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WO2022039325A1 - Wire rod winding device and wire rod manufacturing apparatus comprising same - Google Patents

Wire rod winding device and wire rod manufacturing apparatus comprising same Download PDF

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Publication number
WO2022039325A1
WO2022039325A1 PCT/KR2020/016293 KR2020016293W WO2022039325A1 WO 2022039325 A1 WO2022039325 A1 WO 2022039325A1 KR 2020016293 W KR2020016293 W KR 2020016293W WO 2022039325 A1 WO2022039325 A1 WO 2022039325A1
Authority
WO
WIPO (PCT)
Prior art keywords
wire rod
dry ice
inner cylinder
supply unit
winding device
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/KR2020/016293
Other languages
French (fr)
Korean (ko)
Inventor
김형진
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.)
Posco Holdings Inc
Original Assignee
Posco 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 Posco Co Ltd filed Critical Posco Co Ltd
Priority to EP20950405.9A priority Critical patent/EP4176986A4/en
Priority to JP2023511914A priority patent/JP7545572B2/en
Priority to CN202080103178.2A priority patent/CN115989097A/en
Publication of WO2022039325A1 publication Critical patent/WO2022039325A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21CMANUFACTURE OF METAL SHEETS, WIRE, RODS, TUBES, PROFILES OR LIKE SEMI-MANUFACTURED PRODUCTS OTHERWISE THAN BY ROLLING; AUXILIARY OPERATIONS USED IN CONNECTION WITH METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL
    • B21C47/00Winding-up, coiling or winding-off metal wire, metal band or other flexible metal material characterised by features relevant to metal processing only
    • B21C47/02Winding-up or coiling
    • B21C47/04Winding-up or coiling on or in reels or drums, without using a moving guide
    • B21C47/045Winding-up or coiling on or in reels or drums, without using a moving guide in rotating drums
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21CMANUFACTURE OF METAL SHEETS, WIRE, RODS, TUBES, PROFILES OR LIKE SEMI-MANUFACTURED PRODUCTS OTHERWISE THAN BY ROLLING; AUXILIARY OPERATIONS USED IN CONNECTION WITH METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL
    • B21C47/00Winding-up, coiling or winding-off metal wire, metal band or other flexible metal material characterised by features relevant to metal processing only
    • B21C47/26Special arrangements with regard to simultaneous or subsequent treatment of the material
    • CCHEMISTRY; METALLURGY
    • C21METALLURGY OF IRON
    • C21DMODIFYING THE PHYSICAL STRUCTURE OF FERROUS METALS; GENERAL DEVICES FOR HEAT TREATMENT OF FERROUS OR NON-FERROUS METALS OR ALLOYS; MAKING METAL MALLEABLE, e.g. BY DECARBURISATION OR TEMPERING
    • C21D9/00Heat treatment, e.g. annealing, hardening, quenching or tempering, adapted for particular articles; Furnaces therefor
    • C21D9/52Heat treatment, e.g. annealing, hardening, quenching or tempering, adapted for particular articles; Furnaces therefor for wires; for strips ; for rods of unlimited length
    • C21D9/54Furnaces for treating strips or wire
    • C21D9/56Continuous furnaces for strip or wire
    • C21D9/573Continuous furnaces for strip or wire with cooling
    • C21D9/5735Details
    • C21D9/5737Rolls; Drums; Roll arrangements

Definitions

  • the present invention relates to a wire rod winding apparatus and a wire rod manufacturing apparatus having the same.
  • the billet material made in the steelmaking process or the steel strip process is heated to a state where hot rolling is possible, and the cross section is gradually reduced through a series of rolling processes to obtain a wire coil of the desired size.
  • the wire rod made in the process of wire rod rolling has a total length of about 500m to 10km and cannot be stored in a straight form.
  • the winding process is a process of winding a wire coil in a cylindrical facility called a reeler. It consists of a drum forming the outer diameter of the reeler and a fork pin forming the inner diameter of the wire rod in the space between The coil enters and is wound.
  • the reeler in order to wind the wire coil, the reeler is rotated.
  • the fork pin part coupled to the lower part of the drum part and arranged to extend upward is eccentrically rotated by the shaking of the upper part, which is the free end, during rotation. Accordingly, the fork pin portion causes friction with the wire coil, thereby causing problems such as forming scratches on the wire coil.
  • the front end of the wire coil entering at the beginning of the winding process is spread under the drum, while the rear end of the wire coil entering the latter in the winding process is wound on the upper side of the drum, so convection at the upper side of the drum with the upper end open A temperature difference occurs between the upper and lower sides of the wire coil due to heat loss.
  • Embodiments of the present invention provide a wire rod winding device capable of simplifying complex structural problems of equipment caused by the use of cooling water for cooling the wire rod winding device and preventing quality deterioration that occurs when winding the wire rod, and manufacturing a wire rod having the same We want to provide a device.
  • a drum unit having an outer cylinder, an inner cylinder spaced apart from the outer cylinder and rotating by a driving unit, a dry ice supply unit for supplying dry ice pellets to a chamber formed between the outer cylinder and the inner cylinder, and the inner cylinder
  • One side is connected to the inner cylinder so as to rotate integrally with the cylinder, and the other side includes a fork pin part spaced apart from the inside of the inner cylinder to wind the wire, and the fork pin part has an inlet communicating with the chamber at one end, and at the other end
  • a wire rod winding device including a passage hole through which an outlet communicating with the inner side of the inner cylinder is formed may be provided.
  • the shaft portion of the inner cylinder rotated by the driving unit is coupled to pass through the outer cylinder, and the dry ice supply unit sprays the dry ice pellets toward the shaft support portion between the shaft portion of the inner cylinder and the outer cylinder.
  • At least one injection nozzle include
  • It covers the upper part of the drum part, and further includes a cover part in which a guide hole for guiding the entry of the wire rod into the space between the inner cylinder and the fork pin part is formed.
  • An exhaust passage communicating with the outlet of the fork fin part may be formed in the cover part to exhaust the gas vaporized from the dry ice to the outside.
  • the suction device includes a suction hose connected to the outlet of the exhaust passage, and a suction fan connected to the suction hose to provide suction force.
  • the dry ice supply unit includes a pellet supply unit for storing and discharging dry ice, a compressed air supply unit supplying compressed air for transferring the dry ice pellets discharged from the pellet supply unit, and the dry ice pellets conveyed through the compressed air. It includes a plurality of injection nozzles for spraying the chamber.
  • the dry ice supply unit includes a liquefied carbon dioxide supply unit for supplying liquefied carbon dioxide gas, an adiabatic expansion unit for adiabatically expanding the liquefied carbon dioxide gas supplied from the liquefied carbon dioxide supply unit, and transporting the dry ice pellets generated by the adiabatic expansion unit. and a compressed air supply unit for providing compressed air, and a plurality of injection nozzles for injecting the dry ice pellets transferred through the compressed air into the chamber.
  • a heat sink for dissipating the heat of the upper inner side of the drum part to the outside may be provided under the cover part.
  • the heat sink includes a lower conductive part located on a lower surface of the cover part, an upper emission part exposed to the outside air on an upper surface of the cover part, and a heat transfer part connecting the lower conductive part and the upper emission part.
  • the lower conductive part includes an eccentricity prevention groove for accommodating the upper end of the fork pin part.
  • Another aspect of the present invention is to provide a heating furnace for heating the provided billet, a rolling unit disposed on the exit side of the heating furnace to roll the heated billet, and a wire rod formed by rolling the billet disposed on the exit side of the rolling unit.
  • a wire rod manufacturing apparatus including the above-described wire rod winding apparatus for winding may be provided.
  • Embodiments of the present invention simplify the structure for cooling the wire winding device, and, as well as surface flaws occurring between the winding device and the wire coil, and the temperature difference of the wire coil wound around the winding device, the material deviation of the wire coil occurs can be reduced.
  • FIG. 1 schematically shows an apparatus for manufacturing a wire rod according to an embodiment of the present invention.
  • FIG. 2 is a cross-sectional view showing the wire rod winding device according to the present embodiment.
  • FIG. 3 is a perspective view illustrating a fork pin unit according to the present embodiment.
  • FIG. 4 illustrates a dry ice supply unit according to the present embodiment.
  • FIG. 5 is a view showing a shaft support portion of the present embodiment.
  • FIG. 6 is a view showing a dry ice supply unit according to another embodiment.
  • FIG 7 shows the suction device of the cover part of the present embodiment.
  • FIG. 8 illustrates a cover part according to another embodiment.
  • FIG. 9 is a cross-sectional view showing a pedestal part of the present embodiment.
  • FIG. 1 schematically shows an apparatus for manufacturing a wire rod according to an embodiment of the present invention.
  • the wire rod manufacturing apparatus 10 of this embodiment includes a heating furnace 11 for heating the provided billet B, and a heating furnace 11 disposed on the exit side of the heating furnace 11 to roll the heated billet (B). It includes the rolling unit 12 and the wire winding device 20 disposed on the exit side of the rolling unit 12 to wind the rolled wire (W).
  • the wire rod rolling process for manufacturing the wire rod W by the wire rod manufacturing device 10 is a state in which hot rolling is possible by transferring the billet (B) material made in the steelmaking process or the steel strip process to the heating furnace 11 .
  • the cross section is gradually reduced to form a wire coil of a desired size, and then transferred to the wire winding device 20 for winding. will be kept as it is.
  • FIG. 2 is a cross-sectional view illustrating the wire rod winding device according to the present embodiment
  • FIG. 3 is a perspective view illustrating a fork pin unit according to the present embodiment
  • FIG. 4 is a view showing a dry ice supply unit according to the present embodiment.
  • the wire rod winding device 20 includes a double tubular drum unit 30 , a fork pin unit 40 provided inside the drum unit 30 , and an upper portion of the drum unit 30 .
  • the drum unit 30 has a container shape with an open top, and may be configured in a double cylindrical shape including an outer cylinder 31 and an inner cylinder 32 .
  • the outer tube 31 is spaced apart from the outer surface of the inner tube 32 at a predetermined distance, and may be in the form of surrounding the outer surface of the inner tube 32 .
  • Dry ice pellets supplied from the dry ice supply unit 60 are sprayed into the chamber 33 , which is a space spaced apart between the outer cylinder 31 and the inner cylinder 32 .
  • the inner cylinder 32 may be rotated by the driving unit 70 .
  • a shaft portion 34 connected to the driving unit 70 is provided at the lower end of the inner cylinder 32 , and the shaft portion 34 penetrates the outer cylinder 31 and may extend to the lower portion of the outer cylinder 31 .
  • the lower end of the shaft portion 34 may be rotatably supported by a support 71 supported on the floor.
  • a bearing member 72 for smooth rotation of the shaft portion 34 may be installed between the support 71 and the lower end of the shaft portion 34 .
  • the bearing member 72 includes a thrust bearing for reducing frictional resistance during rotation while supporting an axial load.
  • a flange 35 extending radially outward so that the driven bevel gear 73 is coupled is provided on the outer surface of the shaft portion 34 exposed to the outside of the outer cylinder 31 , and the driven bevel gear 73 is a driving motor 74 ) can be rotated in engagement with the driving bevel gear 75 coupled to the shaft.
  • a shaft support part 36 for reducing frictional resistance when the shaft part 34 rotates may be provided on the outer surface of the shaft part 34 passing through the outer cylinder 31 .
  • the shaft support portion 36 includes a bearing member such as a sleeve bearing, a rolling bearing, etc. for reducing frictional resistance of a member that rotates relatively.
  • the fork pin part 40 may be formed in the form of a plurality of rods extending vertically through the bottom of the inner cylinder 32 , and a hollow flow path hole 41 penetrating vertically is formed inside the fork pin part 40 .
  • the fork pin unit 40 may be integrally coupled with the inner cylinder 32 to induce winding of the wire rod while rotating together with the inner cylinder 32 .
  • the wire introduced into the inner tube 32 may be stored while being wound between the inner tube 32 and the fork pin 40 .
  • the flow path hole 41 formed in the fork pin part 40 may communicate the chamber 33 and the inside of the inner cylinder 32 .
  • the inlet 42 opened at the lower end of the channel hole 41 may be located inside the chamber 33
  • the outlet 43 opened at the upper end of the channel hole 41 may be positioned near the upper end of the inner cylinder 32 . there is.
  • the inlet 42 of the passage hole 41 serves as an intake for sucking the dry ice pellets sprayed into the chamber 33 into the passage hole 41 , and the outlet 43 of the passage hole 41 is the passage hole. As it moves along (41), it serves as an exhaust port through which sublimated carbon dioxide gas is discharged.
  • the upper ends of the fork pin parts 40 in the form of a plurality of rods may be connected to each other by a connecting rim 44 .
  • the connecting rim 44 may include a link coupling tab or a bolt coupling tab for coupling with the fork pin unit 40 in the circumferential direction.
  • a plurality of cooling fins 45 spaced apart from each other by a predetermined interval in the vertical direction may be provided on the fork fin unit 40 .
  • the cover part 50 covers the open upper part of the inner tube 32 to prevent heat loss due to convection at the upper portion of the inner tube 32 when the wire rod is wound.
  • the cover part 50 may be configured as a movable heat retention cover.
  • An eccentricity prevention groove 51 is formed on the lower surface of the cover part 50 to restrict eccentric rotation when the fork pin part 40 is rotated, and the upper end of the fork pin part 40 is accommodated in the eccentricity prevention groove 51 . can rotate
  • a guide hole 52 through which the wire rod enters the inner cylinder 32 when the wire rod is wound may be formed in the cover part 50 .
  • the guide hole 52 may be formed in an inclined direction corresponding to the entry direction of the wire rod so that the wire rod is accommodated while being wound inside the inner cylinder 32 .
  • the dry ice supply unit 60 supplies dry ice particles to the chamber 33 between the outer cylinder 31 and the inner cylinder 32 , and includes a compressed air supply unit 61 , a pellet supply unit 62 , and a plurality of injection nozzles 63 . ) is included.
  • the compressed air supply unit 61 , the pellet supply unit 62 , and the plurality of injection nozzles 63 may be connected to each other through the dry ice supply line 64 .
  • the compressed air supply unit 61 may include an air compressor 61a and a receiver tank 61b.
  • the air compressor 61a includes a pump for generating compressed air, and the compressed air generated by the air compressor 61a may be supplied to the receiver tank 61b.
  • the receiver tank 61b may temporarily store the compressed air supplied from the air compressor 61a to perform a function such as a buffer, and may provide the compressed air stably pressurized toward the pellet supply unit 62 .
  • the pellet supply unit 62 provides dry ice pellets to the dry ice supply line 64.
  • the hopper 62a in which dry ice is stored and the dry ice supplied from the hopper 62a are supplied to the dry ice supply line 64. It includes a feeder (62b) provided to.
  • the feeder 62b may include a screw conveyor or a rotary disk method for crushing dry ice into pellets, and the dry ice pellets provided from the feeder 62b to the dry ice supply line 64 are compressed air supplying unit 61 . It can be transferred to the plurality of injection nozzles 63 by the compressed air supplied from the.
  • the plurality of injection nozzles 63 are connected to the dry ice supply line 64 and may be vertically spaced apart from each other at predetermined intervals in the nozzle header 63a extending in the vertical direction.
  • the plurality of injection nozzles 63 spray dry ice pellets into the chamber 33 , and may be spaced apart from each other at predetermined intervals along the circumferential direction and the height direction of the drum unit 30 .
  • At least one injection nozzle 63b among the plurality of injection nozzles 63 may be configured to selectively spray dry ice pellets toward the shaft support part 36 .
  • the dry ice pellets sprayed on the shaft support part 36 sharply drop the temperature of the polluting particles attached to the shaft support part 36, and the pollutant particles whose adhesive strength has decreased due to physical impact and rapid cooling are cracked and the shaft support part 36 separated from the surface of Accordingly, it is possible to prevent the drum unit 30 from rotating smoothly due to the contaminant particles attached to the shaft support unit 36 .
  • FIG. 6 is a view showing a dry ice supply unit according to another embodiment of the present invention.
  • the same reference numerals are assigned to components having the same functions, and detailed descriptions thereof are omitted.
  • the dry ice supply unit 60a includes a liquefied carbon dioxide supply unit 65 for supplying liquefied carbon dioxide gas, and an adiabatic expansion unit 66 for adiabatically expanding the liquefied carbon dioxide supplied from the liquefied carbon dioxide supply unit 65 . ), a compressed air supply unit 61 providing compressed air for transferring the dry ice pellets generated by the adiabatic expansion unit 66 , and a plurality of spraying the dry ice pellets transferred through the compressed air into the chamber 33 . It includes a spray nozzle (63).
  • the liquefied carbon dioxide supplied from the liquefied carbon dioxide supply unit 65 is adiabatically expanded by the adiabatic expansion unit 66 to generate dry ice pellets, and the generated dry ice pellets use compressed air generated from the compressed air supply unit 61 . Thus, it may be supplied to the chamber 33 through the plurality of injection nozzles 63 .
  • the dry ice pellets injected through the plurality of injection nozzles 63 during the process of winding the wire rod by the wire rod winding device 20 are introduced into the chamber 33, and then the fork pin part communicating with the chamber 33 ( It may be introduced into the flow path hole 41 of the fork pin unit 40 through the inlet 42 of the 40 .
  • FIG. 7 is a view showing a suction device connected to the cover according to an embodiment of the present invention.
  • a suction device 90 providing a suction force for smoothly sucking the dry ice pellets filled in the chamber 33 toward the flow hole 41 may be connected to the cover part 50 of the present embodiment.
  • the suction device 90 is for inducing an increase in the amount of dry ice pellets flowing toward the flow hole 41 even when the rotation speed of the drum part 30 is high, and is an exhaust flow path formed in the cover part 50 . It may include a 91, a suction fan 92 providing a suction force, and a suction hose 93 connecting the suction fan 92 and the exhaust flow path 91 .
  • the inlet 91a of the exhaust passage 91 may be installed to communicate with the outlet 43 of the fork pin unit 40 , and the outlet 91b of the exhaust passage 91 may be connected to the suction hose 93 .
  • the inlet 91a of the exhaust passage 91 may be formed in a circular ring shape, and the outlet 43 and the connecting rim 44 located at the upper end of the fork pin part 40 may be in close contact with the inlet 91a. .
  • the inlet 91a of the exhaust passage 91 may perform the function of the aforementioned eccentricity prevention groove.
  • FIG. 8 is a view showing a cover part according to another embodiment of the present invention.
  • a heat sink 100 for dissipating heat from the inner upper portion of the drum unit 30 to the outside may be provided under the cover unit 50 of the present embodiment.
  • the heat sink 100 has a relatively high temperature because the wire rod disposed at the upper end of the drum unit 30 is stored later than the wire rod disposed at the lower end of the drum unit 30 while the wire rod is wound around the drum unit 30 . A portion of the upper row of the drum unit 30 is quickly discharged to the outside of the cover unit 50 . Accordingly, it is possible to prevent deterioration of the quality of the wire rod by reducing the temperature deviation in the vertical direction inside the drum unit 30 while the wire rod is wound.
  • the heat sink 100 may be made of a metal material having excellent thermal conductivity, such as an aluminum material.
  • the heat sink 100 is positioned on the lower surface of the cover part 50 to receive the heat from the upper inner side of the drum part 30, the lower conductive part 101, and the upper surface of the cover part 50 so as to be exposed to outside air to heat
  • a heat transfer part 103 connecting the upper emitting part 102 and the lower conductive part 101 to transfer the heat conducted from the upper emitting part 102 and the lower conductive part 101 to the upper emitting part 102 include
  • the upper emission part 102 may be provided with a heat dissipation protrusion 104 for improving heat dissipation by increasing the contact area with the outside air.
  • the lower conductive part 101 may be provided with an eccentricity prevention groove 51 that can accommodate the upper end of the fork fin part 40.
  • the heat of the inner upper portion of the drum unit 30 is conducted to the upper discharge unit 102 through the lower conductive unit 101 and the heat transfer unit 103 and then discharged to the outside through the heat dissipation protrusion 104 . .
  • the lifting part 80 is for inducing the seating of the wire wound inside the inner cylinder 32 or for discharging the wound and stored wire rod to the outside, and a pedestal 81 for supporting the wire rod and , and a lifting member 82 for moving the pedestal 81 up and down.
  • the lifting member 82 may be moved up and down in connection with a hydraulic or pneumatic cylinder that expands and contracts.
  • a cooling passage 83 communicating with the chamber 33 may be formed in the pedestal 81 .
  • the cooling passage 83 may communicate with the chamber 33 through a hole 37 formed in the inner cylinder 32 .
  • the hole 37 formed in the inner cylinder 32 may be positioned to communicate with the cooling flow path 83 of the pedestal 81 when the pedestal 81 is positioned at the lower end of the inner cylinder 32, through which the chamber 33
  • the pedestal 81 may be cooled as the dry ice pellets injected into the air are supplied to the cooling passage 83 and sublimated.
  • the present embodiment shows a configuration in which one hole 37 is formed in the inner cylinder 32, when the pedestal 81 is moved to seat the wire rod, the cooling passage 83 and the chamber 33 are located at appropriate positions. ) can be formed so that a plurality of holes can be communicated, of course, the plurality of holes can be configured to enable selective opening and closing.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Materials Engineering (AREA)
  • Crystallography & Structural Chemistry (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Winding, Rewinding, Material Storage Devices (AREA)
  • Heat Treatment Of Strip Materials And Filament Materials (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Combustion & Propulsion (AREA)
  • General Engineering & Computer Science (AREA)

Abstract

A wire rod winding device is disclosed. The wire rod winding device according to an embodiment of the present invention comprises: a drum unit which includes an outer drum and an inner drum spaced apart from the outer drum and rotated by a drive unit; a dry ice supply unit which supplies dry ice pellets into a chamber formed between the outer drum and the inner drum; and a fork pin unit which is connected at one side thereof to the inner drum so as to be rotated integrally with the inner drum and is spaced at the other side thereof apart from the inner side of the inner drum so as to wind a wire rod thereon, wherein the fork pin unit includes a flow channel hole having an inlet formed at one end thereof to communicate with the chamber and an outlet formed at the other end thereof to communicate with the inside of the inner drum.

Description

선재 권취장치 및 이를 구비한 선재 제조장치Wire rod winding device and wire rod manufacturing device having same

본 발명은 선재 권취장치 및 이를 구비한 선재 제조장치에 관한 것이다.The present invention relates to a wire rod winding apparatus and a wire rod manufacturing apparatus having the same.

일반적으로 선재압연은 제강공정 또는 강편공정에서 만들어진 빌렛(Billet) 소재를 열간 압연이 가능한 상태로 가열하고, 일련의 압연 과정을 거치면서 그 단면이 점차 감소하여 원하는 치수의 선재 코일(Coil)을 얻는 공정을 말한다. In general, in wire rolling, the billet material made in the steelmaking process or the steel strip process is heated to a state where hot rolling is possible, and the cross section is gradually reduced through a series of rolling processes to obtain a wire coil of the desired size. say fair

이러한 선재압연의 과정에서 만들어진 선재는 전장길이가 약 500m ~ 10km에 달하여 직선형태로는 보관할 수 없으므로 원형으로 말아감은 코일(Coil)의 형태로 제품을 얻게되며 이를 권취(winding)라 한다.The wire rod made in the process of wire rod rolling has a total length of about 500m to 10km and cannot be stored in a straight form.

권취공정은 릴러(Reeler)라 불리는 원통형 설비에 선재 코일을 감는 과정이며, 릴러의 외경을 형성하는 드럼부(Drum)와 내경을 형성하는 포크핀부(Fork Pin)로 구성되어 그 사이의 공간에 선재 코일이 진입하여 감기게 된다. The winding process is a process of winding a wire coil in a cylindrical facility called a reeler. It consists of a drum forming the outer diameter of the reeler and a fork pin forming the inner diameter of the wire rod in the space between The coil enters and is wound.

또한 선재 코일을 감기 위해서, 릴러는 회전되게 되는데, 이때 상기 드럼부의 하부에 결합되어 상부로 연장되게 배치되는 상기 포크핀부는 회전시에 자유단인 상단부의 흔들림에 의해서 편심되어 회전된다. 이에 따라 상기 포크핀부는 선재 코일과 마찰이 발생하게 되고, 이에 의해서 선재 코일에 긁힘을 형성하는 등의 문제를 야기하게 된다.In addition, in order to wind the wire coil, the reeler is rotated. At this time, the fork pin part coupled to the lower part of the drum part and arranged to extend upward is eccentrically rotated by the shaking of the upper part, which is the free end, during rotation. Accordingly, the fork pin portion causes friction with the wire coil, thereby causing problems such as forming scratches on the wire coil.

그리고, 릴러는 권취공정 초반에 진입하는 선재 코일의 선단부는 드럼부의 아래쪽에 깔리는 반면, 권취공정 후반에 진입하는 선재 코일의 후단부는 드럼부의 위쪽에 권취되기 때문에 상단부가 개방된 드럼부 상측에서의 대류 열손실에 의하여 선재 코일의 상부측과 하부측간의 온도차이가 발생한다. In the reeler, the front end of the wire coil entering at the beginning of the winding process is spread under the drum, while the rear end of the wire coil entering the latter in the winding process is wound on the upper side of the drum, so convection at the upper side of the drum with the upper end open A temperature difference occurs between the upper and lower sides of the wire coil due to heat loss.

그런데, 이러한 릴러 내부에서의 열손실량 차이에 의한 선재 코일의 위치별 냉각속도의 차이에 의해서, 선재 코일의 재질 인장강도 및 미세조직 품질의 편차가 발생하는 문제를 야기하고 있다.However, due to the difference in the cooling rate for each location of the wire coil due to the difference in the amount of heat loss inside the reeler, there is a problem in that the tensile strength of the material of the wire coil and the quality of the microstructure are varied.

본 발명의 실시 예들은 선재 권취장치를 냉각하기 위한 냉각수 사용에 따라 발생하는 설비의 복잡한 구조적 문제를 간소화시킴과 아울러 선재 권취 시 발생하는 품질 저하를 방지할 수 있는 선재 권취장치 및 이를 구비한 선재 제조장치를 제공하고자 한다.Embodiments of the present invention provide a wire rod winding device capable of simplifying complex structural problems of equipment caused by the use of cooling water for cooling the wire rod winding device and preventing quality deterioration that occurs when winding the wire rod, and manufacturing a wire rod having the same We want to provide a device.

본 발명의 일 측면에 따르면, 외통과, 상기 외통과 이격되며 구동부에 의해 회전하는 내통을 갖는 드럼부와, 상기 외통과 상기 내통 사이에 형성된 챔버에 드라이아이스 펠릿을 공급하는 드라이아이스 공급부 및 상기 내통과 일체로 회전하도록 일측이 상기 내통과 연결되며, 선재를 권취하도록 타측이 상기 내통의 내측에 이격되는 포크핀부를 포함하고, 상기 포크핀부는 일단에 상기 챔버와 연통하는 입구가 형성되고, 타단에는 상기 내통의 내측과 연통하는 출구가 형성되는 유로홀을 포함하는 선재 권취장치가 제공될 수 있다.According to an aspect of the present invention, a drum unit having an outer cylinder, an inner cylinder spaced apart from the outer cylinder and rotating by a driving unit, a dry ice supply unit for supplying dry ice pellets to a chamber formed between the outer cylinder and the inner cylinder, and the inner cylinder One side is connected to the inner cylinder so as to rotate integrally with the cylinder, and the other side includes a fork pin part spaced apart from the inside of the inner cylinder to wind the wire, and the fork pin part has an inlet communicating with the chamber at one end, and at the other end A wire rod winding device including a passage hole through which an outlet communicating with the inner side of the inner cylinder is formed may be provided.

상기 구동부에 의해 회전하는 상기 내통의 축부는 상기 외통을 관통하도록 결합되고, 상기 드라이아이스 공급부는 상기 내통의 축부와 상기 외통 사이의 축지지부를 향해 상기 드라이아이스 펠릿을 분사하는 적어도 하나의 분사노즐을 포함한다.The shaft portion of the inner cylinder rotated by the driving unit is coupled to pass through the outer cylinder, and the dry ice supply unit sprays the dry ice pellets toward the shaft support portion between the shaft portion of the inner cylinder and the outer cylinder. At least one injection nozzle. include

상기 드럼부의 상부를 덮으며, 상기 내통과 상기 포크핀부 사이공간에 선재의 진입을 유도하는 가이드홀이 형성된 커버부를 더 포함한다.It covers the upper part of the drum part, and further includes a cover part in which a guide hole for guiding the entry of the wire rod into the space between the inner cylinder and the fork pin part is formed.

상기 커버부에는 상기 드라이아이스에서 기화된 가스를 외부로 배기하도록 상기 포크핀부의 상기 출구와 연통하는 배기유로가 형성될 수 있다.An exhaust passage communicating with the outlet of the fork fin part may be formed in the cover part to exhaust the gas vaporized from the dry ice to the outside.

상기 배기유로를 통해 상기 유로홀에 흡입력을 제공하도록 상기 배기유로의 출구와 연결되는 흡입장치를 더 포함한다.It further includes a suction device connected to the outlet of the exhaust passage to provide a suction force to the passage hole through the exhaust passage.

상기 흡입장치는 상기 배기유로의 출구와 연결되는 흡입호스와, 상기 흡입호스와 연결되어 흡입력을 제공하는 흡입팬을 포함한다.The suction device includes a suction hose connected to the outlet of the exhaust passage, and a suction fan connected to the suction hose to provide suction force.

상기 드라이아이스 공급부는 드라이아이스를 저장하고 배출하는 펠릿 공급부와, 상기 펠릿 공급부에서 배출된 드라이아이스 펠릿을 이송시키는 압축공기를 제공하는 압축공기 공급부와, 상기 압축공기를 통해 이송된 상기 드라이아이스 펠릿을 상기 챔버에 분사하는 복수의 분사노즐을 포함한다.The dry ice supply unit includes a pellet supply unit for storing and discharging dry ice, a compressed air supply unit supplying compressed air for transferring the dry ice pellets discharged from the pellet supply unit, and the dry ice pellets conveyed through the compressed air. It includes a plurality of injection nozzles for spraying the chamber.

상기 드라이아이스 공급부는 액화탄산가스를 공급하는 액화탄산가스 공급부와, 상기 액화탄산가스 공급부에서 공급된 액화탄산가스를 단열 팽창시키는 단열팽창부와, 상기 단열팽창부에서 생성된 드라이아이스 펠릿을 이송시키는 압축공기를 제공하는 압축공기 공급부와, 상기 압축공기를 통해 이송된 상기 드라이아이스 펠릿을 상기 챔버에 분사하는 복수의 분사노즐을 포함한다.The dry ice supply unit includes a liquefied carbon dioxide supply unit for supplying liquefied carbon dioxide gas, an adiabatic expansion unit for adiabatically expanding the liquefied carbon dioxide gas supplied from the liquefied carbon dioxide supply unit, and transporting the dry ice pellets generated by the adiabatic expansion unit. and a compressed air supply unit for providing compressed air, and a plurality of injection nozzles for injecting the dry ice pellets transferred through the compressed air into the chamber.

상기 커버부의 하측에는 상기 드럼부 내측 상부의 열을 외부로 방출하기 위한 방열판이 마련될 수 있다.A heat sink for dissipating the heat of the upper inner side of the drum part to the outside may be provided under the cover part.

상기 방열판은 상기 커버부의 하면에 위치되는 하부 전도부와, 상기 커버부의 상면에서 외기에 노출되는 상부 방출부와, 상기 하부 전도부와 상기 상부 방출부를 연결하는 열전달부를 포함한다.The heat sink includes a lower conductive part located on a lower surface of the cover part, an upper emission part exposed to the outside air on an upper surface of the cover part, and a heat transfer part connecting the lower conductive part and the upper emission part.

상기 하부 전도부는 상기 포크핀부의 상단을 수용하는 편심방지홈을 포함한다.The lower conductive part includes an eccentricity prevention groove for accommodating the upper end of the fork pin part.

상기 내통 내측에서 선재를 지지하며 내측에 냉각유로가 마련된 받침대를 더 포함하고, 상기 냉각유로는 상기 내통에 형성된 홀을 통해 상기 챔버와 연통될 수 있다.It supports the wire rod inside the inner cylinder and further includes a pedestal having a cooling passage provided therein, and the cooling passage may communicate with the chamber through a hole formed in the inner tube.

본 발명의 다른 측면은 제공된 빌렛을 가열하는 가열로와, 상기 가열로의 출측에 배치되어 가열된 상기 빌렛을 압연하는 압연유닛 및 상기 압연유닛의 출측에 배치되어, 상기 빌렛이 압연되어 형성된 선재를 권취하는 전술한 선재 권취장치를 포함하는 선재 제조장치가 제공될 수 있다.Another aspect of the present invention is to provide a heating furnace for heating the provided billet, a rolling unit disposed on the exit side of the heating furnace to roll the heated billet, and a wire rod formed by rolling the billet disposed on the exit side of the rolling unit. A wire rod manufacturing apparatus including the above-described wire rod winding apparatus for winding may be provided.

본 발명의 실시 예들은 선재 권취장치를 냉각하기 위한 구조를 간소화시킴과 아울러 권취장치와 선재 코일 간에 발생하는 표면흠 및 권취장치에 감기는 선재 코일의 위치별 온도 차이에 따른 선재 코일의 재질편차 발생을 저감할 수 있게 된다.Embodiments of the present invention simplify the structure for cooling the wire winding device, and, as well as surface flaws occurring between the winding device and the wire coil, and the temperature difference of the wire coil wound around the winding device, the material deviation of the wire coil occurs can be reduced.

도 1은 본 발명의 실시 예에 따른 선재 제조장치를 개략적으로 도시한 것이다.1 schematically shows an apparatus for manufacturing a wire rod according to an embodiment of the present invention.

도 2는 본 실시 예에 따른 선재 권취장치를 도시한 단면도이다.2 is a cross-sectional view showing the wire rod winding device according to the present embodiment.

도 3은 본 실시 예에 따른 포크핀부를 도시한 사시도이다.3 is a perspective view illustrating a fork pin unit according to the present embodiment.

도 4는 본 실시 예의 드라이아이스 공급부를 도시한 것이다.4 illustrates a dry ice supply unit according to the present embodiment.

도 5는 본 실시 예의 축지지부 부분을 도시한 것이다.5 is a view showing a shaft support portion of the present embodiment.

도 6은 다른 실시 예의 드라이아이스 공급부를 도시한 것이다.6 is a view showing a dry ice supply unit according to another embodiment.

도 7은 본 실시 예의 커버부의 흡입장치를 도시한 것이다.7 shows the suction device of the cover part of the present embodiment.

도 8은 다른 실시 예의 커버부를 도시한 것이다.8 illustrates a cover part according to another embodiment.

도 9는 본 실시 예의 받침대 부분을 도시한 단면도이다.9 is a cross-sectional view showing a pedestal part of the present embodiment.

이하에서는 본 발명의 실시 예들을 첨부 도면을 참조하여 상세히 설명한다. 이하에 소개되는 실시 예들은 본 발명이 속하는 기술분야에서 통상의 지식을 가진 자에게 본 발명의 사상이 충분히 전달될 수 있도록 하기 위해 예로서 제공되는 것이다. 본 발명은 이하 설명되는 실시 예들에 한정되지 않고 다른 형태로 구체화될 수도 있다. 본 발명을 명확하게 설명하기 위하여 설명과 관계없는 부분은 도면에서 생략하였으며 도면들에 있어서, 구성요소의 폭, 길이, 두께 등은 편의를 위하여 과장되어 표현될 수 있다. 명세서 전체에 걸쳐서 동일한 참조번호들은 동일한 구성요소들을 나타낸다.Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings. The embodiments introduced below are provided as examples in order to sufficiently convey the spirit of the present invention to those of ordinary skill in the art to which the present invention pertains. The present invention is not limited to the embodiments described below and may be embodied in other forms. In order to clearly explain the present invention, parts irrelevant to the description are omitted from the drawings, and in the drawings, the width, length, thickness, etc. of components may be exaggerated for convenience. Like reference numerals refer to like elements throughout.

도 1은 본 발명의 실시 예에 따른 선재 제조장치를 개략적으로 도시한 것이다.1 schematically shows an apparatus for manufacturing a wire rod according to an embodiment of the present invention.

도 1을 참조하면, 본 실시 예의 선재 제조장치(10)는 제공된 빌렛(B)을 가열하는 가열로(11)와, 가열로(11)의 출측에 배치되어 가열된 빌렛(B)을 압연하는 압연유닛(12) 및 압연유닛(12)의 출측에 배치되어 압연된 선재(W)를 권취하는 선재 권취장치(20)를 포함한다.Referring to FIG. 1 , the wire rod manufacturing apparatus 10 of this embodiment includes a heating furnace 11 for heating the provided billet B, and a heating furnace 11 disposed on the exit side of the heating furnace 11 to roll the heated billet (B). It includes the rolling unit 12 and the wire winding device 20 disposed on the exit side of the rolling unit 12 to wind the rolled wire (W).

이와 같이, 선재 제조장치(10)에 의해 선재(W)를 제조하는 선재 압연공정은 제강공정 또는 강편공정에서 만들어진 빌렛(Billet: B)소재를 가열로(11)로 전달하여 열간 압연이 가능한 상태로 가열하고, 조압연기 및 사상압연기 등으로 구성된 압연유닛(12)에서 일련의 압연 과정을 거치면서 그 단면이 점차 감소하여 원하는 치수의 선재 코일로 형성한 후 선재 권취장치(20)로 전달하여 권취된 상태로 보관하게 된다.As described above, the wire rod rolling process for manufacturing the wire rod W by the wire rod manufacturing device 10 is a state in which hot rolling is possible by transferring the billet (B) material made in the steelmaking process or the steel strip process to the heating furnace 11 . After a series of rolling processes in the rolling unit 12 composed of a roughing mill and a finishing mill, the cross section is gradually reduced to form a wire coil of a desired size, and then transferred to the wire winding device 20 for winding. will be kept as it is.

도 2는 본 실시 예에 따른 선재 권취장치를 도시한 단면도이고, 도 3은 본 실시 예에 따른 포크핀부를 도시한 사시도이고, 도 4는 본 실시 예의 드라이아이스 공급부를 도시한 것이다.FIG. 2 is a cross-sectional view illustrating the wire rod winding device according to the present embodiment, FIG. 3 is a perspective view illustrating a fork pin unit according to the present embodiment, and FIG. 4 is a view showing a dry ice supply unit according to the present embodiment.

도 2 내지 도 4를 참조하면, 선재 권취장치(20)는 이중 통 형상의 드럼부(30)와, 드럼부(30) 내측에 구비되는 포크핀부(40)와, 드럼부(30) 상부를 덮는 커버부(50)와, 드럼부(30)를 냉각하기 위한 드라이아이스 펠릿을 공급하는 드라이아이스 공급부(60)와, 드럼부(30)를 회전시키기 위한 구동부(70)와, 보관된 선재를 외부로 배출시키기 위한 리프팅부(80)를 포함한다.2 to 4 , the wire rod winding device 20 includes a double tubular drum unit 30 , a fork pin unit 40 provided inside the drum unit 30 , and an upper portion of the drum unit 30 . The cover part 50 for covering, the dry ice supply part 60 for supplying dry ice pellets for cooling the drum part 30, the driving part 70 for rotating the drum part 30, and the stored wire rod It includes a lifting unit 80 for discharging to the outside.

드럼부(30)는 상부가 개방된 용기 형상이고, 외통(31)과 내통(32)으로 이루어진 이중 통 형상으로 구성될 수 있다.The drum unit 30 has a container shape with an open top, and may be configured in a double cylindrical shape including an outer cylinder 31 and an inner cylinder 32 .

외통(31)은 내통(32)의 외면과 소정간격을 두고 이격되며, 내통(32)의 외면 둘레를 감싸는 형태일 수 있다. 외통(31)과 내통(32) 사이의 이격된 공간인 챔버(33)에는 드라이아이스 공급부(60)에서 공급된 드라이아이스 펠릿이 분사된다.The outer tube 31 is spaced apart from the outer surface of the inner tube 32 at a predetermined distance, and may be in the form of surrounding the outer surface of the inner tube 32 . Dry ice pellets supplied from the dry ice supply unit 60 are sprayed into the chamber 33 , which is a space spaced apart between the outer cylinder 31 and the inner cylinder 32 .

내통(32)은 구동부(70)에 의해 회전될 수 있다. 내통(32)의 하단에는 구동부(70)와 연계되는 축부(34)가 마련되고, 축부(34)는 외통(31)을 관통하여 외통(31) 하부로 연장될 수 있다.The inner cylinder 32 may be rotated by the driving unit 70 . A shaft portion 34 connected to the driving unit 70 is provided at the lower end of the inner cylinder 32 , and the shaft portion 34 penetrates the outer cylinder 31 and may extend to the lower portion of the outer cylinder 31 .

축부(34)의 하단은 바닥에 지지된 지지대(71)에 회전할 수 있게 지지될 수 있다. 지지대(71)와 축부(34) 하단 사이에는 축부(34)의 원활한 회전을 위한 베어링부재(72)가 설치될 수 있다. 베어링부재(72)는 축방향 하중을 지지하면서 회전시의 마찰저항을 줄이기 위한 스러스트 베어링을 포함한다.The lower end of the shaft portion 34 may be rotatably supported by a support 71 supported on the floor. A bearing member 72 for smooth rotation of the shaft portion 34 may be installed between the support 71 and the lower end of the shaft portion 34 . The bearing member 72 includes a thrust bearing for reducing frictional resistance during rotation while supporting an axial load.

외통(31)의 외부로 노출된 축부(34)의 외면에는 종동 베벨기어(73)가 결합되도록 반경방향 외측으로 연장된 플랜지(35)가 마련되고, 종동 베벨기어(73)는 구동모터(74)의 축에 결합된 구동 베벨기어(75)와 맞물려 회전할 수 있다.A flange 35 extending radially outward so that the driven bevel gear 73 is coupled is provided on the outer surface of the shaft portion 34 exposed to the outside of the outer cylinder 31 , and the driven bevel gear 73 is a driving motor 74 ) can be rotated in engagement with the driving bevel gear 75 coupled to the shaft.

외통(31)을 관통하는 축부(34)의 외면에는 축부(34)의 회전 시 마찰저항을 줄이기 위한 축지지부(36)가 마련될 수 있다. 축지지부(36)는 상대 회전하는 부재의 마찰저항을 줄이기 위한 슬리브 베어링, 구름 베어링 등과 같은 베어링 부재를 포함한다.A shaft support part 36 for reducing frictional resistance when the shaft part 34 rotates may be provided on the outer surface of the shaft part 34 passing through the outer cylinder 31 . The shaft support portion 36 includes a bearing member such as a sleeve bearing, a rolling bearing, etc. for reducing frictional resistance of a member that rotates relatively.

포크핀부(40)는 내통(32)의 바닥을 관통하여 상하로 연장 형성된 복수의 봉 형태로 형성될 수 있고, 포크핀부(40)의 내부에는 상하로 관통 형성된 중공의 유로홀(41)이 형성될 수 있다.The fork pin part 40 may be formed in the form of a plurality of rods extending vertically through the bottom of the inner cylinder 32 , and a hollow flow path hole 41 penetrating vertically is formed inside the fork pin part 40 . can be

포크핀부(40)는 내통(32)과 일체로 결합되어 내통(32)과 함께 회전하면서 선재의 권취를 유도할 수 있다. 내통(32) 내부로 유입된 선재는 내통(32)과 포크핀부(40) 사이에 권취되면서 보관될 수 있다.The fork pin unit 40 may be integrally coupled with the inner cylinder 32 to induce winding of the wire rod while rotating together with the inner cylinder 32 . The wire introduced into the inner tube 32 may be stored while being wound between the inner tube 32 and the fork pin 40 .

포크핀부(40)에 형성된 유로홀(41)은 챔버(33)와 내통(32) 내부를 연통시킬 수 있다. 유로홀(41)의 하단에 개구된 입구(42)는 챔버(33) 내부에 위치되고, 유로홀(41)의 상단에 개구된 출구(43)는 내통(32)의 상단 근방에 위치될 수 있다.The flow path hole 41 formed in the fork pin part 40 may communicate the chamber 33 and the inside of the inner cylinder 32 . The inlet 42 opened at the lower end of the channel hole 41 may be located inside the chamber 33 , and the outlet 43 opened at the upper end of the channel hole 41 may be positioned near the upper end of the inner cylinder 32 . there is.

유로홀(41)의 입구(42)는 챔버(33)에 분사된 드라이아이스 펠릿을 유로홀(41) 내부로 흡입시키는 흡기구 역할을 수행하고, 유로홀(41)의 출구(43)는 유로홀(41)을 따라 이동하면서 승화된 이산화탄소 가스가 배출되는 배기구 역할을 수행한다.The inlet 42 of the passage hole 41 serves as an intake for sucking the dry ice pellets sprayed into the chamber 33 into the passage hole 41 , and the outlet 43 of the passage hole 41 is the passage hole. As it moves along (41), it serves as an exhaust port through which sublimated carbon dioxide gas is discharged.

복수의 봉 형태로 이루어진 포크핀부(40)의 상단부는 연결림(44)에 의해 서로 연결될 수 있다. 연결림(44)은 포크핀부(40)와 결합하기 위한 링크 결합탭 또는 볼팅 결합탭 등이 원주방향으로 형성될 수 있다.The upper ends of the fork pin parts 40 in the form of a plurality of rods may be connected to each other by a connecting rim 44 . The connecting rim 44 may include a link coupling tab or a bolt coupling tab for coupling with the fork pin unit 40 in the circumferential direction.

또한 포크핀부(40)에는 상하방향으로 소정간격 이격된 복수의 냉각핀(45)이 구비될 수도 있다.In addition, a plurality of cooling fins 45 spaced apart from each other by a predetermined interval in the vertical direction may be provided on the fork fin unit 40 .

커버부(50)는 내통(32)의 개방된 상부를 덮어 선재 권취 시 내통(32) 상부에서의 대류에 의한 열손실을 방지할 수 있다. 이러한 커버부(50)는 이동식 보열 커버로 구성될 수 있다.The cover part 50 covers the open upper part of the inner tube 32 to prevent heat loss due to convection at the upper portion of the inner tube 32 when the wire rod is wound. The cover part 50 may be configured as a movable heat retention cover.

커버부(50)의 하면에는 포크핀부(40)의 회전 시 편심 회전을 구속하기 위한 편심방지홈(51)이 형성되고, 포크핀부(40)의 상단은 편심방지홈(51)에 수용된 상태에서 회전할 수 있다.An eccentricity prevention groove 51 is formed on the lower surface of the cover part 50 to restrict eccentric rotation when the fork pin part 40 is rotated, and the upper end of the fork pin part 40 is accommodated in the eccentricity prevention groove 51 . can rotate

커버부(50)에는 선재 권취 시 선재가 내통(32) 내부로 진입되는 위한 가이드홀(52)이 형성될 수 있다. 가이드홀(52)은 선재가 내통(32) 내부에 권취되면서 수용되도록 선재의 진입 방향에 대응되는 경사진 방향으로 형성될 수 있다.A guide hole 52 through which the wire rod enters the inner cylinder 32 when the wire rod is wound may be formed in the cover part 50 . The guide hole 52 may be formed in an inclined direction corresponding to the entry direction of the wire rod so that the wire rod is accommodated while being wound inside the inner cylinder 32 .

드라이아이스 공급부(60)는 외통(31)과 내통(32) 사이의 챔버(33)에 드라이아이스 입자를 공급하는 것으로서, 압축공기 공급부(61), 펠릿 공급부(62) 및 복수의 분사노즐(63)을 포함한다.The dry ice supply unit 60 supplies dry ice particles to the chamber 33 between the outer cylinder 31 and the inner cylinder 32 , and includes a compressed air supply unit 61 , a pellet supply unit 62 , and a plurality of injection nozzles 63 . ) is included.

압축공기 공급부(61), 펠릿 공급부(62) 및 복수의 분사노즐(63)은 드라이아이스 공급라인(64)을 통해 서로 연결될 수 있다.The compressed air supply unit 61 , the pellet supply unit 62 , and the plurality of injection nozzles 63 may be connected to each other through the dry ice supply line 64 .

압축공기 공급부(61)는 공기 압축기(61a)와 리시버 탱크(61b)를 포함할 수 있다. 공기 압축기(61a)는 압축공기를 생성하는 펌프 등을 포함하고, 공기 압축기(61a)에서 생성된 압축공기는 리시버 탱크(61b)에 공급될 수 있다.The compressed air supply unit 61 may include an air compressor 61a and a receiver tank 61b. The air compressor 61a includes a pump for generating compressed air, and the compressed air generated by the air compressor 61a may be supplied to the receiver tank 61b.

리시버 탱크(61b)는 공기 압축기(61a)에서 공급된 압축공기를 일시 저장하여 버퍼와 같은 기능을 수행할 수 있고, 펠릿 공급부(62) 쪽으로 안정적으로 가압된 압축 공기를 제공할 수 있다The receiver tank 61b may temporarily store the compressed air supplied from the air compressor 61a to perform a function such as a buffer, and may provide the compressed air stably pressurized toward the pellet supply unit 62 .

펠릿 공급부(62)는 드라이아이스 펠릿을 드라이아이스 공급라인(64)에 제공하는 것으로서, 드라이아이스가 저장되는 호퍼(62a)와, 호퍼(62a)에서 공급되는 드라이아이스를 드라이아이스 공급라인(64)에 제공하는 피더(62b)를 포함한다.The pellet supply unit 62 provides dry ice pellets to the dry ice supply line 64. The hopper 62a in which dry ice is stored and the dry ice supplied from the hopper 62a are supplied to the dry ice supply line 64. It includes a feeder (62b) provided to.

피더(62b)는 드라이아이스를 펠릿 형태로 파쇄하는 스크류 컨베이어 또는 회전식 디스크 방식을 포함할 수 있고, 피더(62b)로부터 드라이아이스 공급라인(64)에 제공되는 드라이아이스 펠릿은 압축공기 공급부(61)에서 공급되는 압축공기에 의해 복수의 분사노즐(63)로 이송될 수 있다.The feeder 62b may include a screw conveyor or a rotary disk method for crushing dry ice into pellets, and the dry ice pellets provided from the feeder 62b to the dry ice supply line 64 are compressed air supplying unit 61 . It can be transferred to the plurality of injection nozzles 63 by the compressed air supplied from the.

복수의 분사노즐(63)은 드라이아이스 공급라인(64)과 연결되며 수직방향으로 연장 형성되는 노즐헤더(63a)에서 소정간격을 두고 상하로 이격 배치될 수 있다.The plurality of injection nozzles 63 are connected to the dry ice supply line 64 and may be vertically spaced apart from each other at predetermined intervals in the nozzle header 63a extending in the vertical direction.

복수의 분사노즐(63)은 챔버(33)에 드라이아이스 펠릿을 분사하는 것으로서, 드럼부(30)의 원주방향 및 높이방향을 따라 소정간격을 두고 이격 배치될 수 있다.The plurality of injection nozzles 63 spray dry ice pellets into the chamber 33 , and may be spaced apart from each other at predetermined intervals along the circumferential direction and the height direction of the drum unit 30 .

도 5를 참조하면, 복수의 분사노즐(63) 중 적어도 하나의 분사노즐(63b)은 축지지부(36)를 향해 드라이아이스 펠릿을 선택적으로 분사하도록 구성될 수 있다. 축지지부(36)에 분사된 드라이아이스 펠릿은 축지지부(36)에 부착된 오염입자의 온도를 급격히 떨어뜨리게 되고 물리적 충격과 급냉으로 인해 점착력이 떨어진 오염입자는 균열이 생기게 되면서 축지지부(36)의 표면으로부터 분리되게 된다. 따라서, 축지지부(36)에 부착된 오염입자로 인하여 드럼부(30)가 원활히 회전되지 않는 것을 방지할 수 있게 된다.Referring to FIG. 5 , at least one injection nozzle 63b among the plurality of injection nozzles 63 may be configured to selectively spray dry ice pellets toward the shaft support part 36 . The dry ice pellets sprayed on the shaft support part 36 sharply drop the temperature of the polluting particles attached to the shaft support part 36, and the pollutant particles whose adhesive strength has decreased due to physical impact and rapid cooling are cracked and the shaft support part 36 separated from the surface of Accordingly, it is possible to prevent the drum unit 30 from rotating smoothly due to the contaminant particles attached to the shaft support unit 36 .

도 6은 본 발명의 다른 실시 예에 따른 드라이아이스 공급부를 도시한 것이다. 이하에서는 동일한 기능을 갖는 구성요소에 대하여는 동일한 도면번호를 부여하고, 상세한 설명은 생략한다.6 is a view showing a dry ice supply unit according to another embodiment of the present invention. Hereinafter, the same reference numerals are assigned to components having the same functions, and detailed descriptions thereof are omitted.

도 6을 참조하면, 드라이아이스 공급부(60a)는 액화탄산가스를 공급하는 액화탄산가스 공급부(65)와, 액화탄산가스 공급부(65)에서 공급된 액화탄산가스를 단열 팽창시키는 단열팽창부(66)와, 단열팽창부(66)에서 생성된 드라이아이스 펠릿을 이송시키는 압축공기를 제공하는 압축공기 공급부(61)와, 압축공기를 통해 이송된 드라이아이스 펠릿을 챔버(33)에 분사하는 복수의 분사노즐(63)을 포함한다.Referring to FIG. 6 , the dry ice supply unit 60a includes a liquefied carbon dioxide supply unit 65 for supplying liquefied carbon dioxide gas, and an adiabatic expansion unit 66 for adiabatically expanding the liquefied carbon dioxide supplied from the liquefied carbon dioxide supply unit 65 . ), a compressed air supply unit 61 providing compressed air for transferring the dry ice pellets generated by the adiabatic expansion unit 66 , and a plurality of spraying the dry ice pellets transferred through the compressed air into the chamber 33 . It includes a spray nozzle (63).

액화탄산가스 공급부(65)에서 공급된 액화탄산가스는 단열팽창부(66)에서 단열팽창하면서 드라이아이스 펠릿이 생성되고, 생성된 드라이아이스 펠릿은 압축공기 공급부(61)에서 발생된 압축공기를 이용하여 복수의 분사노즐(63)을 통해 챔버(33)로 공급될 수 있다.The liquefied carbon dioxide supplied from the liquefied carbon dioxide supply unit 65 is adiabatically expanded by the adiabatic expansion unit 66 to generate dry ice pellets, and the generated dry ice pellets use compressed air generated from the compressed air supply unit 61 . Thus, it may be supplied to the chamber 33 through the plurality of injection nozzles 63 .

이러한 구성을 통해, 선재 권취장치(20)가 선재를 감는 과정에서 복수의 분사노즐(63)을 통해 분사된 드라이아이스 펠릿은 챔버(33)로 유입된 후 챔버(33)와 연통된 포크핀부(40)의 입구(42)를 통해 포크핀부(40)의 유로홀(41)로 유입될 수 있다.Through this configuration, the dry ice pellets injected through the plurality of injection nozzles 63 during the process of winding the wire rod by the wire rod winding device 20 are introduced into the chamber 33, and then the fork pin part communicating with the chamber 33 ( It may be introduced into the flow path hole 41 of the fork pin unit 40 through the inlet 42 of the 40 .

챔버(33)와 유로홀(41) 내부로 유입된 드라이아이스 펠릿은 승화되면서 드럼부(30)와 포크핀부(40)의 온도를 순간적으로 낮추어 냉각 시킨 후 포크핀부(40)의 출구(43)를 통해 배출되게 된다. 이를 통해, 드럼부(30)와 포크핀부(40)를 냉각하기 위한 냉각수를 이용하는 경우와 대비하여 냉각수 배출을 위한 별도 구조물을 설치하거나, 냉각수 누수로 인한 주변 부품의 손상을 방지하기 위한 실링 구조물 등을 설치할 필요가 없게 된다.The dry ice pellets introduced into the chamber 33 and the passage hole 41 are sublimed and the temperature of the drum part 30 and the fork fin part 40 is momentarily lowered to cool, and then the outlet 43 of the fork fin part 40 is emitted through Through this, a separate structure for discharging cooling water is installed in preparation for using cooling water for cooling the drum unit 30 and the fork pin unit 40, or a sealing structure for preventing damage to surrounding parts due to leakage of cooling water, etc. no need to install

이하에서는 본 발명의 다양한 실시 예의 선재 권취장치에 대하여 설명한다. 이하에서는 동일한 기능을 갖는 구성요소에 대하여는 동일한 도면번호를 부여하고, 상세한 설명은 생략한다.Hereinafter, a wire rod winding device according to various embodiments of the present invention will be described. Hereinafter, the same reference numerals are assigned to components having the same functions, and detailed descriptions thereof are omitted.

도 7은 본 발명의 실시 예에 따른 커버부에 연결되는 흡입장치를 도시한 것이다. 도 7을 참조하면, 본 실시 예의 커버부(50)에는 챔버(33)에 채워된 드라이아이스 펠릿이 유로홀(41) 쪽으로 원활히 흡입시키기 위한 흡입력을 제공하는 흡입장치(90)가 연결될 수 있다.7 is a view showing a suction device connected to the cover according to an embodiment of the present invention. Referring to FIG. 7 , a suction device 90 providing a suction force for smoothly sucking the dry ice pellets filled in the chamber 33 toward the flow hole 41 may be connected to the cover part 50 of the present embodiment.

흡입장치(90)는 드럼부(30)의 회전속도가 빠른 경우에도 유로홀(41) 쪽으로 유입되는 드라이아이스 펠릿의 양을 증가시킬 수 있도록 유도하기 위한 것으로서, 커버부(50)에 형성된 배기유로(91)와, 흡입력을 제공하는 흡입팬(92)과, 흡입팬(92)과 배기유로(91)를 연결하는 흡입호스(93)를 포함할 수 있다.The suction device 90 is for inducing an increase in the amount of dry ice pellets flowing toward the flow hole 41 even when the rotation speed of the drum part 30 is high, and is an exhaust flow path formed in the cover part 50 . It may include a 91, a suction fan 92 providing a suction force, and a suction hose 93 connecting the suction fan 92 and the exhaust flow path 91 .

배기유로(91)의 입구(91a)는 포크핀부(40)의 출구(43)와 연통하도록 설치될 수 있고, 배기유로(91)의 출구(91b)는 흡입호스(93)와 연결될 수 있다.The inlet 91a of the exhaust passage 91 may be installed to communicate with the outlet 43 of the fork pin unit 40 , and the outlet 91b of the exhaust passage 91 may be connected to the suction hose 93 .

배기유로(91)의 입구(91a)는 원형 링 형상으로 형성될 수 있고, 포크핀부(40)의 상단에 위치된 출구(43)와 연결림(44)이 입구(91a)에 밀착될 수 있다. 여기서, 배기유로(91)의 입구(91a)는 전술한 편심방지홈의 기능을 수행할 수도 있다.The inlet 91a of the exhaust passage 91 may be formed in a circular ring shape, and the outlet 43 and the connecting rim 44 located at the upper end of the fork pin part 40 may be in close contact with the inlet 91a. . Here, the inlet 91a of the exhaust passage 91 may perform the function of the aforementioned eccentricity prevention groove.

도 8은 본 발명의 다른 실시 예에 따른 커버부를 도시한 것이다.8 is a view showing a cover part according to another embodiment of the present invention.

도 8을 참조하면, 본 실시 예의 커버부(50)의 하측에는 드럼부(30) 내측 상부의 열을 외부로 방출하기 위한 방열판(100)이 구비될 수 있다.Referring to FIG. 8 , a heat sink 100 for dissipating heat from the inner upper portion of the drum unit 30 to the outside may be provided under the cover unit 50 of the present embodiment.

방열판(100)은 선재가 드럼부(30)에 감기는 동안 드럼부(30)의 상단부에 배치되는 선재는 드럼부(30)의 하단부에 배치되는 선재보다 나중에 보관되기 때문에 상대적으로 온도가 높게 되므로 드럼부(30) 상부쪽 열의 일부를 신속히 커버부(50) 외부로 방출시키게 된다. 이에 따라, 선재가 감기는 동안 드럼부(30) 내측에서 상하방향의 온도편차를 줄임에 의해 선재의 품질 저하를 방지할 수 있게 된다.The heat sink 100 has a relatively high temperature because the wire rod disposed at the upper end of the drum unit 30 is stored later than the wire rod disposed at the lower end of the drum unit 30 while the wire rod is wound around the drum unit 30 . A portion of the upper row of the drum unit 30 is quickly discharged to the outside of the cover unit 50 . Accordingly, it is possible to prevent deterioration of the quality of the wire rod by reducing the temperature deviation in the vertical direction inside the drum unit 30 while the wire rod is wound.

방열판(100)은 알루미늄 소재와 같이 열 전도성이 우수한 금속 소재로 구성될 수 있다. 방열판(100)은 커버부(50)의 하면에 위치되어 드럼부(30) 내측 상부의 열을 전달받는 하부 전도부(101)와, 커버부(50)의 상면에서 외기에 노출되도록 위치되어 열을 방출하는 상부 방출부(102)와, 하부 전도부(101)에서 전도되는 열을 상부 방출부(102)로 전달하도록 상부 방출부(102)와 하부 전도부(101)를 연결하는 열전달부(103)를 포함한다.The heat sink 100 may be made of a metal material having excellent thermal conductivity, such as an aluminum material. The heat sink 100 is positioned on the lower surface of the cover part 50 to receive the heat from the upper inner side of the drum part 30, the lower conductive part 101, and the upper surface of the cover part 50 so as to be exposed to outside air to heat A heat transfer part 103 connecting the upper emitting part 102 and the lower conductive part 101 to transfer the heat conducted from the upper emitting part 102 and the lower conductive part 101 to the upper emitting part 102 include

상부 방출부(102)에는 외기와의 접촉면적을 증대시켜 방열성을 향상시키기 위한 방열돌기(104)가 마련될 수 있다.The upper emission part 102 may be provided with a heat dissipation protrusion 104 for improving heat dissipation by increasing the contact area with the outside air.

한편, 커버부(50)에 방열판(100)이 구비된 경우에는 하부 전도부(101)에는 포크핀부(40)의 상단을 수용 가능한 편심방지홈(51)이 구비될 수 있다.On the other hand, when the heat sink 100 is provided in the cover part 50, the lower conductive part 101 may be provided with an eccentricity prevention groove 51 that can accommodate the upper end of the fork fin part 40.

이러한 구성을 통해, 드럼부(30)의 내측 상부의 열은 하부 전도부(101) 및 열전달부(103)를 통해 상부 방출부(102)로 전도된 후 방열돌기(104)를 통해 외부에 방출된다.Through this configuration, the heat of the inner upper portion of the drum unit 30 is conducted to the upper discharge unit 102 through the lower conductive unit 101 and the heat transfer unit 103 and then discharged to the outside through the heat dissipation protrusion 104 . .

다시 도 2를 참조하면, 리프팅부(80)는 내통(32) 내부에서 권취되는 선재의 안착을 유도하거나, 권취되어 보관된 선재를 외부로 배출시키기 위한 것으로서, 선재를 지지하는 받침대(81)와, 받침대(81)를 상하로 이동시키는 승강부재(82)를 포함한다. 승강부재(82)는 신축되는 유압 또는 공압 실린더와 연계되어 상하로 이동될 수 있다.Referring back to FIG. 2 , the lifting part 80 is for inducing the seating of the wire wound inside the inner cylinder 32 or for discharging the wound and stored wire rod to the outside, and a pedestal 81 for supporting the wire rod and , and a lifting member 82 for moving the pedestal 81 up and down. The lifting member 82 may be moved up and down in connection with a hydraulic or pneumatic cylinder that expands and contracts.

한편, 도 9를 참조하면, 받침대(81)에는 챔버(33)와 연통하는 냉각유로(83)가 형성될 수 있다. 냉각유로(83)는 내통(32)에 형성된 홀(37)을 통해 챔버(33)와 연통될 수 있다.Meanwhile, referring to FIG. 9 , a cooling passage 83 communicating with the chamber 33 may be formed in the pedestal 81 . The cooling passage 83 may communicate with the chamber 33 through a hole 37 formed in the inner cylinder 32 .

내통(32)에 형성된 홀(37)은 받침대(81)가 내통(32)의 하단에 위치될 때 받침대(81)의 냉각유로(83)와 연통되도록 위치될 수 있고, 이를 통해 챔버(33)에 투입된 드라이아이스 펠릿이 냉각유로(83)에 공급되어 승화됨에 따라 받침대(81)는 냉각될 수 있다.The hole 37 formed in the inner cylinder 32 may be positioned to communicate with the cooling flow path 83 of the pedestal 81 when the pedestal 81 is positioned at the lower end of the inner cylinder 32, through which the chamber 33 The pedestal 81 may be cooled as the dry ice pellets injected into the air are supplied to the cooling passage 83 and sublimated.

한편, 본 실시 예에서는 내통(32)에 하나의 홀(37)이 형성된 구성을 도시하나, 받침대(81)가 선재를 안착하기 위해 이동되는 경우에는 적절한 위치에서 냉각유로(83)와 챔버(33)가 연통될 수 있도록 복수의 홀이 형성될 수 있고, 복수의 홀은 선택적 개폐가 가능하도록 구성될 수 있음은 물론이다.On the other hand, although the present embodiment shows a configuration in which one hole 37 is formed in the inner cylinder 32, when the pedestal 81 is moved to seat the wire rod, the cooling passage 83 and the chamber 33 are located at appropriate positions. ) can be formed so that a plurality of holes can be communicated, of course, the plurality of holes can be configured to enable selective opening and closing.

이상에서는 특정의 실시 예에 대하여 도시하고 설명하였다. 그러나 상기한 실시 예에만 한정되지 않으며 발명이 속하는 기술분야에서 통상의 지식을 가진 자라면 이하의 청구범위에 기재된 발명의 기술적 사상의 요지를 벗어남이 없이 얼마든지 다양하게 변경 실시할 수 있을 것이다.In the above, specific embodiments have been shown and described. However, it is not limited to the above-described embodiment, and a person of ordinary skill in the art to which the invention pertains will be able to make various changes without departing from the spirit of the invention described in the claims below.

Claims (13)

외통과, 상기 외통과 이격되며 구동부에 의해 회전하는 내통을 갖는 드럼부;a drum unit having an outer cylinder and an inner cylinder spaced apart from the outer cylinder and rotated by a driving unit; 상기 외통과 상기 내통 사이에 형성된 챔버에 드라이아이스 펠릿을 공급하는 드라이아이스 공급부; 및a dry ice supply unit for supplying dry ice pellets to a chamber formed between the outer cylinder and the inner cylinder; and 상기 내통과 일체로 회전하도록 일측이 상기 내통과 연결되며, 선재를 권취하도록 타측이 상기 내통의 내측에 이격되는 포크핀부;를 포함하고,and a fork pin part having one side connected to the inner cylinder to rotate integrally with the inner cylinder, and the other side being spaced apart from the inside of the inner cylinder to wind the wire rod. 상기 포크핀부는,The fork pin part, 일단에 상기 챔버와 연통하는 입구가 형성되고, 타단에는 상기 내통의 내측과 연통하는 출구가 형성되는 유로홀을 포함하는 선재 권취장치.A wire winding device including a passage hole having an inlet communicating with the chamber formed at one end and an outlet communicating with the inner side of the inner cylinder formed at the other end. 제1항에 있어서,According to claim 1, 상기 구동부에 의해 회전하는 상기 내통의 축부는 상기 외통을 관통하도록 결합되고,The shaft portion of the inner cylinder rotated by the driving unit is coupled to pass through the outer cylinder, 상기 드라이아이스 공급부는 상기 내통의 축부와 상기 외통 사이의 축지지부를 향해 상기 드라이아이스 펠릿을 분사하는 적어도 하나의 분사노즐을 포함하는 선재 권취장치.and the dry ice supply unit includes at least one injection nozzle for injecting the dry ice pellets toward a shaft support portion between the shaft portion of the inner cylinder and the outer cylinder. 제1항에 있어서,According to claim 1, 상기 드럼부의 상부를 덮으며, 상기 내통과 상기 포크핀부 사이공간에 선재의 진입을 유도하는 가이드홀이 형성된 커버부를 더 포함하는 선재 권취장치.and a cover part covering the upper part of the drum part and having a guide hole guiding the entry of the wire rod into a space between the inner cylinder and the fork pin part. 제3항에 있어서,4. The method of claim 3, 상기 커버부에는 상기 드라이아이스에서 기화된 가스를 외부로 배기하도록 상기 포크핀부의 상기 출구와 연통하는 배기유로가 형성되는 선재 권취장치.An exhaust passage communicating with the outlet of the fork fin portion is formed in the cover portion to exhaust the gas vaporized from the dry ice to the outside. 제4항에 있어서,5. The method of claim 4, 상기 배기유로를 통해 상기 유로홀에 흡입력을 제공하도록 상기 배기유로의 출구와 연결되는 흡입장치를 더 포함하는 선재 권취장치.The wire rod winding device further comprising a suction device connected to an outlet of the exhaust passage to provide a suction force to the passage hole through the exhaust passage. 제5항에 있어서,6. The method of claim 5, 상기 흡입장치는 상기 배기유로의 출구와 연결되는 흡입호스와, 상기 흡입호스와 연결되어 흡입력을 제공하는 흡입팬을 포함하는 선재 권취장치.The suction device includes a suction hose connected to an outlet of the exhaust passage, and a suction fan connected to the suction hose to provide suction force. 제5항에 있어서,6. The method of claim 5, 상기 드라이아이스 공급부는 드라이아이스를 저장하고 배출하는 펠릿 공급부와, 상기 펠릿 공급부에서 배출된 드라이아이스 펠릿을 이송시키는 압축공기를 제공하는 압축공기 공급부와, 상기 압축공기를 통해 이송된 상기 드라이아이스 펠릿을 상기 챔버에 분사하는 복수의 분사노즐을 포함하는 선재 권취장치.The dry ice supply unit includes a pellet supply unit for storing and discharging dry ice, a compressed air supply unit supplying compressed air for transferring the dry ice pellets discharged from the pellet supply unit, and the dry ice pellets conveyed through the compressed air. A wire winding device including a plurality of injection nozzles for spraying the chamber. 제5항에 있어서,6. The method of claim 5, 상기 드라이아이스 공급부는 액화탄산가스를 공급하는 액화탄산가스 공급부와, 상기 액화탄산가스 공급부에서 공급된 액화탄산가스를 단열 팽창시키는 단열팽창부와, 상기 단열팽창부에서 생성된 드라이아이스 펠릿을 이송시키는 압축공기를 제공하는 압축공기 공급부와, 상기 압축공기를 통해 이송된 상기 드라이아이스 펠릿을 상기 챔버에 분사하는 복수의 분사노즐을 포함하는 선재 권취장치.The dry ice supply unit includes a liquefied carbon dioxide supply unit for supplying liquefied carbon dioxide gas, an adiabatic expansion unit for adiabatically expanding the liquefied carbon dioxide gas supplied from the liquefied carbon dioxide supply unit, and transporting the dry ice pellets generated by the adiabatic expansion unit. A wire rod winding device comprising: a compressed air supply unit for providing compressed air; and a plurality of injection nozzles for spraying the dry ice pellets transferred through the compressed air into the chamber. 제3항에 있어서,4. The method of claim 3, 상기 커버부의 하측에는 상기 드럼부 내측 상부의 열을 외부로 방출하기 위한 방열판이 마련되는 선재 권취장치.A wire winding device provided with a heat sink on the lower side of the cover for dissipating the heat of the upper inner side of the drum to the outside. 제9항에 있어서,10. The method of claim 9, 상기 방열판은 상기 커버부의 하면에 위치되는 하부 전도부와, 상기 커버부의 상면에서 외기에 노출되는 상부 방출부와, 상기 하부 전도부와 상기 상부 방출부를 연결하는 열전달부를 포함하는 선재 권취장치.The heat sink includes a lower conductive part located on a lower surface of the cover part, an upper emitting part exposed to the outside air on an upper surface of the cover part, and a heat transfer part connecting the lower conductive part and the upper emitting part. 제10항에 있어서,11. The method of claim 10, 상기 하부 전도부는 상기 포크핀부의 상단을 수용하는 편심방지홈을 포함하는 선재 권취장치.The lower conductive portion wire rod winding device including an eccentricity preventing groove for accommodating the upper end of the fork pin portion. 제1항에 있어서,According to claim 1, 상기 내통 내측에서 선재를 지지하며 내측에 냉각유로가 마련된 받침대를 더 포함하고,Supporting the wire rod inside the inner cylinder and further comprising a pedestal provided with a cooling flow path inside, 상기 냉각유로는 상기 내통에 형성된 홀을 통해 상기 챔버와 연통되는 선재 권취장치. The cooling passage is a wire winding device communicating with the chamber through a hole formed in the inner cylinder. 제공된 빌렛을 가열하는 가열로;a furnace for heating the provided billet; 상기 가열로의 출측에 배치되어 가열된 상기 빌렛을 압연하는 압연유닛; 및a rolling unit disposed on the exit side of the heating furnace to roll the heated billet; and 상기 압연유닛의 출측에 배치되어, 상기 빌렛이 압연되어 형성된 선재를 권취하는 제1항 내지 제12항 중 어느 한 항의 선재 권취장치;를 포함하는 선재 제조장치.The wire rod manufacturing apparatus comprising a; the wire rod winding device of any one of claims 1 to 12, which is disposed on the exit side of the rolling unit and winds the wire rod formed by rolling the billet.
PCT/KR2020/016293 2020-08-18 2020-11-18 Wire rod winding device and wire rod manufacturing apparatus comprising same Ceased WO2022039325A1 (en)

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KR102326259B1 (en) 2021-11-16
EP4176986A1 (en) 2023-05-10
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JP2023538070A (en) 2023-09-06
CN115989097A (en) 2023-04-18
JP7545572B2 (en) 2024-09-04

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