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WO2016187803A1 - 一种电池组件以及电子烟 - Google Patents

一种电池组件以及电子烟 Download PDF

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Publication number
WO2016187803A1
WO2016187803A1 PCT/CN2015/079804 CN2015079804W WO2016187803A1 WO 2016187803 A1 WO2016187803 A1 WO 2016187803A1 CN 2015079804 W CN2015079804 W CN 2015079804W WO 2016187803 A1 WO2016187803 A1 WO 2016187803A1
Authority
WO
WIPO (PCT)
Prior art keywords
battery
battery assembly
protective cover
groove
disposed
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.)
Ceased
Application number
PCT/CN2015/079804
Other languages
English (en)
French (fr)
Inventor
刘秋明
向智勇
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.)
Kimree Technology Co Ltd
Original Assignee
Kimree 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 Kimree Technology Co Ltd filed Critical Kimree Technology Co Ltd
Priority to CN201590001299.0U priority Critical patent/CN207653570U/zh
Priority to PCT/CN2015/079804 priority patent/WO2016187803A1/zh
Publication of WO2016187803A1 publication Critical patent/WO2016187803A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/60Devices with integrated user interfaces
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/90Arrangements or methods specially adapted for charging batteries thereof
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/10Primary casings; Jackets or wrappings
    • H01M50/147Lids or covers
    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

Definitions

  • the utility model relates to the field of electronic cigarettes, in particular to a battery component and an electronic cigarette.
  • the electronic cigarette in the prior art comprises an atomizing component for atomizing the tobacco oil to form the smoke, and a battery component for powering the atomizing component, in order to better satisfy the user's generated smoke generated by the atomizing component.
  • the concentration requirement the user can adjust the output power of the battery component, and thus can change the concentration of the smoke atomized by the atomizing component according to the user's operation;
  • the output power of the battery component is adjusted in such a manner that the user presses an adjustment button disposed on the electronic cigarette, and the battery component is pre-set with a preset value, so that the user presses the adjustment button once, each time
  • the output power of the battery assembly is increased by the preset value relative to the previous output power, thereby enabling the user to gradually increase the output power of the battery assembly by pressing the adjustment button;
  • the disadvantages of the prior art are: 1. If the electronic cigarette is provided with a trigger button, that is, when the user needs to smoke the smoke, the trigger button is pressed to power the battery assembly for the atomization assembly, because the battery assembly is used for adjusting the battery assembly.
  • the adjustment button of the output power and the trigger button are both disposed on the electronic cigarette, so that the erroneous operation is extremely prone to occur, for example, the user does not want to change the output power of the current battery assembly, but in the process of sucking the smoke.
  • the adjustment button is pressed, for example, the user wants to change the output power of the current battery component, but presses the trigger button, thereby causing inconvenience to the user in using the electronic cigarette;
  • the trigger button in the process of adjusting the output power of the battery component, if the user wants the battery component to output a large output power, but the current output power of the battery component is small, the user needs to continuously press the trigger button multiple times. Therefore, it is inconvenient for the user to adjust the output power of the battery pack.
  • the utility model provides a battery assembly and an electronic cigarette
  • a battery assembly for combining with an atomizing assembly to form an electronic cigarette wherein: the battery assembly Provided with a battery and an encoder for controlling the output power of the battery assembly, and the battery assembly is provided with the first end and the second end opposite to each other, and the opposite ends of the first end end face are respectively disposed a slot for inserting with the atomizing component and a groove extending to a side of the battery component, wherein the groove is provided with a rotating wheel connected to the encoder, and the rotating wheel is away from the first
  • the end faces of the two ends are parallel or in the same plane as the first end face, and the outer peripheral surface of the runner is provided with a friction structure to rotate the wheel by contacting the friction structure to adjust the output of the battery assembly power;
  • the second end surface of the battery assembly is provided with a receiving groove and a protective cover disposed in the receiving groove, wherein the receiving groove faces the groove wall of the second end end surface and is disposed with the battery
  • the protective cover is removed to enable charging through the charging interface.
  • the opposite ends of the protective cover are respectively disposed with a first inclined surface and a second inclined surface, and the first inclined surface and the second inclined surface are respectively disposed facing the slot wall of the receiving slot provided with the charging interface, and
  • the groove wall forms a predetermined angle.
  • a first space is formed between the first inclined surface and the second inclined surface and the groove wall of the receiving slot provided with the charging interface, and the protective cover is disposed on the first inclined surface and the second inclined surface An abutting surface, the abutting surface is in contact with a groove wall of the accommodating groove provided with a charging interface, so that when the charging is required, pressing the protective cover is provided with the first slope or the first One end of the two inclined faces moves the pressed end of the protective cover toward the first space, and the other end is lifted by the action of the lever to enable the protective cover to be taken out.
  • the first magnetic members are two and are respectively located at two ends of the accommodating groove, and the charging interface is located between the two first magnetic members, and the protective cover is provided for The second magnetic member is attracted by the first magnetic member, and the second magnetic member is two and opposite to the positions of the two of the first magnetic members.
  • the protective cover includes a strip-shaped cover body and the second magnetic member, the cover body is provided with the abutting surface, and the abutting surface is provided with two first magnetic bodies The first fixing groove corresponding to the position of the piece, the second magnetic piece is fixed in the first fixing groove by the tension fit insertion.
  • the first magnetic member is made of a magnet material
  • the second magnetic member is made of a metal material. Pieces.
  • the second end surface of the battery assembly is provided with two second fixing slots, and the two second fixing slots are respectively located at opposite ends of the receiving slot and are connected to the receiving slot.
  • a guiding block extending into the accommodating groove is fixedly inserted into the accommodating groove, the guiding block is provided with a guiding inclined surface, and the guiding inclined surfaces of the two guiding blocks are respectively associated with the first A bevel and a second bevel position correspond to each other.
  • the friction structure is a friction strip extending along the axial direction of the runner.
  • the battery assembly is disposed between the first end end surface and the second end end surface to define a first side, a second side, a third side, and a fourth side of the side of the battery assembly.
  • the first side and the second side are opposite in position, and the third side and the fourth side are opposite in position.
  • the rotating wheel is located above the first side, and the atomizing component is located in the first Above the two sides, an end of the second side adjacent to the atomizing assembly is provided with a switch for controlling the operation of the battery assembly.
  • the third side is provided with a mini USB interface electrically connected to the battery, and the mini USB interface is used for charging the battery.
  • the fourth side is provided with a display screen for displaying the amount of electricity of the battery assembly and/or the output power and/or the number of remaining ports of the battery assembly.
  • the outer peripheral surface of the rotating wheel provided with the friction structure is located in the target space, the target space is an extending direction of the second end surface of the battery assembly, an extending direction of the first side, the a space surrounded by the extending direction of the third side surface and the extending direction of the fourth side surface.
  • the battery assembly further includes a hollow sleeve, an upper cover that is disposed at one end of the sleeve, and a lower cover that is disposed at the other end of the sleeve.
  • the one end of the upper cover is provided with the concave a groove, a bottom wall of the groove is provided with a perforation, the perforation is inserted with a revolver needle, one end of the reel needle is connected with the reel, and the other end of the reel needle is opposite to the encoder Connected to the outer peripheral surface of the runner pin, a first latching protrusion and a second latching protrusion are disposed at intervals, and the first latching protrusion is clamped on the upper surface of the upper cover, A fixing member made of a plastic material connected to the upper cover is disposed between the cover and the second holding protrusion, and the second holding protrusion is resisted by the fixing member to block the rotation. The needle moves toward the first end face.
  • the runner needle and the upper cover are made of a metal material.
  • the groove wall of the groove is provided with an annular groove disposed around the upper end of the perforation, the annular groove is in communication with the perforation, and the first clamping protrusion is annular, the first A retaining projection is placed in the annular groove.
  • the fixing member includes a fixing plate, and the fixing plate is provided with a receiving hole penetrating the fixing plate and a connecting post on a surface of the fixing plate, and the connecting post is connected to the upper cover
  • the insertion hole is sleeved on the rotating needle, and an inner circumferential surface of the insertion hole protrudes from an abutting arm extending toward the second clamping protrusion, and the resisting arm is resisted by the resisting arm
  • the second latching protrusion prevents the runner needle from moving toward the first end end face.
  • the upper end surface of the resisting arm is provided with a guiding inclined surface facing the turning needle, so that the steering needle can be guided along the guiding inclined surface during assembly until the first clamping convex The card is held on the upper surface of the upper cover.
  • the surface of the protective cover facing away from the first end end surface is in the same plane as the second end end surface.
  • a surface of the protective cover facing away from the end surface of the first end is provided with a rubbing pattern.
  • An electronic cigarette comprising a battery assembly and an atomizing assembly, wherein the battery assembly is provided with a battery and an encoder for controlling an output power of the battery assembly, and the battery assembly is disposed at a positionally opposite first And a second end, the opposite ends of the first end end surface are respectively provided with a slot for inserting with the atomizing component and a groove extending to a side of the battery component, wherein the groove is provided with a rotating wheel connected to the encoder, an end surface of the rotating wheel remote from the second end is parallel or in the same plane as the first end surface, and a friction structure is disposed on an outer circumferential surface of the rotating wheel, Rotating the wheel by contacting the friction structure to adjust an output power of the battery assembly;
  • the second end surface of the battery assembly is provided with a receiving groove and a protective cover disposed in the receiving groove, wherein the receiving groove faces the groove wall of the second end end surface and is disposed with the battery
  • the atomizing assembly is inserted into the slot on the first end surface of the battery assembly to The atomizing assembly and the battery assembly are detachably connected.
  • the utility model provides a battery assembly and an electronic cigarette. Since the end surface of the rotating wheel remote from the second end is parallel or in the same plane with the first end surface, the user can be effectively prevented from mishandling the rotation. a wheel, and the groove and the slot are respectively located at opposite ends of the first end end surface, so that the rotating wheel can be well aligned with the user's field of view when smoking, thereby facilitating observation of the rotation of the wheel And the user's finger can rotate the rotating wheel to adjust the output power of the battery assembly; and further, the second end of the battery assembly is provided with a receiving groove and is disposed in the receiving groove.
  • the protective cover is provided with the charging interface, and the protective cover is adsorbed by the first magnetic member, thereby facilitating the removal of the protective cover for charging during charging, and due to the second end
  • the end surface is opposite to the end surface of the first end.
  • the protective cover is located at the bottom of the battery assembly when normally placed, and is not easily touched, so that it can be effectively avoided during placement or use. Accidental detachment of the protective cap, so that the protective cap can be well protected the charging interface to prevent dust or other contaminants into the external charging interface, thereby affecting the battery assembly electrically connected.
  • FIG. 1 is a schematic overall structural view of a preferred embodiment of a battery assembly provided by the present invention.
  • FIG. 2 is a schematic view showing the overall structure of another preferred embodiment of the battery assembly provided by the present invention.
  • FIG. 3 is a cross-sectional structural view of a preferred embodiment of a battery assembly provided by the present invention.
  • FIG. 4 is a partial cross-sectional structural view of a preferred embodiment of a battery assembly provided by the present invention.
  • FIG. 5 is a partial cross-sectional structural view of another preferred embodiment of the battery assembly provided by the present invention.
  • FIG. 6 is a partial structural schematic view of a preferred embodiment of a battery assembly provided by the present invention.
  • FIG. 7 is a schematic view showing a structure of an explosion connection of a preferred embodiment of the battery assembly provided by the present invention.
  • FIG. 8 is a partial cross-sectional structure of another preferred embodiment of the battery assembly provided by the present invention schematic diagram
  • FIG. 9 is a partial structural schematic view of another preferred embodiment of the battery assembly provided by the present invention.
  • FIG. 10 is a partial structural schematic view of another preferred embodiment of the battery assembly provided by the present invention.
  • FIG. 11 is a partial cross-sectional structural view of another preferred embodiment of the battery assembly provided by the present invention.
  • FIG. 12 is a partial cross-sectional structural view of another preferred embodiment of the battery assembly provided by the present invention.
  • FIG. 13 is a partial structural schematic view of a preferred embodiment of a battery assembly provided by the present invention.
  • FIG. 14 is a partial structural schematic view of a preferred embodiment of a battery assembly provided by the present invention.
  • FIG. 15 is a partial structural schematic view of a preferred embodiment of a battery assembly provided by the present invention.
  • 16 is a partial structural schematic view of a preferred embodiment of a battery assembly provided by the present invention.
  • FIG. 17 is a partial structural schematic view of a preferred embodiment of a battery assembly provided by the present invention.
  • Embodiment 1 The battery assembly provided in this embodiment can facilitate the user to adjust the output power, facilitate charging, avoid user misoperation, and bring convenience to the user;
  • FIG. 1 and FIG. 2 are schematic diagrams of the overall structure of the battery assembly, and FIGS. 1 and 2 are the same.
  • FIG. 3 is a schematic cross-sectional structural view of the battery assembly;
  • the battery assembly provided in this embodiment can be combined with an atomizing component to form an electronic cigarette, and the battery An assembly capable of powering the atomizing assembly to cause the atomizing assembly to atomize the soot to form a smoke;
  • the battery assembly 100 is provided with a battery 101 and an encoder 102 for controlling the output power of the battery assembly;
  • the encoder 102 is a device capable of converting an angular displacement into an electrical signal, and the specific structure and implementation principle of the encoder 102 are shown in the prior art, and are not described in detail in this embodiment.
  • the battery assembly 100 is provided with a first end 200 and a second end 300 opposite to each other;
  • the first end 200 is the top of the battery assembly, and the enlarged structure of the first end 200 is shown in FIG. 4;
  • the second end 300 is the bottom of the battery assembly, and the enlarged structure of the second end 300 is shown in FIG. 5;
  • first end 200 The specific structure of the first end 200 is described in detail in conjunction with FIG. 1 to FIG. 4:
  • the opposite ends of the end surface of the first end 200 are respectively provided with a slot 201 for inserting with the atomizing component and a recess 203 extending to the side of the battery assembly 100;
  • connection structure for detachably connecting with the atomization assembly is disposed in the slot 201.
  • the connection structure is a threaded connection structure, so that the battery The component and the atomizing component can be screwed together.
  • the present embodiment only exemplifies the connecting structure, which is not limited, as long as the atomizing component can be inserted and fixed in the slot 201.
  • the connecting structure may also be a snap connection structure;
  • a battery electrode 202 capable of being electrically connected to the atomization assembly is disposed in the slot 201 (see FIG. 4). Illustrated) to enable the atomizing assembly to be electrically coupled to the battery 101 through the battery electrode 202;
  • the specific structure of the battery electrode 202 is not limited in this embodiment, as long as the battery component 100 can be used to supply power to the atomization component.
  • the battery electrode 202 can include An outer electrode and an inner electrode electrically connected to the battery 101 and nested with each other, and an insulating ring for electrical isolation is disposed between the outer electrode and the inner electrode;
  • the groove 203 is provided with a rotating wheel 204 connected to the encoder 102;
  • the specific connection between the encoder 102 and the reel 204 is not limited, as long as the encoder 102 can change the battery assembly 100 by screwing the reel 204.
  • the output power is enough.
  • the end surface of the rotating wheel 204 away from the second end 300 is parallel or in the same plane as the first end surface, that is, the end surface of the rotating wheel 204 away from the second end 300 may be slightly Higher than the end surface of the first end 200, lower than the end surface of the first end 200 or flush with the end surface of the first end 200, thereby facilitating the user to adjust the output power of the battery assembly by rotating the reel 204 In order to make the battery assembly 100 compact in overall structure, the user can be effectively prevented from operating the runner 204 by mistake.
  • a friction structure 205 is disposed on an outer circumferential surface of the runner 204 to rotate the runner 204 by contacting the friction structure 205 to adjust an output power of the battery assembly 100;
  • the friction structure 205 is disposed on the outer circumferential surface of the rotating wheel 204 shown in this embodiment, so that the user can adjust the output power of the battery assembly 100, thereby effectively improving the convenience in the user adjustment process and avoiding erroneous operations;
  • the specific structure of the friction structure 205 is not limited in this embodiment, as long as the friction between the user's hand and the runner 204 during the user operation can be increased.
  • the friction structure 205 can be regular or Irregular stripe, pattern, or a plurality of protrusions;
  • the friction structure 205 is taken as an example of a friction strip extending along the axial direction of the runner 204.
  • the end of the second end 300 of the battery assembly 100 is provided with a receiving groove 301 and a protective cover 302 placed in the receiving groove 301;
  • the charging slot 301 is disposed at a slot wall facing the second end end surface and is provided with a charging interface 303 electrically connected to the battery 101;
  • the external power source can be used to charge the battery 101 through the charging interface 303.
  • the battery assembly 100 provided in this embodiment can also charge the external device through the charging interface 303, so that the The battery pack 100 can be used as a mobile power source to further bring the user Convenient;
  • the first magnetic member 304 magnetically attracted to the protective cover 302 is further disposed at the groove wall of the accommodating groove 301 facing the second end end surface;
  • the specific shape and the number of the first magnetic members 304 are not limited in this embodiment, as long as the protective cover 302 can be firmly fixed in the accommodating groove 301 by the first magnetic member 304. .
  • the protective cover 302 is detachably covered in the accommodating groove 301 by the adsorption of the first magnetic member 304;
  • the protective cover 302 can be effectively prevented from being accidentally detached by the first magnetic member 304, so that the protective cover 302 can protect the charging interface 303 well and avoid the outside. Dust or other contaminants enter the charging interface 303, thereby affecting the electrical connection of the battery assembly 100;
  • the protective cover 302 When charging is required, the protective cover 302 is taken out to be charged by the charging interface 303.
  • Embodiment 2 This embodiment further describes the specific structure of the battery assembly 100 in further detail:
  • how to realize the battery assembly provided by the embodiment is convenient for the user to take out the protective cover 302 so that the external power source can charge the battery 101 through the charging interface 303, or take out the protective cover 302 so that The battery 101 can be charged by an external device through the charging interface 303;
  • the opposite ends of the protective cover 302 are respectively provided with a first inclined surface 3021 and a second inclined surface 3022;
  • the first inclined surface 3021 and the second inclined surface 3022 are disposed facing the slot wall of the receiving slot 301 and provided with the charging interface 303, and form a predetermined angle with the slot wall.
  • the preset angle is not limited in this embodiment, as long as a certain space is formed between the first inclined surface 3021 and the second inclined surface 3022 and the groove wall;
  • this embodiment provides two ways to take the protective cover 302 out of the accommodating slot 301:
  • the first inclined surface 3021 and the second inclined surface 3022 and the receiving groove 301 is provided with a charging interface 303 between the groove wall is formed with a first space 305;
  • the side surface of the receiving groove 301 corresponding to the first inclined surface 3021 and the second inclined surface 3022 is curved so that the ends of the first inclined surface 3021 and the second inclined surface 3022 can follow the arc. Shaped guided movement.
  • the protective cover 302 is provided with an abutting surface 3023 between the first inclined surface 3021 and the second inclined surface 3022;
  • the abutting surface 3023 is in contact with the groove wall of the accommodating groove 301 provided with the charging interface 303, so that when the protective cover 302 is fixedly disposed in the accommodating groove 301, the abutting surface 3023 can protect the charging interface 303, effectively preventing contaminants outside the battery assembly 100 from damaging the charging interface 303.
  • the protective cover 302 When charging is required, that is, when the external power source needs to be electrically connected to the charging interface 303, the protective cover 302 is pressed to provide one end of the first inclined surface 3021 or the second inclined surface 3022, so that the protective cover 302 is pressed. One end moves toward the first space 305, and the other end is lifted by the action of a lever to enable the protective cover 302 to be taken out.
  • the charging interface 303 can be effectively protected, and the electrical connection relationship between the charging interface 303 and the external power source is effectively ensured, and
  • the protective cover 302 is provided with the first inclined surface 3021 and the second inclined surface 3022, so that in the process of charging the battery assembly 100, the user only needs to press the protective cover 302 to provide the first inclined surface 3021 or the first One end of the two inclined surfaces 3022 is sufficient, so that the other end of the protective cover 302 can be lifted by the action of the lever, so that the user can pick up the protective cover 302 that has been lifted, effectively improving the user's battery assembly. 100 is convenient when charging.
  • FIG. 7 is a schematic diagram of an explosive connection structure of the battery assembly 100, wherein the structure of the area 700 shown in FIG. 7 is shown in FIG. 9 to FIG. 10;
  • the second end 300 of the battery assembly 100 is provided with two second fixing slots 701 (as shown in FIGS. 8 and 9);
  • the two second fixing slots 701 are respectively located at opposite ends of the accommodating slot 301 and communicate with the accommodating slot 301;
  • a guiding block 702 extending into the accommodating groove 301 is fixedly inserted into the accommodating groove 301.
  • the structure after the guiding block 702 is disposed in the second fixing groove 701 is shown in FIG. 7. , Figure 8 and Figure 10;
  • the guiding block 702 is provided with a guiding slope 703, and the guiding slopes 703 of the two guiding blocks 702 are respectively disposed corresponding to the positions of the first inclined surface 3021 and the second inclined surface 3022.
  • the first inclined surface 3021 of the protective cover 302 is pressed, and the second inclined surface 3022 may be pressed.
  • the specific implementation process is the same as pressing the first inclined surface 3021. It will not be described in detail in this embodiment;
  • the preset position is that the abutting surface 3023 of the protective cover 302 no longer abuts the charging interface 303, and the second inclined surface 3022 is tilted relative to the receiving slot 301 to enable a user to The protective cover 302 is taken out from the accommodating groove 301.
  • the protective cover 302 is provided with the guiding block 702 such that the first inclined surface 3021 or the second inclined surface 3022 can be along the guiding inclined surface 703 of the guiding block 702.
  • the guiding movement is performed to enable the user to take out the protective cover 302 from the accommodating groove 301. It can be seen that the process of providing the guiding inclined surface 703 on the guiding block 702 is simple and the processing difficulty is low. Thereby, the efficiency of producing the battery assembly 100 is effectively improved, thereby reducing the cost of producing the battery assembly 100.
  • FIG. 5 and Figure 6 illustrates how the protective cover 302 is specifically disposed in the receiving slot 301;
  • the manner in which the protective cover 302 is fixedly disposed in the accommodating groove 301 is a preferred example, which is not limited;
  • the first magnetic members 304 are two and located at two ends of the accommodating groove 301, and the charging interface 303 is located at the two Between a magnetic member 304;
  • the protective cover 302 is provided with a second magnetic member 3024 for adsorbing with the first magnetic member 304;
  • the second magnetic members 3024 are two and respectively opposite to the two first magnetic members 304, so that when the protective cover 302 is located in the accommodating groove 301, The first magnetic member 304 can firmly magnetically adsorb the second magnetic member 3024, so that the protective cover 302 can be stably disposed in the accommodating groove 301 to avoid shaking due to the battery assembly 100 or the user's use process.
  • the protective cover 302 is detached from the battery assembly 100 to cause damage to the charging interface 303.
  • the protective cover 302 includes a strip-shaped cover body and the second magnetic member 3024;
  • the cover body is provided with the abutting surface 3023;
  • the abutting surface 3023 is provided with two first fixing slots 3025 corresponding to the positions of the first magnetic members 304.
  • the second magnetic members 3024 are fixed to the first fixing slots by a tension fit insertion. Within 3025.
  • the second magnetic member 3024 can be directly inserted into the first fixing groove 3025 during the assembly of the battery assembly 100, thereby effectively improving the assembly efficiency, and
  • the position of the first fixing groove 3025 is preset, so that the first magnetic member 304 and the second magnetic member 3024 are correspondingly positioned without a later manual calibration, so that the The first magnetic member 304 can magnetically adsorb the protective cover 302 so that the protective cover 302 can be stably disposed in the receiving slot 301, which effectively ensures the safety of the charging interface 303.
  • the first magnetic member 304 is made of a magnet material
  • the second magnetic member 3024 is made of a metal material such as iron, stainless steel or the like.
  • the advantage that the second magnetic member 3024 is made of a metal material is that, because the magnet material is relatively fragile, if the first magnetic member 304 of the magnet material member is broken, the protective cover 302 cannot be made.
  • the second magnetic member 3024 of the protective cover 302 is set to be metal.
  • the second magnetic member 3024 of the protective cover 302 is set to be metal. The material member can effectively prevent the first magnetic member 304 from being collided, and effectively protect the safety of the first magnetic member 304.
  • the battery assembly 100 is disposed between the end surface of the first end 200 and the end surface of the second end 300 to define a first side 401, a second side 402, and a third side 403 for enclosing the side of the battery assembly. a fourth side 404, wherein the first side 401 and the second side 402 are opposite in position, and the third side 403 and the fourth side 404 are opposite in position;
  • the runner 204 is located above the first side 401, and the atomizing assembly is located above the second side 402;
  • One end of the second side 402 adjacent to the atomizing assembly is provided with a switch 405 for controlling the operation of the battery assembly 100.
  • the user presses the switch 405 to control the battery assembly 100 to supply power to the atomizing assembly, so that the atomizing assembly can atomize the smoke oil to form smoke;
  • the switch 405 and the reel 204 can be located on different sides of the battery assembly 100, thereby avoiding erroneous operation and avoiding the user changing the output power of the battery assembly 100.
  • the accidental pressing of the switch 405 also prevents the user from erroneously adjusting the output power of the battery pack 100 when smoke is required to be smoked.
  • the third side 403 is provided with a mini USB interface 406 electrically connected to the battery 101 , and the mini USB interface 406 is used for charging the battery 101 .
  • the external power source charges the battery 101 through the mini USB interface 406.
  • the preferred interface for the interface 406 is a mini USB interface, which is not limited, and other standard charging interfaces may be used as long as the external power source can charge the battery 101 through the interface 406. That is, of course, the battery 101 can also charge the external device through the mini USB interface 406, so that the battery assembly 100 can also be used as a mobile power source, which is further convenient for the user.
  • the mini USB interface 406 is disposed on the side of the battery assembly 100, which is convenient for the user to use, and has a small area, thereby reducing external dust or other pollutants to damage the battery assembly. Probability.
  • the fourth side 404 is provided with a display screen 407 for displaying the amount of power of the battery assembly and/or the output power and/or the number of remaining ports of the battery assembly 100.
  • the display screen 407 can enable the user to view the remaining power of the battery 101 at any time, thereby enabling the user to estimate the length of time that the battery assembly 100 can still be used;
  • the user can view the output power of the battery assembly 100 at any time, thereby facilitating the user to adjust the output power through the reel 204, further facilitating the user's output power to the battery assembly 100. Adjustment
  • a controller electrically connected to the battery 101 is disposed in the battery assembly 100, and the controller is further electrically connected to the display screen 407.
  • the controller is capable of detecting the atomizing component The amount of remaining soot stored therein, so that the controller calculates the remaining number of ports that the atomizing assembly can also suck according to the remaining amount of soot oil, and the user can view the above through the display screen 407 at any time.
  • the number of remaining ports is convenient for the user to use, and the user can determine, according to the remaining number of ports, that when the amount of remaining smoke oil in the atomization assembly is insufficient, the user can add the smoke oil at any time as needed to avoid the shortage of the remaining amount of smoke oil. The occurrence of a situation in which the user is unable to smoke smoke;
  • the display screen 407 can display the remaining number of ports, avoiding the occurrence of a situation in which the user triggers the battery component 100 to supply power to the atomizing component when the amount of smoke stored in the atomizing assembly is insufficient.
  • the battery assembly 100 supplies power to the atomizing assembly with insufficient amount of remaining oil, the atomizing assembly may be air-burned, thereby damaging the atomizing assembly, and causing the user to suck the gas that is harmful to the body. .
  • the outer circumferential surface of the rotating wheel 204 provided with the friction structure 205 is located in the target space, and the target space is an extending direction of the end surface of the second end 200 of the battery assembly 100, a space surrounded by the extending direction of the first side surface 401, the extending direction of the third side surface 403, and the extending direction of the fourth side surface 404.
  • the structure can effectively improve the efficiency of assembling the battery assembly 100, and the structure capable of effectively improving the transmission connection relationship between the encoder 102 and the runner 204 is stable;
  • the battery assembly 100 further includes a hollow sleeve 801;
  • the upper cover 802 is disposed at one end of the sleeve body 801 and the lower cover 803 is disposed at the other end of the sleeve body 801;
  • the bottom wall of the recess 203 is provided with a perforation 8021, the perforation 8021 inserted with a runner needle 804;
  • One end of the runner pin 804 is connected to the wheel 204, and the other end of the wheel pin 804 is connected to the encoder 102;
  • the outer peripheral surface of the runner pin 804 is spaced apart from the first latching protrusion 805 and the second latching protrusion 806;
  • the first holding protrusion 805 is clamped on the upper surface of the upper cover 802 (as shown in FIG. 4);
  • a fixing member 807 made of a plastic material connected to the upper cover 802 is disposed between the upper cover 802 and the second holding protrusion 806.
  • the specific structure of the fixing member 807 can also be seen. Figure 16;
  • the second retaining projection 806 is resisted by the retaining member 807 to prevent the runner needle 804 from moving toward the end face of the first end 200.
  • runner pin 804 and the upper cover 802 are made of a metal material.
  • the groove wall of the groove 203 is provided with an annular groove 8023 disposed around the upper end of the through hole 8021.
  • the annular groove 8023 is in communication with the through hole 8021.
  • the first holding protrusion 805 is annular
  • the first holding protrusion 805 is placed in the annular groove 8023 so that the turning pin 804 fixed in the annular groove 8023 can be drivenly connected with the encoder and the rotating wheel;
  • the fixing member 807 includes a fixing plate 8071
  • the fixing plate 8071 is provided with a socket 8072 extending through the fixing plate 807 and a connecting post 8073 on a surface of the fixing plate 8071;
  • the connecting post 8073 is connected to the upper cover 802;
  • a receiving cavity is disposed on a side of the upper cover 802 corresponding to the fixing plate 8071, so that the connecting post 8073 can be inserted into the receiving cavity, and the receiving cavity An interference fit with the connecting post 8073 to securely connect the upper cover 802 with the fixing plate 8071;
  • the jack 8072 is sleeved on the runner pin 804;
  • An inner peripheral surface of the insertion hole 8072 is convexly disposed with an abutting arm 8074 extending toward the second holding protrusion 806, and the second holding protrusion 806 is resisted by the resisting arm 8074 to block
  • the runner needle 804 moves toward the end of the first end 200.
  • the resisting arm 8074 is made of an elastic material, so that the resisting arm 8074 can firmly resist the second latching protrusion 806 to lift the fixing member 807 and the turn.
  • the upper end surface of the resisting arm 8074 is provided with a guiding slope 8075 facing the turning needle so that the turning needle 804 can be guided along the guiding inclined surface 8075 during assembly until the The first holding protrusion 805 is held on the upper surface of the upper cover 802 (as shown in FIG. 4).
  • the surface of the protective cover 302 facing away from the end surface of the first end 200 is in the same plane as the end surface of the second end 300.
  • the surface of the protective cover 302 facing away from the end surface of the first end 200 is in the same plane as the end surface of the second end 300, thereby preventing the protective cover 302 from colliding with the battery assembly 100.
  • the occurrence of the phase detachment further avoids the occurrence of external contaminants damaging the charging interface 303.
  • the surface of the protective cover 302 facing away from the end surface of the first end 200 is provided with a rubbing pattern 1701.
  • the frictional pattern 1701 can facilitate the user to apply an external force on the protective cover 302, thereby facilitating the removal of the protective cover 302 from the receiving slot 301;
  • Embodiment 3 this embodiment provides an electronic cigarette
  • the electronic cigarette comprises a battery component and an atomizing component
  • the atomizing component is configured to atomize the smoke oil to form a smoke when the battery component is powered.
  • the specific structure of the atomizing component is not limited in this embodiment, as long as the atomizing component can pass the
  • the slot 201 is inserted and fixed on the battery pack.

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  • Electrochemistry (AREA)
  • General Chemical & Material Sciences (AREA)
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  • Human Computer Interaction (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)
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Abstract

一种电池组件(100)以及电子烟,所述电池组件(100)内设置有电池(101)以及用与所述电池组件(100)的输出功率的编码器(102),且所述电池组件(100)的第一端(200)端面上设置有插槽(201)以及凹槽(203),所述凹槽(203)内设置有转轮(204);所述电池组件(100)的第二端(300)端面处设置有容置槽(301)及保护盖(302),所述容置槽(301)设置有与电池(101)电连接的充电接口(303)及于所述保护盖(302)磁性相吸的第一磁性件(304)。所述转轮(204)的端面与所述第一端(200)端面平行或位于同一平面,便于用于通过旋转所述转轮(204)以调整所述电池组件(100)的输出功率,以使所述电池组件(100)整体结构紧凑,且可有效地避免用户误操作所述转轮(204)。通过所述第一磁性件(304)吸附所述保护盖(302)能够有效避免保护盖(302)的意外脱落,从而使所述保护盖(302)能够很好的保护所述充电接口(303),避免外界的灰尘或其他污染物进入到所述充电接口(303)。

Description

一种电池组件以及电子烟 技术领域
本实用新型涉及电子烟领域,尤其涉及的是一种电池组件以及电子烟。
背景技术
现有技术中的电子烟包括用于雾化烟油以形成烟雾的雾化组件,以及用于为所述雾化组件供电的电池组件,为更好的满足用户对雾化组件所生成的烟雾的浓度的需求,则用户能够调节电池组件的输出功率,进而能够根据用户的操作以改变雾化组件所雾化的烟雾的浓度;
现有技术中调节电池组件的输出功率的方式为,用户按压设置在所述电子烟上的调节按键,且所述电池组件预设有预设值,以使用户每按压该调节按键一次,所述电池组件的输出功率相对于上次的输出功率就增长了所述预设值,从而使得用户能够通过按压调节按键的方式以逐步提升所述电池组件的输出功率;
现有技术的缺点在于,1、若电子烟设置有触发按键,即用户在需要抽吸烟雾时,按压该触发按键以使所述电池组件为所述雾化组件供电,因用于调节电池组件输出功率的调节按键和所述触发按键都设置在所述电子烟上,则极容易出现误操作的情况,例如用户不希望改变当前所述电池组件的输出功率,但在抽吸烟雾的过程中,却按下了所述调节按键,例如用户希望改变当前所述电池组件的输出功率,但却按下了所述触发按键,从而为用户使用电子烟的过程中带来了不便;2、采用现有技术进行电池组件输出功率的调节的过程中,若用户希望电池组件能够输出较大的输出功率,但是所述电池组件当前的输出功率较小,则用户需要连续按压所述触发按键多次,从而为用户调节电池组件输出功率带来了不便。
实用新型内容
本实用新型提供了一种电池组件以及电子烟;
一种电池组件,用于与雾化组件组合形成电子烟,其中:所述电池组件内 设置有电池及用于控制所述电池组件的输出功率的编码器,且所述电池组件设置有位置相对的第一端及第二端,所述第一端端面上位置相对的两端分别设置有用于与雾化组件插接的插槽及延伸至所述电池组件侧面的凹槽,所述凹槽内设置有与所述编码器传动连接的转轮,所述转轮的远离所述第二端的端面与所述第一端端面平行或位于同一平面,所述转轮的外周面上设置有摩擦结构,以使通过接触所述摩擦结构旋转所述转轮以调节所述电池组件的输出功率;
所述电池组件的第二端端面处设置有容置槽及置于所述容置槽内的保护盖,所述容置槽面向所述第二端端面的槽壁处设置有与所述电池电连接的充电接口及与所述保护盖磁性相吸的第一磁性件,所述保护盖通过所述第一磁性件的吸附而可拆卸的盖设在所述容置槽内,当需要充电时,将所述保护盖取出以能够通过所述充电接口进行充电。
优选的:所述保护盖位置相对的两端分别设置有第一斜面及第二斜面,所述第一斜面及第二斜面均面向所述容置槽设置有充电接口的槽壁设置,并与所述槽壁形成预设角度。
优选的:所述第一斜面及第二斜面与所述容置槽设置有充电接口的槽壁之间均形成有第一空间,所述保护盖设置有位于所述第一斜面及第二斜面之间的抵接表面,所述抵接表面与所述容置槽的设置有充电接口的槽壁相接触,以使当需要充电时,按压所述保护盖设置有所述第一斜面或第二斜面的一端,使所述保护盖被按压的一端朝所述第一空间运动,而另一端通过杠杆的作用而翘起,以能够取出所述保护盖。
优选的:所述第一磁性件为两个且分别位于所述容置槽的两端,所述充电接口位于所述两个第一磁性件之间,所述保护盖设置有用于与所述第一磁性件相吸附的第二磁性件,所述第二磁性件为两个且分别与所述两个所述第一磁性件位置相对。
优选的:所述保护盖包括呈条形的盖体及所述第二磁性件,所述盖体设置有所述抵接表面,所述抵接表面上设置有两个与所述第一磁性件位置相对应的第一固定槽,所述第二磁性件通过涨紧配合插设固定在所述第一固定槽内。
优选的:所述第一磁性件为磁铁材料制件,所述第二磁性件为金属材料制 件。
优选的:所述电池组件的第二端端面处设置有两个第二固定槽,两个所述第二固定槽分别位于所述容置槽位置相对的两端并与所述容置槽相连通,所述容置槽内插设固定有延伸至所述容置槽内的引导块,所述引导块设置有引导斜面,且两个所述引导块的所述引导斜面分别与所述第一斜面和第二斜面位置对应设置。
优选的:所述摩擦结构为沿所述转轮轴向延伸的摩擦条纹。
优选的:所述电池组件位于所述第一端端面和所述第二端端面之间设置有用于围成所述电池组件侧面的第一侧面、第二侧面、第三侧面及第四侧面,所述第一侧面和第二侧面位置相对,所述第三侧面和第四侧面位置相对,在使用状态时,所述转轮位于所述第一侧面上方,所述雾化组件位于所述第二侧面上方,所述第二侧面与所述雾化组件相邻的一端设置有用于控制所述电池组件工作的开关。
优选的:所述第三侧面上设置有与所述电池电连接的mini USB接口,所述mini USB接口用于对所述电池进行充电。
优选的:所述第四侧面上设置有用于显示所述电池组件的电量和/或所述电池组件的输出功率和/或剩余口数的显示屏。
优选的:所述转轮设置有摩擦结构的外周面位于目标空间内,所述目标空间为所述电池组件的所述第二端端面的延伸方向、所述第一侧面的延伸方向、所述第三侧面的延伸方向及所述第四侧面的延伸方向所围成的空间。
优选的:所述电池组件还包括中空的套体、盖设于所述套体一端的上盖及盖设在所述套体另一端的下盖,所述上盖的一端设置有所述凹槽,所述凹槽的底壁设置有穿孔,所述穿孔插设有转轮针,所述转轮针的一端与所述转轮相连,所述转轮针的另一端与所述编码器相连,所述转轮针的外周面上间隔设置有第一卡持凸起及第二卡持凸起,所述第一卡持凸起卡持在所述上盖的上表面,所述上盖与所述第二卡持凸起之间设置有与所述上盖相连的由塑胶材质制成的固定件,通过所述固定件抵持所述第二卡持凸起以阻止所述转轮针朝第一端端面运动。
优选的:所述转轮针及所述上盖为金属材料制件。
优选的:所述凹槽的槽壁上设置有环绕所述穿孔的上端设置的环形槽,所述环形槽与所述穿孔相连通,所述第一卡持凸起呈环形,所述第一卡持凸起置于所述环形槽内。
优选的:所述固定件包括固定板,所述固定板设置有贯穿所述固定板的插孔及位于所述固定板一表面上的连接柱,所述连接柱与所述上盖插接相连,所述插孔套设在所述转轮针上,所述插孔的内周面凸设有朝所述第二卡持凸起方向延伸的抵持臂,通过所述抵持臂抵持所述第二卡持凸起以阻止所述转轮针朝所述第一端端面运动。
优选的:所述抵持臂的上端面设置有面向所述转轮针的导向斜面,以使在组装时所述转轮针能够沿所述导向斜面的导向运动直至所述第一卡持凸起卡持在所述上盖的上表面。
优选的:所述保护盖背离所述第一端端面的表面与所述第二端端面处于同一平面上。
优选的:所述保护盖的背离所述第一端端面的表面设置有摩擦纹。
一种电子烟,包括电池组件以及雾化组件,其中,所述电池组件内设置有电池及用于控制所述电池组件的输出功率的编码器,且所述电池组件设置有位置相对的第一端及第二端,所述第一端端面上位置相对的两端分别设置有用于与雾化组件插接的插槽及延伸至所述电池组件侧面的凹槽,所述凹槽内设置有与所述编码器传动连接的转轮,所述转轮的远离所述第二端的端面与所述第一端端面平行或位于同一平面,所述转轮的外周面上设置有摩擦结构,以使通过接触所述摩擦结构旋转所述转轮以调节所述电池组件的输出功率;
所述电池组件的第二端端面处设置有容置槽及置于所述容置槽内的保护盖,所述容置槽面向所述第二端端面的槽壁处设置有与所述电池电连接的充电接口及与所述保护盖磁性相吸的第一磁性件,所述保护盖通过所述第一磁性件的吸附而可拆卸的盖设在所述容置槽内,当需要充电时,将所述保护盖取出以能够通过所述充电接口进行充电;
所述雾化组件插设在所述电池组件的所述第一端端面上的所述插槽上,以 使所述雾化组件和所述电池组件能够插接相连。
本实用新型提供了一种电池组件以及电子烟,由于所述转轮的远离所述第二端的端面与所述第一端端面平行或位于同一平面,因而可有效的避免用户误操作所述转轮,且所述凹槽和所述插槽分别位于所述第一端端面上位置相对的两端,因而在吸烟时所述转轮能够很好地对准用户视野,从而便于观察转轮转动及用户手指能够较为方便地旋转所述转轮,以调节所述电池组件的输出功率;此外,由于所述电池组件的第二端端面处设置有容置槽及置于所述容置槽内的保护盖,所述容置槽内设置有所述充电接口,通过所述第一磁性件吸附所述保护盖,因而便于在充电时将所述保护盖取出以进行充电,且由于第二端端面与所述第一端端面位置相对,正常放置时所述保护盖位于所述电池组件的底部,其不容易被碰触,因而无论在放置或使用过程中都能够有效的避免所述保护盖的意外脱落,从而使得所述保护盖能够很好的保护所述充电接口,避免外界的灰尘或其他污染物进入到所述充电接口,从而影响所述电池组件的电性连接。
附图说明
图1为本实用新型所提供的电池组件的一种较佳实施例整体结构示意图;
图2为本实用新型所提供的电池组件的另一种较佳实施例整体结构示意图;
图3为本实用新型所提供的电池组件的一种较佳实施例剖面结构示意图;
图4为本实用新型所提供的电池组件的一种较佳实施例局部剖面结构示意图;
图5为本实用新型所提供的电池组件的另一种较佳实施例局部剖面结构示意图;
图6为本实用新型所提供的电池组件的一种较佳实施例局部结构示意图;
图7为本实用新型所提供的电池组件的一种较佳实施例爆炸连接结构示意图;
图8为本实用新型所提供的电池组件的另一种较佳实施例局部剖面结构 示意图;
图9为本实用新型所提供的电池组件的另一种较佳实施例局部结构示意图;
图10为本实用新型所提供的电池组件的另一种较佳实施例局部结构示意图;
图11为本实用新型所提供的电池组件的另一种较佳实施例局部剖面结构示意图;
图12为本实用新型所提供的电池组件的另一种较佳实施例局部剖面结构示意图;
图13为本实用新型所提供的电池组件的一种较佳实施例局部结构示意图;
图14为本实用新型所提供的电池组件的一种较佳实施例局部结构示意图;
图15为本实用新型所提供的电池组件的一种较佳实施例局部结构示意图;
图16为本实用新型所提供的电池组件的一种较佳实施例局部结构示意图;
图17为本实用新型所提供的电池组件的一种较佳实施例局部结构示意图。
具体实施方式
实施例一,本实施例提供的电池组件能够便于用户调节输出功率,便于充电,避免用户误操作,为用户带来了方便;
本实施例所示的所述电池组件的具体结构可参见图1至图3所示,其中,图1和图2均为所述电池组件的整体结构示意图,且图1和图2为所述电池组件处于不同状态下的整体结构示意图,图3为所述电池组件的剖面结构示意图;
本实施例所提供的电池组件能够与雾化组件组合形成电子烟,且所述电池 组件能够为所述雾化组件供电,以使所述雾化组件雾化烟油以形成烟雾;
如图3所示,所述电池组件100内设置有电池101及用于控制所述电池组件的输出功率的编码器102;
其中,编码器102为能够将角位移转换成电信号的器件,且所述编码器102的具体结构和实现原理请参见现有技术所示,具体在本实施例中不做赘述。
所述电池组件100设置有位置相对的第一端200及第二端300;
其中,所述第一端200为所述电池组件的顶部,所述第一端200的放大结构示意图请参见图4所示;
所述第二端300为所述电池组件的底部,所述第二端300的放大结构示意图请参见图5所示;
结合图1至图4所示对所述第一端200的具体结构进行详细说明:
所述第一端200端面上位置相对的两端分别设置有用于与雾化组件插接的插槽201及延伸至所述电池组件100侧面的凹槽203;
本实施例中,所述插槽201内设置有用于与所述雾化组件可拆卸连接的连接结构,图1至图4所示可见,所述连接结构为螺纹连接结构,以使所述电池组件与所述雾化组件能够螺纹连接,需明确的是,本实施例仅仅对所述连接结构进行示例说明,不做限定,只要所述雾化组件能够插设固定在所述插槽201内即可,例如,所述连接结构还可为卡扣连接结构;
本实施例中,为使得所述电池组件100能够为所述雾化组件供电的目的,则在所述插槽201内设置有能够与所述雾化组件电连接的电池电极202(如图4所示),以使所述雾化组件能够通过所述电池电极202与所述电池101电连接;
本实施例对所述电池电极202的具体结构不做限定,只要能够通过该电池电极202实现所述电池组件100为所述雾化组件供电的目的即可,例如所述电池电极202可包括分别与所述电池101电连接的,且相互嵌套设置的外电极和内电极,且所述外电极和所述内电极之间设置有用于电性隔离的绝缘环;
所述凹槽203内设置有与所述编码器102传动连接的转轮204;
本实施例对所述编码器102与所述转轮204之间具体如何进行传动连接的不做限定,只要通过旋拧所述转轮204时,所述编码器102能够改变所述电池组件100的输出功率即可。
较佳的,所述转轮204的远离所述第二端300的端面与所述第一端端面平行或位于同一平面,即所述转轮204的远离所述第二端300的端面可以略高于所述第一端200端面、低于所述第一端200端面或与所述第一端200端面平齐,从而便于用户通过旋转所述转轮204以调节所述电池组件的输出功率,以使所述电池组件100整体结构紧凑,且可有效的避免用户误操作所述转轮204。
如图1和图2所示,所述转轮204的外周面上设置有摩擦结构205,以使通过接触所述摩擦结构205旋转所述转轮204以调节所述电池组件100的输出功率;
因本实施例所示的所述转轮204的外周面上设置有摩擦结构205,从而便于用户调节所述电池组件100的输出功率,有效的提升了用户调节过程中的便利以及避免误操作;
本实施例对所述摩擦结构205的具体结构不做限定,只要能够增加用户操作时用户手部与所述转轮204之间的摩擦力即可,例如,所述摩擦结构205可呈规律或不规律的条纹状,花纹状,或多个凸起等;
本实施例以所述摩擦结构205为沿所述转轮204轴向延伸的摩擦条纹为例进行举例说明。
以下结合图1至图3以及图5所示对所述电池组件100的第二端300的具体结构进行详细说明:
所述电池组件100的第二端300端面处设置有容置槽301及置于所述容置槽301内的保护盖302;
所述容置槽301面向所述第二端端面的槽壁处设置有与所述电池101电连接的充电接口303;
本实施例中,通过所述充电接口303能够使得外部电源为所述电池101充电,当然,本实施例所提供的电池组件100还可通过所述充电接口303为外部设备充电,以使所述电池组件100可作为移动电源使用,进一步为用户带来 了方便;
所述容置槽301面向所述第二端端面的槽壁处还设置有与所述保护盖302磁性相吸的第一磁性件304;
本实施例对所述第一磁性件304的具体形状以及设置数目不做限定,只要通过所述第一磁性件304能够使得所述保护盖302稳固的固定在所述容置槽301内即可。
所述保护盖302通过所述第一磁性件304的吸附而可拆卸的盖设在所述容置槽301内;
本实施例通过所述第一磁性件304吸附所述保护盖302能够有效的避免所述保护盖302的意外脱落,从而使得所述保护盖302能够很好的保护所述充电接口303,避免外界的灰尘或其他污染物进入到所述充电接口303,从而影响所述电池组件100的电性连接;
当需要充电时,将所述保护盖302取出以能够通过所述充电接口303进行充电即可。
实施例二,本实施例对所述电池组件100的具体结构进行进一步的详细说明:
以下首先说明本实施例所提供的电池组件是如何实现便于用户取出所述保护盖302以使外部电源能够通过所述充电接口303为所述电池101进行充电,或取出所述保护盖302以使所述电池101能够通过所述充电接口303为外部设备进行充电的;
如图3、图5以及图6所示可知,所述保护盖302位置相对的两端分别设置有第一斜面3021及第二斜面3022;
所述第一斜面3021及第二斜面3022均面向所述容置槽301设置有充电接口303的槽壁设置,并与所述槽壁形成预设角度。
本实施例对所述预设角度不做限定,只要所述第一斜面3021及第二斜面3022与所述槽壁之间形成有一定的空间即可;
进一步的,本实施例提供了两种将所述保护盖302从所述容置槽301内取出的方式:
第一种:
如图5所示,所述第一斜面3021及第二斜面3022与所述容置槽301设置有充电接口303的槽壁之间均形成有第一空间305;
较佳的,所述容置槽301与所述第一斜面3021及第二斜面3022对应的侧面呈弧形,以使所述第一斜面3021及第二斜面3022的端部能够沿所述弧形的导向运动。
所述保护盖302设置有位于所述第一斜面3021及第二斜面3022之间的抵接表面3023;
所述抵接表面3023与所述容置槽301的设置有充电接口303的槽壁相接触,以使当所述保护盖302固定设置在所述容置槽301内时,所述抵接表面3023能够保护所述充电接口303,有效的避免所述电池组件100外部的污染物损坏所述充电接口303。
当需要充电时,即需要将外部电源与所述充电接口303电连接时,按压所述保护盖302设置有所述第一斜面3021或第二斜面3022的一端,使所述保护盖302被按压的一端朝所述第一空间305运动,而另一端通过杠杆的作用而翘起,以能够取出所述保护盖302。
可见,采用本实施例所示的所述保护盖302的结构,能够有效的保护所述充电接口303,有效的保障了所述充电接口303与外部电源之间的电连接关系,而且因所述保护盖302设置有所述第一斜面3021和第二斜面3022,以使在为所述电池组件100充电的过程中,用户只需要按压所述保护盖302设置有所述第一斜面3021或第二斜面3022的一端即可,从而可使得所述保护盖302另一端通过杠杆的作用而翘起,从而便于用户拾取已翘起的所述保护盖302,有效的提升了用户为所述电池组件100进行充电时的便利。
第二种:
需明确的是,本种设置方式中,所述保护盖302的具体结构可参见上述所示,在本种设置方式中不做赘述;
以下结合图7至图13所示对本种所述电池组件100的设置方式进行详细说明:
其中,图7为所述电池组件100的一种爆炸连接结构示意图,其中图7所示的区域700的结构示意图请参见图9至图10所示;
所述电池组件100的第二端300端面处设置有两个第二固定槽701(如图8和图9所示);
两个所述第二固定槽701分别位于所述容置槽301位置相对的两端并与所述容置槽301相连通;
所述容置槽301内插设固定有延伸至所述容置槽301内的引导块702,其中,在所述第二固定槽701内设置有所述引导块702后的结构请参见图7、图8以及图10所示;
进一步的,所述引导块702设置有引导斜面703,且两个所述引导块702的所述引导斜面703分别与所述第一斜面3021和第二斜面3022位置对应设置。
以下结合图11至图12所示对采用本种所述电池组件100的设置方式时,具体是如何将所述保护盖302从所述容置槽301内取出的进行说明:
例如在用户需要取出所述保护盖302时,按压所述保护盖302的所述第一斜面3021,当然也可按压所述第二斜面3022,具体实现过程与按压所述第一斜面3021相同,在本实施例不再赘述;
如图11所示,当所述第一斜面3021接收到用户按压的力时,所述第一斜面3021则沿所述引导斜面703的导向运动;
如图12所示,当所述第一斜面3021沿所述引导斜面703的导向运动到预设位置时,用户即可将所述保护盖302从所述容置槽301内取出;
所述预设位置为所述保护盖302的所述抵接表面3023不再抵接所述充电接口303,且所述第二斜面3022相对于所述容置槽301翘起,以使用户能够将所述保护盖302从所述容置槽301内取出。
采用本种设置方式中,因所述保护盖302设置有所述引导块702,以使所述第一斜面3021或所述第二斜面3022能够沿所述引导块702的所述引导斜面703的导向运动,以使用户能够将所述保护盖302从所述容置槽301内取出,可见,在所述引导块702上设置所述引导斜面703的工艺简单,加工难度低, 从而有效的提升了生产所述电池组件100的效率,进而降低生产所述电池组件100的成本。
进一步的,本实施例中,当所述保护盖302置于所述容置槽301内时,所述保护盖302的所述抵接表面3023能够保护所述充电接口303,以下结合图5和图6所示说明所述保护盖302具体是如何稳固的设置在所述容置槽301内的;
需明确的是,本实施例对所述保护盖302固定设置在所述容置槽301的设置方式为较佳的示例,不做限定;
较佳的,结合图3、图5以及图6所示,所述第一磁性件304为两个且分别位于所述容置槽301的两端,所述充电接口303位于所述两个第一磁性件304之间;
所述保护盖302设置有用于与所述第一磁性件304相吸附的第二磁性件3024;
具体的,所述第二磁性件3024为两个且分别与所述两个所述第一磁性件304位置相对,以使当所述保护盖302位于所述容置槽301内时,所述第一磁性件304能够牢固的磁性吸附所述第二磁性件3024,以使所述保护盖302能够稳固的设置在所述容置槽301内,避免因所述电池组件100晃动或用户使用过程中,所述保护盖302与所述电池组件100相脱离以发生损坏所述充电接口303的情况。
更具体,所述保护盖302包括呈条形的盖体及所述第二磁性件3024;
所述盖体设置有所述抵接表面3023;
所述抵接表面3023上设置有两个与所述第一磁性件304位置相对应的第一固定槽3025,所述第二磁性件3024通过涨紧配合插设固定在所述第一固定槽3025内。
因本实施例中,将组装所述电池组件100的过程中,可直接将所述第二磁性件3024插设在所述第一固定槽3025内,从而有效的提升了装配的效率,而且因所述第一固定槽3025的位置是预先设置好的,从而无需后期人工校准即可使得所述第一磁性件304与所述第二磁性件3024位置对应,从而使得所述 第一磁性件304能够磁性吸附所述保护盖302,以使所述保护盖302能够稳固的设置在所述容置槽301内,有效的保障了所述充电接口303的安全。
较佳的,所述第一磁性件304为磁铁材料制件,所述第二磁性件3024为金属材料制件,例如铁,不锈钢等。
其中,所述第二磁性件3024为金属材料制件的优势在于,因磁铁材料较为易碎,若为磁铁材料制件的所述第一磁性件304破碎,则会使得所述保护盖302不能稳固的设置在所述容置槽301内,则会使得所述充电接口303不能被很好的保护,则本实施例中,将所述保护盖302的所述第二磁性件3024设置为金属材料制件,可有效的避免所述第一磁性件304受到碰撞,有效的保护了第一磁性件304的安全。
以下结合图1和图2所示对本实施例所提供的所述电池组件100具体是如何实现避免误操作的进行详细说明:
所述电池组件100位于所述第一端200端面和所述第二端端300端面之间设置有用于围成所述电池组件侧面的第一侧面401、第二侧面402、第三侧面403及第四侧面404,且所述第一侧面401和第二侧面402位置相对,所述第三侧面403和第四侧面404位置相对;
在使用状态时,所述转轮204位于所述第一侧面401上方,所述雾化组件位于所述第二侧面402上方;
所述第二侧面402与所述雾化组件相邻的一端设置有用于控制所述电池组件100工作的开关405。
即在使用过程中,用户按压所述开关405即可控制所述电池组件100为所述雾化组件供电,以使所述雾化组件能够雾化烟油以形成烟雾;
采用本实施例所示的结构,可使得所述开关405和所述转轮204位于所述电池组件100不同的侧面,从而避免了误操作,避免用户在改变所述电池组件100的输出功率时误按压所述开关405,也避免了用户在需要抽吸烟雾时,误调节所述电池组件100的输出功率。
较佳的,如图1所示,所述第三侧面403上设置有与所述电池101电连接的mini USB接口406,所述mini USB接口406用于对所述电池101进行充电。
即外部电源通过所述mini USB接口406对所述电池101进行充电。
当然,本实施例对所述接口406为mini USB接口为较佳的举例,不做限定,还可采用其他标准的充电接口,只要所述外部电源能够通过该接口406对所述电池101进行充电即可,当然,所述电池101还可通过所述mini USB接口406对外部设备进行充电,以使所述电池组件100还可作为移动电源使用,进一步的方便的了用户。
本实施例中,将所述mini USB接口406设置在所述电池组件100的侧面,便于了用户的使用,而且其面积较小,因而能够降低外部的灰尘或其他污染物损坏所述电池组件的概率。
较佳的,如图2所示,所述第四侧面404上设置有用于显示所述电池组件的电量和/或所述电池组件100的输出功率和/或剩余口数的显示屏407。
其中,通过所述显示屏407能够使得用户随时查看所述电池101的剩余电量,从而使得用户能够估计所述电池组件100还能够使用的时长;
用户通过所述显示屏407能够随时查看所述电池组件100的输出功率,从而便于用户通过所述转轮204对所述输出功率进行调节,进一步的方便了用户对所述电池组件100的输出功率的调节;
所述电池组件100内设置有与所述电池101电连接的控制器,且所述控制器还与所述显示屏407电连接,本实施例中,所述控制器能够检测所述雾化组件内所存储的剩余的烟油量,从而使得所述控制器根据所述剩余的烟油量计算所述雾化组件还能够抽吸的剩余口数,用户通过所述显示屏407能够随时查看所述剩余口数,从而便于用户使用,用户可根据所述剩余口数确定当所述雾化组件内剩余烟油量不足时,用户可根据需要随时的添加烟油,避免因所述剩余烟油量不足而使得用户无法抽吸烟雾的情况的出现;
而且所述显示屏407能够显示剩余口数,避免了在所述雾化组件所存储的烟油量不足时用户触发所述电池组件100为所述雾化组件供电的情况的出现,因若所述电池组件100为剩余烟油量不足的所述雾化组件供电时,会出现所述雾化组件空烧的情况,从而损坏所述雾化组件,而且会使得用户抽吸到损坏身体健康的气体。
进一步如图1和图2所述,所述转轮204设置有摩擦结构205的外周面位于目标空间内,所述目标空间为所述电池组件100的所述第二端200端面的延伸方向、所述第一侧面401的延伸方向、所述第三侧面403的延伸方向及所述第四侧面404的延伸方向所围成的空间。
因所述摩擦结构205不会突出所述目标空间,则有效的避免了对所述转轮204的误操作。
以下对所述编码器102与所述转轮204之间具体如何进行传动连接的进行详细说明,且采用下述所述的能够实现所述编码器102与所述转轮204之间的传动连接结构,能够有效的提升装配所述电池组件100的效率,而且能够有效的提升所述编码器102与所述转轮204之间的传动连接关系的结构为稳固;
首先结合图8及图13所示,所述电池组件100还包括中空的套体801;
盖设于所述套体801一端的上盖802及盖设在所述套体801另一端的下盖803;
所述上盖802的具体结构请参见图14所示,所述上盖802的一端设置有所述凹槽203;
结合图4以及图14所示,所述凹槽203的底壁设置有穿孔8021,所述穿孔8021插设有转轮针804;
所述转轮针804的一端与所述转轮204相连,所述转轮针804的另一端与所述编码器102相连;
进一步的结合图15所示对所述转轮针804的具体结构进行详细说明:
所述转轮针804的外周面上间隔设置有第一卡持凸起805及第二卡持凸起806;
所述第一卡持凸起805卡持在所述上盖802的上表面(如图4所示);
所述上盖802与所述第二卡持凸起806之间设置有与所述上盖802相连的由塑胶材质制成的固定件807,其中,所述固定件807的具体结构也可参见图16所示;
结合图4和图16所示可知,通过所述固定件807抵持所述第二卡持凸起806以阻止所述转轮针804朝所述第一端200端面运动。
进一步的,所述转轮针804及所述上盖802为金属材料制件。
进一步的,结合图4和图14所示,所述凹槽203的槽壁上设置有环绕所述穿孔8021的上端设置的环形槽8023;
所述环形槽8023与所述穿孔8021相连通;
结合图4和图15所示,所述第一卡持凸起805呈环形;
从而使得所述第一卡持凸起805置于所述环形槽8023内,以使固定在所述环形槽8023内的所述转轮针804能够与所述编码器以及转轮传动连接;
进一步的,结合图4以及图16所示,所述固定件807包括固定板8071;
所述固定板8071设置有贯穿所述固定板807的插孔8072及位于所述固定板8071一表面上的连接柱8073;
所述连接柱8073与所述上盖802插接相连;
具体的,即可在所述上盖802与所述固定板8071对应的侧面设置有容置腔,以使所述连接柱8073能够插设在所述容置腔内,且所述容置腔与所述连接柱8073过盈配合,以使所述上盖802与所述固定板8071固定连接;
更具体的,所述插孔8072套设在所述转轮针804上;
所述插孔8072的内周面凸设有朝所述第二卡持凸起806方向延伸的抵持臂8074,通过所述抵持臂8074抵持所述第二卡持凸起806以阻止所述转轮针804朝所述第一端200端面运动。
较佳的,所述抵持臂8074由弹性材质制成,可使得所述抵持臂8074能够稳固的抵持所述第二卡持凸起806,以提升所述固定件807和所述转轮针804之间结构的稳定性;
较佳的,所述抵持臂8074的上端面设置有面向所述转轮针的导向斜面8075,以使在组装时所述转轮针804能够沿所述导向斜面8075的导向运动直至所述第一卡持凸起805卡持在所述上盖802的上表面(如图4所示)。
优选的,如图8所示,所述保护盖302背离所述第一端200端面的表面与所述第二端300端面处于同一平面上。
因所述保护盖302背离所述第一端200端面的表面与所述第二端300端面处于同一平面上,从而避免所述保护盖302因受到碰撞而与所述电池组件100 相脱离的情况的出现,进一步的避免了外部的污染物损坏所述充电接口303的情况的出现。
优选的,如图17所示,所述保护盖302的背离所述第一端200端面的表面设置有摩擦纹1701。
通过所述摩擦纹1701从而能够便于用户在所述保护盖302上施加外力,从而便于将所述保护盖302从所述容置槽301内取出;
其中,具体如何将所述保护盖302从所述容置槽301内取出的方式请参见上述实施例所示,具体在本实施例中不做赘述。
实施例三,本实施例提供了一种电子烟;
其中,所述电子烟包括电池组件以及雾化组件;
具体的,用于为所述雾化组件供电的所述电池组件的具体结构请详见上述实施例所示,具体在本实施例中不做赘述;
所述雾化组件用于在所述电池组件供电的情况下雾化烟油以形成烟雾,本实施例对所述雾化组件的具体结构不做限定,只要所述雾化组件能够通过所述插槽201插设固定在所述电池组件上即可。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
以上实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的精神和范围。

Claims (20)

  1. 一种电池组件,用于与雾化组件组合形成电子烟,其特征在于:所述电池组件内设置有电池及用于控制所述电池组件的输出功率的编码器,且所述电池组件设置有位置相对的第一端及第二端,所述第一端端面上的相对两端分别设置有用于与雾化组件插接的插槽及延伸至所述电池组件侧面的凹槽,所述凹槽内设置有与所述编码器传动连接的转轮,所述转轮的远离所述第二端的端面与所述第一端端面平行或位于同一平面,所述转轮的外周面上设置有摩擦结构,以使通过接触所述摩擦结构旋转所述转轮以调节所述电池组件的输出功率;
    所述电池组件的第二端端面处设置有容置槽及置于所述容置槽内的保护盖,所述容置槽面向所述第二端端面的槽壁处设置有与所述电池电连接的充电接口及与所述保护盖磁性相吸的第一磁性件,所述保护盖通过所述第一磁性件的吸附而可拆卸的盖设在所述容置槽内,当需要充电时,将所述保护盖取出以能够通过所述充电接口进行充电。
  2. 根据权利要求1所述的电池组件,其特征在于:所述保护盖位置相对的两端分别设置有第一斜面及第二斜面,所述第一斜面及第二斜面均面向所述容置槽设置有充电接口的槽壁设置,并与所述槽壁形成预设角度。
  3. 根据权利要求2所述的电池组件,其特征在于:所述第一斜面及第二斜面与所述容置槽设置有充电接口的槽壁之间均形成有第一空间,所述保护盖设置有位于所述第一斜面及第二斜面之间的抵接表面,所述抵接表面与所述容置槽的设置有充电接口的槽壁相接触,以使当需要充电时,按压所述保护盖设置有所述第一斜面或第二斜面的一端,使所述保护盖被按压的一端朝所述第一空间运动,而另一端通过杠杆的作用而翘起,以能够取出所述保护盖。
  4. 根据权利要求3所述的电池组件,其特征在于:所述第一磁性件为两个且分别位于所述容置槽的两端,所述充电接口位于所述两个第一磁性件之间,所述保护盖设置有用于与所述第一磁性件相吸附的第二磁性件,所述第二磁性件为两个且分别与所述两个所述第一磁性件位置相对。
  5. 根据权利要求4所述的电池组件,其特征在于:所述保护盖包括呈条 形的盖体及所述第二磁性件,所述盖体设置有所述抵接表面,所述抵接表面上设置有两个与所述第一磁性件位置相对应的第一固定槽,所述第二磁性件通过涨紧配合插设固定在所述第一固定槽内。
  6. 根据权利要求4所述的电池组件,其特征在于:所述第一磁性件为磁铁材料制件,所述第二磁性件为金属材料制件。
  7. 根据权利要求2所述的电池组件,其特征在于:所述电池组件的第二端端面处设置有两个第二固定槽,两个所述第二固定槽分别位于所述容置槽位置相对的两端并与所述容置槽相连通,所述容置槽内插设固定有延伸至所述容置槽内的引导块,所述引导块设置有引导斜面,且两个所述引导块的所述引导斜面分别与所述第一斜面和第二斜面位置对应设置。
  8. 根据权利要求1所述的电池组件,其特征在于:所述摩擦结构为沿所述转轮轴向延伸的摩擦条纹。
  9. 根据权利要求1所述的电池组件,其特征在于:所述电池组件位于所述第一端端面和所述第二端端面之间设置有用于围成所述电池组件侧面的第一侧面、第二侧面、第三侧面及第四侧面,所述第一侧面和第二侧面位置相对,所述第三侧面和第四侧面位置相对,在使用状态时,所述转轮位于所述第一侧面上方,所述雾化组件位于所述第二侧面上方,所述第二侧面与所述雾化组件相邻的一端设置有用于控制所述电池组件工作的开关。
  10. 根据权利要求9所述的电池组件,其特征在于:所述第三侧面上设置有与所述电池电连接的mini USB接口,所述mini USB接口用于对所述电池进行充电。
  11. 根据权利要求9所述的电池组件,其特征在于:所述第四侧面上设置有用于显示所述电池组件的电量和/或所述电池组件的输出功率和/或剩余口数的显示屏。
  12. 根据权利要求9所述的电池组件,其特征在于:所述转轮设置有摩擦结构的外周面位于目标空间内,所述目标空间为所述电池组件的所述第二端端面的延伸方向、所述第一侧面的延伸方向、所述第三侧面的延伸方向及所述第四侧面的延伸方向所围成的空间。
  13. 根据权利要求1所述的电池组件,其特征在于:所述电池组件还包括中空的套体、盖设于所述套体一端的上盖及盖设在所述套体另一端的下盖,所述上盖的一端设置有所述凹槽,所述凹槽的底壁设置有穿孔,所述穿孔插设有转轮针,所述转轮针的一端与所述转轮相连,所述转轮针的另一端与所述编码器相连,所述转轮针的外周面上间隔设置有第一卡持凸起及第二卡持凸起,所述第一卡持凸起卡持在所述上盖的上表面,所述上盖与所述第二卡持凸起之间设置有与所述上盖相连的由塑胶材质制成的固定件,通过所述固定件抵持所述第二卡持凸起以阻止所述转轮针朝第一端端面运动。
  14. 根据权利要求13所述的电池组件,其特征在于:所述转轮针及所述上盖为金属材料制件。
  15. 根据权利要求13所述的电池组件,其特征在于:所述凹槽的槽壁上设置有环绕所述穿孔的上端设置的环形槽,所述环形槽与所述穿孔相连通,所述第一卡持凸起呈环形,所述第一卡持凸起置于所述环形槽内。
  16. 根据权利要求13所述的电池组件,其特征在于:所述固定件包括固定板,所述固定板设置有贯穿所述固定板的插孔及位于所述固定板一表面上的连接柱,所述连接柱与所述上盖插接相连,所述插孔套设在所述转轮针上,所述插孔的内周面凸设有朝所述第二卡持凸起方向延伸的抵持臂,通过所述抵持臂抵持所述第二卡持凸起以阻止所述转轮针朝所述第一端端面运动。
  17. 根据权利要求16所述的电池组件,其特征在于:所述抵持臂的上端面设置有面向所述转轮针的导向斜面,以使在组装时所述转轮针能够沿所述导向斜面的导向运动直至所述第一卡持凸起卡持在所述上盖的上表面。
  18. 根据权利要求1所述的电池组件,其特征在于:所述保护盖背离所述第一端端面的表面与所述第二端端面处于同一平面上。
  19. 根据权利要求1所述的电池组件,其特征在于:所述保护盖的背离所述第一端端面的表面设置有摩擦纹。
  20. 一种电子烟,包括电池组件以及雾化组件,其特征在于,所述电池组件内设置有电池及用于控制所述电池组件的输出功率的编码器,且所述电池组件设置有位置相对的第一端及第二端,所述第一端端面上的相对两端分别设置 有用于与雾化组件插接的插槽及延伸至所述电池组件侧面的凹槽,所述凹槽内设置有与所述编码器传动连接的转轮,所述转轮的端面与所述第一端端面平行或位于同一平面,所述转轮的外周面上设置有摩擦结构,以使通过接触所述摩擦结构旋转所述转轮以调节所述电池组件的输出功率;
    所述电池组件的第二端端面处设置有容置槽及置于所述容置槽内的保护盖,所述容置槽面向所述第二端端面的槽壁处设置有与所述电池电连接的充电接口及与所述保护盖磁性相吸的第一磁性件,所述保护盖通过所述第一磁性件的吸附而可拆卸的盖设在所述容置槽内,当需要充电时,将所述保护盖取出以能够通过所述充电接口进行充电;
    所述雾化组件插设在所述电池组件的所述第一端端面上的所述插槽上,以使所述雾化组件和所述电池组件能够插接相连。
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