顶板61、底板62和连接板63时,此时,一旦第一锁定模组40移动至托架60中,即第一锁定模组40移动底板62与顶板61之间的间隙中,锁定件42便会与底板62接触,从而在推动服务器20的过程中,底板62便会向锁定件42施力,使得锁定件42相对滑轨30转动,且锁定件42带动第一弹簧43,锁定件42部分的进入第二弹性部412与滑轨30之间的第一间隙中,第一锁定模组40由解锁状态切换至锁定状态。
当然,在本申请实施例中,第一锁定模组40还可以包括电机以及连接在电机上的阻挡杆,电机可以带动阻挡杆移动,在第一锁定模组40位于容纳腔11的外部时,电机带动阻挡杆沿第一方向移动,阻挡杆不会被第一立柱111或第三立柱113阻挡,从而第一锁定模组40可以进入容纳腔11。一旦第一锁定模组40进入容纳腔11,电机可以带动阻挡杆移动,使得阻挡杆沿第二方向移动,阻挡杆便会被第二立柱112或第四立柱114阻挡,从而使得滑轨30被阻挡,滑轨30不会继续随着服务器20的移动而移动。
另外,在本申请实施例中,锁定件42与滑轨30转动连接的方式可以为:锁定件42上设置转动孔,转动孔中穿入转动件,且转动件嵌入滑轨30,从而锁定件42可以绕转动件转动。其中,转动件包括但不限于铆钉、螺钉等。
另外,在一些实施例中,如图2所示,滑轨30包括本体31以及安装板32,本体31与服务器20的侧面滑动连接,安装板32上连接在本体31上,且第一弹性部411固定于本体31,第二弹性部412与本体31之间具有间隙,锁定件42转动连接于本体31,安装板32上设置有限位槽321,限位槽321沿滑轨30的延伸方向延伸,锁定件42部分的位于限位槽321中,且限位槽321沿滑轨30的延伸方向具有相对的第一槽壁3211和第二槽壁3212;在 第一锁定模组40处于锁定状态的情况下,位于限位槽321中的部分锁定件42与第一槽壁3211抵接;在第一锁定模组40处于解锁状态的情况下,位于限位槽321中的部分锁定件42与第二槽壁3212抵接。
通过这样的设置,第一槽壁3211与第二槽壁3212便会对锁定件42的移动进行限位,避免锁定件42在转动过程中,过多的转动。具体的,当锁定件42被托架60作用时,第一锁定模组40处于锁定状态,锁定件42被第一槽壁3211阻挡,避免锁定件42过多的转动,当锁定件42被第一弹簧43作用时,第一锁定模组40处于解锁状态,锁定件42被第二槽壁3212阻挡,也避免锁定件42过多的转动。
另外,在本申请实施例中,如图2所示,锁定件42包括锁定部421以及连接部422,连接部422呈L型,锁定部421与连接部422的一端连接,连接部422与滑轨30转动连接,且连接部422与第一弹簧43连接;在第一锁定模组40处于锁定状态的情况下,锁定部421位于第一间隙中,且连接部422相对滑轨30位置偏转;在第一锁定模组40处于解锁状态的情况下,锁定部421移动至第一间隙外,连接部422在第一弹簧43的作用下复位。
其中,连接部422上可以设置转动孔,将转动件穿过转动孔,且嵌入滑轨30,使得连接部422与滑轨30转动连接。转动件包括但不限于铆钉、螺钉等。
另外,在一些实施例中,如图10所示,锁定件42朝向滑轨30的表面设置有避让槽4201,第一弹簧43部分位于避让槽4201中,与锁定件42连接。
通过这样的设置,在将第一弹簧43与锁定件42连接时,可以使得第一弹簧43部分的位于避让槽4201中,从而避免为了连接第一弹簧43,增大锁定件42与滑轨30之间的间距的问题出现。其中,若锁定件42上未设置避让槽4201,在将第一弹簧43与锁定件42连接时,由于第一弹簧43存在一定的体积,为了实现锁定件42与第一弹簧43的连接,必然需要将锁定件42与滑轨30之间的间距增大,从而为第一弹簧43腾出避让空间,使得第一弹簧43与锁定件42连接。而在锁定件42上设置避让槽4201,避让槽4201相当于起到避让第一弹簧43的作用,避免增大锁定件42与滑轨30之间的间距的问题出现。
另外,在一些实施例中,如图10所示,锁定件42上设置有连接孔4202,第一弹簧43连接于连接孔4202。通过这样的设置,在将第一弹簧43与锁定件42连接时,此时,便可以直接将第一弹簧43的一端连接在连接孔4202中,从而便于第一弹簧43与锁定件42连接。
需要说明的是,当锁定件42上设置有避让槽4201时,此时,连接孔4202可以设置在避让槽4201的槽底。
另外,在一些实施例中,如图2所示,第二弹性部412沿第二弹性部412至滑轨30的方向具有凹陷部4121;在第一锁定模组40处于锁定状态的情况下,锁定件42部分的位于第一间隙中,且位于凹陷部4121与滑轨30之间,以增大第一间隙。
通过这样的设置,当第一锁定模组40处于锁定状态时,锁定件42便可以转动,使得部分锁定件42移动至第一间隙中,且部分锁定件42移动至凹陷部4121与滑轨30之间,从而该部分锁定件42相当于将凹陷部4121与滑轨30之间的间隙撑开,而凹陷部4121与滑轨30之间的间隙小于第一间隙,从而一旦部分锁定件42移动至凹陷部4121与滑轨30之间的间隙中,在撑开该间隙时,会使得第一间隙被撑开较大,从而使得第二弹性部412远离滑轨30较多,进而阻挡片4122与滑轨30之间的距离较大,使得阻挡片4122可以有效与容纳腔 11中的第二立柱112或第四立柱114接触,阻挡第一锁定模组40继续移动,使得滑轨30不再随着服务器20移动。即通过在第二弹性部412上设置凹陷部4121,可以有利于阻挡片4122在容纳腔11中被限位,使得阻挡片4122被阻挡,进而使得滑轨30不再随着服务器20移动,避免滑轨30过度伸入容纳腔11,影响容纳腔11中的连接线或连接端子等部件。
另外,在一些实施例中,如图2所示,锁定件42上设置有第一导向结构4211,在锁定件42部分的移动至第一间隙中,且第一导向结构4211与凹陷部4121接触的情况下,第一导向结构4211引导锁定件42移动至凹陷部4121与滑轨30之间。
通过在锁定件42上设置第一导向结构4211,在使得锁定件42相对滑轨30转动的过程中,一旦部分锁定件42进入第一间隙中,且该部分锁定件42与凹陷部4121接触时,第一导向部便可以对锁定件42起到引导作用,使得锁定件42易于移动至凹陷部4121与滑轨30之间,从而有利于锁定件42撑开凹陷部4121与滑轨30之间的间隙。
需要说明的是,第一导向结构4211可以倾斜面,即锁定件42上设置倾斜面,从而倾斜面与凹陷部4121接触之后,由于倾斜面的倾斜作用,使得锁定件42易于进入凹陷部4121与滑轨30之间的间隙。
另外,在本申请实施例中,如图8和图9所示,第二锁定模组50可以包括第二弹片51,第二弹片51沿滑轨30的延伸方向延伸,第二弹片51包括第三弹性部511以及第四弹性部512,第三弹性部511与第四弹性部512连接,第三弹性部511固定于滑轨30,第四弹性部512与滑轨30之间具有夹角,且第四弹性部512背离滑轨30的表面设置有阻挡件513,第三弹性部511远离第一锁定模组40,第四弹性部512靠近第一锁定模组40;在第二锁定模组50均处于锁定状态的情况下,第四弹性部512与滑轨30之间的夹角为第一角度,阻挡件513远离滑轨30;在第二锁定模组50处于解锁状态的情况下,第四弹性部512与滑轨30之间的夹角为第二角度,阻挡件513靠近滑轨30;其中,第一角度大于第二角度。
当第四弹性部512与滑轨30之间的夹角为第一角度时,阻挡件513远离滑轨30,且阻挡件513与滑轨30之间的距离较大,从而阻挡件513可以有效的被第一立柱111或第三立柱113阻挡。当第四弹性部512与滑轨30之间的夹角为第二角度时,阻挡件513靠近滑轨30,且阻挡件513与滑轨30之间的距离较小,从而阻挡件513可以穿过第一立柱111或第三立柱113。
另外,在一些实施例中,如图9所示,阻挡件513靠近第一锁定模组40的一侧设置有第二导向结构5131,第二导向结构5131用于在阻挡件513进入容纳腔11中时对阻挡件513进行导向。
通过这样的设置,在服务器20被推入至容纳腔11中的过程中,一旦第二锁定模组50移动至开口12处,若容纳腔11中设置第一立柱111或第三立柱113,此时,阻挡件513在移动至第一立柱111或第三立柱113处时,第一立柱111或第三立柱113便会阻挡阻挡件513的继续移动,而在阻挡件513上设置第二导向结构5131,一旦阻挡件513与第一立柱111或第三立柱113接触,此时,第二导向结构5131便会起到导向作用,使得第一立柱111或第三立柱113对阻挡件513的阻挡减小,有利于阻挡件513随着服务器20进入容纳腔11中。
需要说明的是,第二导向结构5131可以为倾斜面,即在阻挡件513靠近第一锁定模组40的一侧设置倾斜面,此时,一旦阻挡件513与第一立柱111或第三立柱113接触,由于倾 斜面的作用,阻挡件513与第一立柱111或第三立柱113之间的阻挡力较小,使得阻挡件513易于进入容纳腔11中。
另外,在一些实施例中,如图9所示,第二锁定模组50还包括按键52,按键52固定于第四弹性部512背离滑轨30的表面,且按键52位于阻挡件513与第三弹性部511之间。
一旦第二锁定模组50移动至开口12处,便可以通过按压按键52从而使得按键52向第三弹性部511施力,使得按键52靠近滑轨30,从而第二锁定模组50处于解锁状态,使得按键52可以进入容纳腔11中。在需要将服务器20从容纳腔11中推出,对服务器20进行检修时,按键52可以被移动至容纳腔11的外部,而阻挡件513位于容纳腔11的内部,即第一立柱111或第三立柱113位于按键52与阻挡件513之间,从而阻挡件513便可以被第一立柱111或第三立柱113阻挡,避免阻挡件513移动至容纳腔11的外部。
另外,在一些实施例中,如图9所示,按键52背离阻挡件513的一侧设置有第三导向结构521,第三导向结构521用于在服务器20从容纳腔11中移出时,对按键52进行导向。
通过这样的设置,在将服务器20从容纳腔11中移出时,可能需要使得按键52也被移出至容纳腔11的外部,从而在按键52背离阻挡件513的一侧设置第三导向结构521,在移出服务器20的过程中,一旦按键52与容纳腔11的第一立柱111或第三立柱113接触,第三导向结构521可以起到导向作用,使得按键52与第一立柱111或第三立柱113接触之后,第一立柱111或第三立柱113对按键52的阻挡力减小,有利于按键52从容纳腔11中移出。
另外,在一些实施例中,如图9所示,按键52上设置有按压标记522,按压标记522用于指示在按压标记522处按压按键52。通过这样设置,在需要按压按键52时,用户便可以直接按压按压标记522处,从而实现对按键52的按压。即通过设置按压标记522,相当于对用户有一个引导作用,使得用户可以明确的知道按键52上的按压位置。
需要说明的是,按压标记522可以为按压槽,按压标记522还可以为按压凸台,按压标记522还可以为喷涂的图案。对于按压标记522的具体类型,本申请实施例在此不作限定。
另外,在一些实施例中,如图8和图9所示,第二锁定模组50还包括第二弹簧53,第二弹簧53的一端连接于滑轨30,第二弹簧53的另一端连接于按键52,弹簧的伸缩方向与按键52的按压方向相同。
通过这样的设置,在按键52被按压之后,按键52可以带动第二弹簧53被按压,从而一旦按压按键52的力取消,第二弹簧53便会带动按键52复位,且按键52带动第四弹性部512移动,使得第四弹性部512远离滑轨30。即通过设置第二弹簧53,相当于通过第二弹簧53对第四弹性部512做补充,使得第四弹性部512可以带动阻挡件513远离滑轨30的距离较远。
另外,在本申请实施例中,当按键52上设置有按压标记522时,按压标记522可以与第二弹簧53位置相对。
另外,在一些实施例中,如图8所示,第四弹性部512上设置有避让孔5121,第二弹簧53穿设于避让孔5121。通过这样的设置,可以直接使得第二弹簧53穿设避让孔5121,相当于第四弹性部512会存在一个避让空间避让第二弹簧53,从而有利于第二弹簧53与按键52的连接,且有利于第二弹簧53安装在滑轨30上。
另外,在一些实施例中,附图1所示,滑轨30上设置有滑槽301,服务器20的侧面上设置固定件201,固定件201穿设于滑槽301,且滑槽301沿滑轨30的延伸方向的尺寸大于固定件201的尺寸,以使滑槽301相对滑轨30可滑动。通过这样的设置,固定件201一方面可以相对滑槽301移动,另一方面,固定件201也可以起到固定作用,使得滑轨30可以固定在服务器20上。
需要说明的是,在本申请实施例中,固定件201包括但不限于螺钉、铆钉、销钉等。
另外,在一些实施例中,滑槽301的数量为两个,两个滑槽301错位。通过这样的设置,可以使得滑轨30相对服务器20的滑动更加顺畅,并且可以按照实际需要设定滑槽301的长度,且两个滑槽301错位布局,可以避让滑轨30上强度较弱的部位。需要说明的是,当滑槽301的数量为两个时,此时,两个滑槽301的长度相同。
当然,在本申请实施例中,滑槽301的数量还可以根据实际需要进行设定,例如,滑槽301的数量为3个,再例如,滑槽301的数量为4个。对于滑槽301的具体数量,本申请实施例在此不作限定。
另外,在一些实施例中,开口12处设置有机柜门(图中未示出),机柜门与机柜10活动连接。
通过设置机柜门,在将服务器20安装在容纳腔11之后,便可以将机柜门关闭,从而机柜门对机柜10中的服务器20起到保护作用,在需要维修服务器20时,可以将机柜门打开。其中,机柜门与机柜10之间可以通过合页连接,使得机柜门与机柜10活动连接,当然,机柜门与机柜10之间还可以通过转轴连接。对于机柜门与机柜10活动连接的方式,本申请实施例在此不作限定。
另外,在一些实施例中,附图4所示,机柜10的底部设置有万向轮101。通过设置万向轮101,在需要移动机柜10时,便可以直接推动机柜10,机柜10通过万向轮101便可以移动。即通过设置万向轮101,可以便于机柜10移动。
需要说明的是,万向轮101的数量可以根据实际需要进行设定,例如,万向轮101的数量为4个,再例如,万向轮101的数量为8个。对此,本申请实施例在此不作限定。
下面结合图1对本申请实施例提供的服务器20系统的应用做具体说明:
在需要将服务器20安装在机柜10的容纳腔11中时,此时,可以在将服务器20挪动至开口12处,且使得服务器20部分的伸入开口12,之后便可以沿开口12至容纳腔11的方向推动服务器20,且在这个过程中,服务器20会进入容纳腔11,且滑轨30也会进入容纳腔11。而第一锁定模组40在未进入容纳腔11中时,第一锁定模组40处于解锁状态,即锁定件42未转动,且锁定件42未进入第二弹性部412与滑轨30的本体31之间的第一间隙中,并且第二锁定模组50处于锁定状态。当继续推动服务器20,使得第一锁定模组40进入容纳腔11中,具体的,滑轨30以及第一锁定模组40均进入托架60中,即滑轨30以及第一锁定模组40进入托架60的顶板61与底板62之间,此时,底板62便会对锁定件42施力,且由于推动的作用,底板62使得锁定件42相对滑轨30转动,而锁定件42转动之后,会带动第一弹簧43,使得第一弹簧43拉伸,并且锁定件42由于转动,锁定件42的锁定部421会进入第二弹性部412与滑轨30之间的第一间隙中。而第二弹性部412上设置凹陷部4121,锁定部421会在第一导向部的引导下进入凹陷部4121与滑轨30之间的间隙中,从而锁定部421会将凹陷部4121与滑轨30之间的间隙撑开,使得第一间隙可以进一步增大,第 二弹性部412远离滑轨30,且第二弹性部412上的阻挡片4122远离滑轨30。在继续推动服务器20的过程中,一旦第二锁定模组50移动至开口12处,此时,第二锁定模组50中的第四弹性部512上的阻挡件513便会与第一立柱111或第三立柱113接触,而阻挡件513上设置有第二导向结构5131,一旦阻挡件513与第一立柱111或第三立柱113接触,此时,第二导向结构5131便会起到导向作用,使得第一立柱111或第三立柱113对阻挡件513的阻挡减小,使得阻挡件513继续移动,且移动至容纳腔11中,并且在阻挡件513移动的过程中,第一立柱111或第三立柱113会按压阻挡件513,使得第四弹性部512与滑轨30之间的距离减小。
而在阻挡件513完全进入容纳腔11中之后,即阻挡件513已经通过了第一立柱111或第三立柱113,第四弹性部512由于自身的弹性的作用,便会恢复至初始状态。而第四弹性部512上固定有按键52,按键52会被第一立柱111或第三立柱113阻挡,此时,用户需要按压按键52,使得通过按压按键52,向第四弹性部512施力,使得第四弹性部512与滑轨30之间的间距减小,进而使得按键52与滑轨30之间的间距减小,使得按键52可以通过第一立柱111或第三立柱113进入容纳腔11中。其中,若按键52连接有第二弹簧53,第二弹簧53也会支撑按键52,使得按键52在未进入容纳腔11中时,按键52与滑轨30之间的间距足够大,且按键52被第一立柱111或第三立柱113阻挡,此时,第二锁定模组50可以认为处于锁定状态。一旦按键52被按压,且按键52完全进入容纳腔11之后,可以继续推动服务器20,使得服务器20持续进入容纳腔11中。在这个过程中,一旦推动服务器20使得第一锁定模组40移动第二立柱112或第四立柱114处,此时,阻挡片4122便会被第二立柱112或第四立柱114阻挡,使得阻挡片4122不会继续移动,进而滑轨30不会继续移动。而滑轨30与服务器20滑动连接,即滑轨30上设置滑槽301,服务器20上设置固定件201,此时,阻挡片4122被阻挡之后,使得滑轨30被阻挡,从而在服务继续被推入容纳腔11的过程中,服务器20相对滑轨30继续移动,即固定件201在滑槽301中滑动,直至服务器20被推入至合适的位置,且阻挡片4122被第二立柱112或第四立柱114阻挡,避免滑轨30对容纳腔11中连接线或连接端子等部件产生影响。
在需要将服务器20从容纳腔11中拉出时,此时,可以向服务器20施力,从而服务器20便会向容纳腔11外部移动。而在服务器20持续向容纳腔11的外部移动的过程中,一旦按键52移动至第一立柱111或第三立柱113处,第一立柱111或第三立柱113会阻挡按键52,但按键52上设置有第三导向结构521,一旦按键52与容纳腔11的第一立柱111或第三立柱113接触,第三导向结构521可以起到导向作用,使得按键52与第一立柱111或第三立柱113接触之后,第一立柱111或第三立柱113对按键52的阻挡力减小,按键52便可以从容纳腔11中移出。当按键52通过第一立柱111或第三立柱113位于容纳腔11的外部,阻挡件513便会靠近第一立柱111或第三立柱113,而阻挡件513的存在,会使得第一立柱111或第三立柱113仅位于按键52与阻挡件513之间,即阻挡件513被第一立柱111或第三立柱113阻挡,使得滑轨30不会随着服务器20的移动而移动,此时,继续向服务器20施力,拉动服务器20至容纳腔11的外部,服务器20便会持续被拉出,而滑轨30由于阻挡件513被第一立柱111或第三立柱113阻挡,滑轨30会一直位于容纳腔11中,服务器20上的固定件201相对滑轨30上的滑槽301移动,从而可以使得服务器20被拉出的较多,有利于服务器20被较多的拉出之后被维修,且由于服务器20被拉出的较多,服务器20也不会被 机柜10中其他服务器20影响,导致不易维修的问题出现。
在本申请实施例中,由于机柜10的开口12与容纳腔11连通,因此,可以通过开口12将服务器20安装于容纳腔11中。由于服务器20相对的两个侧面分别连接有滑轨30,滑轨30沿开口12至容纳腔11内部的方向沿伸,因此,在将服务器20挪动至开口12处时,可以将服务器20部分的伸入容纳腔11,且服务器20通过滑轨30推入容纳腔11中。由于滑轨30上沿开口12至容纳腔11内部的方向间隔设置有第一锁定模组40和第二锁定模组50,第一锁定模组40以及第二锁定模组50均在锁定状态与解锁状态之间切换,从而在安装服务器20的过程中,一旦将服务器20挪动至开口12处,此时,第一锁定模组40以及第二锁定模组50均位于容纳腔11的外部,第一锁定模组40处于解锁状态,第二锁定模组50处于锁定状态,从而使得服务器20可以继续被推入容纳腔11,在继续推动服务器20的过程中,一旦第一锁定模组40跟随服务器20移动至容纳腔11中,且第二锁定模组50处于容纳腔11的外部时,第一锁定模组40以及第二锁定模组50均可以处于锁定状态,继续推动服务器20,使得第二锁定模组50跟随服务器20移动至开口12处时,第二锁定模组50可由锁定状态切换至解锁状态,从而第二锁定模组50便可以进入容纳腔11。也即是,在本申请实施例中,通过在服务器20的侧面安装滑轨30,且滑轨30上设置第一锁定模组40以及第二锁定模组50,可以实现针对服务器20的安装,另外,避免在服务器20上连接滚珠轨,仅在滑轨30上设置第一锁定模组40以及第二锁定模组50,从而可以降低针对服务器20安装的成本。
本申请实施例提供了一种服务器20系统,该服务器20系统包括机柜10以及上述实施例中任一实施例中的服务器20安装结构。机柜10包括容纳腔11以及开口12,开口12与容纳腔11连通;在将服务器20挪动至开口12,且安装于容纳腔11中的情况下,第一锁定模组40以及第二锁定模组50均位于容纳腔11的外部,第一锁定模组40处于解锁状态,第二锁定模组50处于锁定状态;在第一锁定模组40跟随服务器20移动至容纳腔11中,且第二锁定模组50处于容纳腔11的外部的情况下,第一锁定模组40以及第二锁定模组50均处于锁定状态;在第二锁定模组50跟随服务器20移动至开口12处的情况下,第二锁定模组50可由锁定状态切换至解锁状态,以使服务器20以及第二锁定模组50移动至容纳腔11中。
另外,在本申请实施例中,在第一锁定模组40以及第二锁定模组50均位于容纳腔11中的情况下,第一锁定模组40处于锁定状态,第二锁定模组50处于锁定状态;在服务器20从容纳腔11中移出,且第二锁定模组50移动至开口12处的情况下,第二锁定模组50可由锁定状态切换至解锁状态。
另外,在本申请实施例中,机柜10具有相交的第一方向、第二方向和第三方向,容纳腔11中设置有第一立柱111、第二立柱112、第三立柱113以及第四立柱114,容纳腔11沿第一方向具有相对第一腔壁和第二腔壁,第一立柱111以及第三立柱113沿第二方向间隔设置于第一腔壁,第二立柱112和第四立柱114沿第二方向间隔设置于第二腔壁,第一立柱111与第二立柱112在第一方向上位置相对,第三立柱113与第四立柱114在第一方向上位置相对,第一立柱111与第二立柱112之间以及第三立柱113与第四立柱114之间均设置有多个托架60,多个托架60沿第三方向间隔分布,托架60沿开口12至容纳腔11内部的方向延伸;在第一锁定模组40跟随服务器20移动至容纳腔11中的情况下,托架60承载服务 器20,服务器20相对于托架60滑动,且托架60作用于第一锁定模组40,以使第一锁定模组40处于锁定状态。
另外,在本申请实施例中,在第一锁定模组40以及第二锁定模组50均位于容纳腔11中,且第一锁定模组40与第二立柱112或第四立柱114抵接的情况下,第二立柱112或第四立柱114阻挡第一锁定模组40,以使第一锁定模组40不再相对容纳腔11移动。
另外,在本申请实施例中,托架60包括顶板61、底板62和连接板63,顶板61与底板62间隔分布,连接板63位于顶板61与底板62之间,且连接板63分别与顶板61以及底板62连接,顶板61与底板62之间的间隙用于容纳服务器20或服务器20上的滑轨30,底板62用于作用于第一锁定模组40,以使第一锁定模组40处于锁定状态,连接板63用于连接机柜10。
另外,在本申请实施例中,开口12处设置有机柜10门,机柜10门与机柜10活动连接。
另外,在本申请实施例中,机柜10的底部设置有万向轮101。其中,万向轮101的数量可以根据实际需要进行设定,例如,万向轮101的数量为4个,再例如,万向轮101的数量为8个,对此,本申请实施例在此不作限定。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示意性实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
尽管已经示出和描述了本申请的实施例,本领域的普通技术人员可以理解:在不脱离本申请的原理和宗旨的情况下可以对这些实施例进行多种变化、修改、替换和变型,本申请的范围由权利要求及其等同物限定。

Claims (24)

  1. 一种服务器安装结构,其特征在于,所述服务器安装结构包括:服务器,所述服务器用于安装在机柜中,所述机柜包括容纳腔以及开口,所述开口与所述容纳腔连通;
    所述服务器相对的两个侧面分别连接有滑轨,所述滑轨沿所述开口至所述容纳腔内部的方向沿伸,所述滑轨上沿所述开口至所述容纳腔内部的方向间隔设置有第一锁定模组和第二锁定模组,所述第一锁定模组以及所述第二锁定模组均在锁定状态与解锁状态之间切换;
    所述第一锁定模组包括第一弹片、锁定件以及第一弹簧,所述第二锁定模组包括第二弹片,所述第一弹片部分的固定于所述滑轨,且所述第一弹片与所述滑轨之间具有第一间隙,所述锁定件转动连接于所述滑轨,且所述第一弹簧的一端连接于所述第一弹片,所述第一弹簧的另一端连接于所述锁定件,所述第二弹片部分的固定于所述滑轨,且部分所述第二弹片与所述滑轨之间具有夹角,所述第二弹片上设置有阻挡件;
    在所述第一锁定模组处于锁定状态的情况下,所述锁定件部分的位于所述第一间隙中,所述第一弹簧处于拉伸状态;在所述第一锁定模组处于解锁状态的情况下,所述锁定件位于所述第一间隙外,所述第一弹簧恢复至初始状态;在所述第二锁定模组处于锁定状态的情况下,所述夹角为第一角度,所述阻挡件远离所述滑轨;在所述第二锁定模组处于解锁状态的情况下,所述夹角为第二角度,所述阻挡件靠近所述滑轨;其中,所述第一角度大于所述第二角度。
  2. 根据权利要求1所述的服务器安装结构,其特征在于,所述第一弹片沿所述滑轨的延伸方向延伸,所述第一弹片包括第一弹性部和第二弹性部,所述第一弹性部与所述第二弹性部连接,所述第一弹性部靠近所述第二锁定模组,所述第二弹性部远离所述第二锁定模组;
    所述第一弹性部固定于所述滑轨,所述第二弹性部与所述滑轨之间具有第一间隙,所述锁定件转动连接于所述滑轨,且所述第一弹簧的一端连接于所述第一弹性部,所述第一弹簧的另一端连接于所述锁定件,所述第二弹性部上设置有阻挡片;
    在所述第一锁定模组处于锁定状态的情况下,所述锁定件部分的位于所述第一间隙中,以增大所述第一间隙,所述第一弹簧处于拉伸状态;在所述第一锁定模组处于解锁状态的情况下,所述锁定件位于所述第一间隙外,所述第一弹簧恢复至初始状态。
  3. 根据权利要求2所述的服务器安装结构,其特征在于,所述滑轨包括本体以及安装板,所述本体与所述服务器的侧面滑动连接,所述安装板上连接在所述本体上,且所述第一弹性部固定于所述本体,所述第二弹性部与所述本体之间具有间隙,所述锁定件转动连接于所述本体,所述安装板上设置有限位槽,所述限位槽沿所述滑轨的延伸方向延伸,所述锁定件部分的位于所述限位槽中,且所述限位槽沿所述滑轨的延伸方向具有相对的第一槽壁和第二槽壁;
    在所述第一锁定模组处于锁定状态的情况下,位于所述限位槽中的部分所述锁定件与所述第一槽壁抵接;在所述第一锁定模组处于解锁状态的情况下,位于所述限位槽中的部分所述锁定件与所述第二槽壁抵接。
  4. 根据权利要求2所述的服务器安装结构,其特征在于,所述锁定件包括锁定部以及连接部,所述连接部呈L型,所述锁定部与所述连接部的一端连接,所述连接部与所述滑轨转动连接,且所述连接部与所述第一弹簧连接;
    在所述第一锁定模组处于锁定状态的情况下,所述锁定部位于所述第一间隙中,且所述连接部相对所述滑轨位置偏转;在所述第一锁定模组处于解锁状态的情况下,所述锁定部移动至所述第一间隙外,所述连接部在所述第一弹簧的作用下复位。
  5. 根据权利要求2所述的服务器安装结构,其特征在于,所述锁定件朝向所述滑轨的表面设置有避让槽,所述第一弹簧部分位于所述避让槽中,与所述锁定件连接。
  6. 根据权利要求2所述的服务器安装结构,其特征在于,所述锁定件上设置有连接孔,所述第一弹簧连接于所述连接孔。
  7. 根据权利要求2所述的服务器安装结构,其特征在于,所述第二弹性部沿所述第二弹性部至所述滑轨的方向具有凹陷部;
    在所述第一锁定模组处于锁定状态的情况下,所述锁定件部分的位于所述第一间隙中,且位于所述凹陷部与所述滑轨之间,以增大所述第一间隙。
  8. 根据权利要求7所述的服务器安装结构,其特征在于,所述锁定件上设置有第一导向结构,在所述锁定件部分的移动至所述第一间隙中,且所述第一导向结构与所述凹陷部接触的情况下,所述第一导向部引导所述锁定件移动至所述凹陷部与所述滑轨之间。
  9. 根据权利要求1所述的服务器安装结构,其特征在于,所述第二弹片沿所述滑轨的延伸方向延伸,所述第二弹片包括第三弹性部以及第四弹性部,所述第三弹性部与所述第四弹性部连接,所述第三弹性部固定于所述滑轨,所述第四弹性部与所述滑轨之间具有夹角,且所述第四弹性部背离所述滑轨的表面设置有阻挡件,所述第三弹性部远离所述第一锁定模组,所述第四弹性部靠近所述第一锁定模组;
    在所述第二锁定模组处于锁定状态的情况下,所述第四弹性部与所述滑轨之间的夹角为第一角度,所述阻挡件远离所述滑轨;在所述第二锁定模组处于解锁状态的情况下,所述第四弹性部与所述滑轨之间的夹角为第二角度,所述阻挡件靠近所述滑轨。
  10. 根据权利要求9所述的服务器安装结构,其特征在于,所述阻挡件靠近所述第一锁定模组的一侧设置有第二导向结构,所述第二导向结构用于在所述阻挡件进入所述容纳腔中时对所述阻挡件进行导向。
  11. 根据权利要求9所述的服务器安装结构,其特征在于,所述第二锁定模组还包括按键,所述按键固定于所述第四弹性部背离所述滑轨的表面,且所述按键位于所述阻挡件与所述第三弹性部之间。
  12. 根据权利要求11所述的服务器安装结构,其特征在于,所述按键背离所述阻挡件的一侧设置有第三导向结构,所述第三导向结构用于在所述服务器从所述容纳腔中移出时,对所述按键进行导向。
  13. 据权利要求11所述的服务器安装结构,其特征在于,所述按键上设置有按压标记,所述按压标记用于指示在所述按压标记处按压所述按键。
  14. 根据权利要求11所述的服务器安装结构,其特征在于,所述第二锁定模组还包括第二弹簧,所述第二弹簧的一端连接于所述滑轨,所述第二弹簧的另一端连接于所述按键,所述弹簧的伸缩方向与所述按键的按压方向相同。
  15. 根据权利要求14所述的服务器安装结构,其特征在于,所述第四弹性部上设置有避让孔,所述第二弹簧穿设于所述避让孔。
  16. 根据权利要求1所述的服务器安装结构,其特征在于,所述滑轨上设置有滑槽,所述服务器的侧面上设置固定件,所述固定件穿设于所述滑槽,且所述滑槽沿所述滑轨 的延伸方向的尺寸大于所述固定件的尺寸,以使所述滑槽相对所述滑轨可滑动。
  17. 根据权利要求16所述的服务器安装结构,其特征在于,所述滑槽的数量为两个,两个所述滑槽错位。
  18. 一种服务器系统,其特征在于,所述服务器系统包括机柜以及权利要求1-17中任一项所述的服务器安装结构;
    所述机柜包括容纳腔以及开口,所述开口与所述容纳腔连通;
    在将所述服务器挪动至所述开口,且安装于所述容纳腔中的情况下,所述第一锁定模组以及所述第二锁定模组均位于所述容纳腔的外部,所述第一锁定模组处于解锁状态,所述第二锁定模组处于锁定状态;在所述第一锁定模组跟随所述服务器移动至所述容纳腔中,且所述第二锁定模组处于所述容纳腔的外部的情况下,所述第一锁定模组以及所述第二锁定模组均处于锁定状态;在所述第二锁定模组跟随所述服务器移动至所述开口处的情况下,所述第二锁定模组可由锁定状态切换至解锁状态,以使所述服务器以及所述第二锁定模组移动至所述容纳腔中。
  19. 根据权利要求18所述的服务器系统,其特征在于,在所述第一锁定模组以及所述第二锁定模组均位于所述容纳腔中的情况下,所述第一锁定模组处于锁定状态,所述第二锁定模组处于锁定状态;
    在所述服务器从所述容纳腔中移出,且所述第二锁定模组移动至所述开口处的情况下,所述第二锁定模组可由所述锁定状态切换至所述解锁状态。
  20. 根据权利要求18所述的服务器系统,其特征在于,所述机柜具有相交的第一方向、第二方向和第三方向,所述容纳腔中设置有第一立柱、第二立柱、第三立柱以及第四立柱,所述容纳腔沿所述第一方向具有相对第一腔壁和第二腔壁,所述第一立柱以及所述第二立柱沿所述第二方向间隔设置于所述第一腔壁,所述第三立柱和所述第四立柱沿所述第二方向间隔设置于所述第二腔壁,所述第一立柱与所述第三立柱在所述第一方向上位置相对,所述第二立柱与所述第四立柱在所述第一方向上位置相对,所述第一立柱与所述第二立柱之间以及所述第三立柱与所述第四立柱之间均设置有多个托架,多个托架沿所述第三方向间隔分布,所述托架沿所述开口至所述容纳腔内部的方向延伸;
    在所述第一锁定模组跟随所述服务器移动至所述容纳腔中的情况下,所述托架承载所述服务器,所述服务器相对于所述托架滑动,且所述托架作用于所述第一锁定模组,以使所述第一锁定模组处于锁定状态。
  21. 根据权利要求20所述的服务器系统,其特征在于,在所述第一锁定模组以及所述第二锁定模组均位于所述容纳腔中,且所述第一锁定模组与所述第二立柱或第四立柱抵接的情况下,所述第二立柱或所述第四立柱阻挡所述第一锁定模组,以使所述第一锁定模组不再相对所述容纳腔移动。
  22. 根据权利要求20所述的服务器系统,其特征在于,所述托架包括顶板、底板和连接板,所述顶板与所述底板间隔分布,所述连接板位于所述顶板与所述底板之间,且所述连接板分别与所述顶板以及所述底板连接,所述顶板与所述底板之间的间隙用于容纳服务器或服务器上的滑轨,所述底板用于作用于所述第一锁定模组,以使所述第一锁定模组处于锁定状态,所述连接板用于连接所述机柜。
  23. 根据权利要求18-22中任一项所述的服务器系统,其特征在于,所述开口处设置有机柜门,所述机柜门与所述机柜活动连接。
  24. 根据权利要求18-22中任一项所述的服务器系统,其特征在于,所述机柜的底部设置有万向轮。
PCT/CN2024/087891 2023-10-09 2024-04-16 服务器安装结构及服务器系统 Pending WO2025077130A1 (zh)

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