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WO2019173963A1 - Dispositif de fabrication d'élément chauffant - Google Patents

Dispositif de fabrication d'élément chauffant Download PDF

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Publication number
WO2019173963A1
WO2019173963A1 PCT/CN2018/078816 CN2018078816W WO2019173963A1 WO 2019173963 A1 WO2019173963 A1 WO 2019173963A1 CN 2018078816 W CN2018078816 W CN 2018078816W WO 2019173963 A1 WO2019173963 A1 WO 2019173963A1
Authority
WO
WIPO (PCT)
Prior art keywords
heating wire
assembly
clip
clamping
rotating shaft
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/CN2018/078816
Other languages
English (en)
Chinese (zh)
Inventor
邹广伟
沈飞
王滔
汪洋保
阳露
陈敬文
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.)
O Net Automation Technology Shenzhen Co Ltd
Original Assignee
O Net Automation Technology Shenzhen 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 O Net Automation Technology Shenzhen Co Ltd filed Critical O Net Automation Technology Shenzhen Co Ltd
Priority to PCT/CN2018/078816 priority Critical patent/WO2019173963A1/fr
Publication of WO2019173963A1 publication Critical patent/WO2019173963A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21FWORKING OR PROCESSING OF METAL WIRE
    • B21F3/00Coiling wire into particular forms
    • B21F3/02Coiling wire into particular forms helically

Definitions

  • the present invention relates to the field of electronic cigarette technology, and in particular to a heat generating component manufacturing apparatus.
  • the heat generating component is usually formed by winding a heating wire in a spiral manner on the liquid guiding cotton.
  • the heating wire has a uniform pitch and a uniform outer diameter, and the liquid guiding cotton can not be struck and the resistance value is stable.
  • the existing heating wire is manually wound around the hollow tube, and the liquid cotton is manually worn around the hollow ring, which has low efficiency and high labor cost.
  • the technical problem to be solved by the present invention is to provide a heat generating component manufacturing apparatus that realizes mechanical automatic production.
  • the technical solution adopted by the present invention to solve the technical problem thereof is to provide a heat generating component manufacturing apparatus, comprising: a machine base, a rotating mechanism disposed on the machine base, a clamping mechanism, and a shearing mechanism;
  • the rotating mechanism includes a first bracket that is movable back and forth on the base, a rotating shaft that is disposed on the first bracket and rotatable relative to the first bracket, and axially passes through the center of the rotating shaft a support tube that can move back and forth, and a heating wire clamping assembly for holding the heating wire wire disposed on the rotating shaft;
  • One end of the support tube passing through the rotating shaft is provided with a bobbin on which the heating wire is wound, and the inside of the supporting tube is provided with a through-line passage penetrating to the bobbin, and the cotton thread passes through
  • the support tube extends out of the bobbin;
  • the clamping mechanism is disposed opposite to the heating wire clamping assembly, and the heating wire is clamped away from the other end of the heating wire clamping assembly and the end of the clamping cotton thread passing through the winding pipe;
  • the heating wire clamping assembly rotates around the support tube under the rotation of the rotating shaft, and the heating wire wire is wound on the bobbin to form a spiral heating wire; the supporting tube rotates relative to the rotating wire The shaft movement drives the spiral heating wire out of the winding sleeve to the cotton thread to form a heating wire assembly;
  • the shearing mechanism is located on one side of the heating wire clamping assembly, clamps the heating wire assembly and shears the heating wire assembly from the cotton wire.
  • the heating wire clamping assembly comprises a base fixed on the rotating shaft, a first clamping member fixed on the base, rotatably disposed on the base and opposite to the first clamping member a second clamping member, and a topping assembly that connects and drives the second clamping member to rotate to open and close the hairline hot wire with the first clamping member;
  • the jacking assembly includes a push block that connects the first end of the second clip and is movable back and forth, a top piece connected between the push block and the second end of the second clip; the top piece The top of the push block is inserted into the first clip to limit the movement of the heating wire during winding.
  • the base is provided with a pretensioning assembly, the pretensioning assembly is located at one side of the second clamping member, and pushes the second clamping member to keep the second clamping member in a closed state. Closing clamps the heating wire on one side of the first clip.
  • the second end of the second clamping member is provided with a feeding wheel, and the heating wire is wound onto the bobbin by the feeding wheel.
  • the rotating mechanism further includes a first motor that connects and drives the rotation of the rotating shaft, and a second motor that is connected to the first bracket by a screw; the first motor is disposed on the first bracket; The second motor rotates, and the first bracket is moved back and forth on the base by the screw.
  • the rotating mechanism further includes a fixing bracket that is movable back and forth on the base, a first cylinder that connects and drives the fixing bracket to move back and forth; one end of the supporting tube is fixed on the fixing bracket, The other end passes through the rotating shaft.
  • the clamping mechanism comprises a first finger cylinder, a second finger cylinder, a first clip for clamping one end of the heating wire and a second clip for clamping the cotton thread;
  • the first clip is disposed at the The finger portion of the first finger cylinder is opened and closed with the finger portion;
  • the second clip is disposed on the finger portion of the second finger cylinder, and is opened and closed with the finger portion;
  • the second clip is located on a side of the first clip away from the heating wire clamping assembly.
  • the clamping mechanism further includes a second bracket mounted on the base, the first finger cylinder and the second finger cylinder being disposed on the second bracket.
  • the shearing mechanism comprises a third finger cylinder movable back and forth in a wire feeding direction, a cotton wire clip disposed on a finger portion of the third finger cylinder, and a shearing assembly; the cotton wire clip and the shearing component respectively Synchronizing with the finger portion of the third finger cylinder;
  • the shearing assembly is located on a side of the cotton clip away from the heating wire clamp assembly.
  • the shearing mechanism further includes a second cylinder that connects and drives the third finger cylinder to move back and forth.
  • the invention has the beneficial effects that the spiral winding of the heating wire and the assembly to the cotton thread are completed by the cooperation of the rotating mechanism, the clamping mechanism and the shearing mechanism, thereby realizing the mechanized automatic production of the heating component for the electronic cigarette, and greatly improving Production efficiency and product qualification rate.
  • FIG. 1 is a plan view of a heat generating component manufacturing apparatus according to an embodiment of the present invention.
  • FIG. 2 is a schematic perspective structural view of a heat generating component manufacturing apparatus according to an embodiment of the present invention
  • FIG. 3 is a schematic structural view of the heating wire clamping assembly and the support tube of FIG. 2;
  • Figure 4 is a schematic structural view of the rotating mechanism of Figure 2;
  • Figure 5 is a schematic structural view of the clamping mechanism of Figure 2;
  • Figure 6 is a schematic view showing the structure of the cutting mechanism of Figure 2.
  • a heat generating component manufacturing apparatus may include a base 10, a rotating mechanism 20 provided on the base 10, a clamping mechanism 30, and a shearing mechanism 40.
  • the heating component is used for the electronic cigarette, and comprises a liquid guiding cotton and a spiral heating wire wound around the liquid guiding cotton.
  • the spiral heating wire is formed by winding a straight heating wire, and the liquid guiding cotton is formed by a cotton thread.
  • the rotating mechanism 20 is for clamping the heating wire 1 , winding the heating wire 1 to form a spiral heating wire and sheathing it onto the cotton 2
  • the clamping mechanism 30 is for fixing the heating wire when the heating wire 1 is wound.
  • One end of the wire 1; the shearing mechanism 40 is used to cut the heat generating component formed and assembled from the cotton wire 2 to form a single heat generating component.
  • the base 10 serves as a support structure for the entire manufacturing apparatus, and the respective mechanisms are disposed on the base 10 in a mating relationship.
  • the rotating mechanism 20 may include a first bracket 21, a rotating shaft 22, a support tube 23, and a heating wire clamping assembly 24.
  • the rotating shaft 22 is disposed on the first bracket 21 and rotatable (circumferentially rotated) relative to the first bracket 21, and the first bracket 21 is movable back and forth (horizontal direction) on the base 10, thereby driving the rotating shaft 22 thereon to move back and forth .
  • the support tube 23 passes axially through the central through hole of the rotating shaft 22, and is suspended at the center of the rotating shaft 22, and does not rotate with the rotating shaft 22. Also, the support tube 23 is also movable back and forth in the horizontal direction with respect to the rotating shaft 22.
  • the heating wire clamping unit 24 is for holding the heating wire, is disposed on the rotating shaft 22, and rotates around the support tube 23 as the rotating shaft 22 rotates.
  • one end of the support tube 23 passing through the rotating shaft 22 is provided with a bobbin 231 on which the heating wire 1 is wound.
  • the heating wire clamping unit 24 clamps the heating wire 1
  • the other end of the heating wire 1 is fixed by the clamping mechanism 30; the heating wire clamping assembly 24 rotates around the support tube 23 under the rotation of the rotating shaft 22 .
  • the heating wire 1 is wound around the bobbin 231 to form a spiral heating wire.
  • the first bracket 21 is moved in the direction away from the bobbin 231, and the rotating shaft 22 and the heating wire clamping assembly 24 thereon are also moved, so that the heating wire 1 is wound axially along the bobbin 231. On it.
  • the inside of the support tube 23 is provided with a through-line passage penetrating to the bobbin 231, and the cotton thread 2 extends through the support tube 23 and extends out of the bobbin 231.
  • One end of the cotton thread 2 extending from the bobbin 231 is clamped and fixed by the clamp mechanism 30.
  • the outer circumference of the bobbin 231 is slightly larger than the diameter of the cotton thread 2, and after the spiral heating filament is wound, the support tube 23 moves relative to the rotating shaft 22 in a direction away from the clamping mechanism 30 (also can be understood as moving backward).
  • the spiral heating wire is driven to be detached from the bobbin 231 and sleeved onto the cotton thread 2 to form a heating wire assembly with the portion of the cotton portion where it is located.
  • the heating wire clamping assembly 24 includes a base 241 fixed to the rotating shaft 22, a first clamping member 242 fixed to the base 241, and rotatably disposed on the base 241 and the first clamping member.
  • the second second clamping member 243 is coupled to and urges the second clamping member 243 to rotate to open and close the topping assembly of the hairline hot wire 1 with the first clamping member 242.
  • the base 241 is fixed to the end surface of the rotating shaft 22 by a fastening component such as a bolt.
  • the second clamping member 243 is mounted on the base 241 through the connecting shaft, and can be rotated clockwise or counterclockwise with respect to the base 241 to open and close on the side of the first clamping member 242, and form a clamping heating wire 1 with the first clamping member 242.
  • Clip The clamping passage of the hairline hot wire 1 formed between the first clip 242 and the second clip 243 is perpendicular to the axial direction of the bobbin 231, so that the heating wire 1 is oriented in the direction of the vertical bobbin 231. Wrap it up.
  • the jacking assembly includes a push block 244 that connects the first end of the second clamp member 243 and is movable back and forth, and a top piece 245 that is coupled between the push block 244 and the second end of the second clamp member 243.
  • the top 245 extends away from the top of the push block 244 into the first clip 242, restricting the heating wire 1 from moving during winding.
  • the first clip 242 is a clip perpendicular to the base 241; the first end and the second end of the second clip 243 are connected in an L shape, and the second end is oriented and can be opened and closed at the first One side of the clip 242.
  • the heating wire clamping assembly 24 of FIG. 3 is placed as an example, when the heating wire 1 is clamped between the first clamping member 242 and the second clamping member 243, the cam is placed on the top 245 and the first clamping member 242. There is no movement up and down along the height direction of the first clip 242.
  • a reset spring is further disposed on the top 245 to reset the top 245.
  • the pushing block 244 is moved away from the first clamping member 242, and the second clamping member 243 is pushed to rotate counterclockwise during the movement, and the second end of the second clamping member 243 is away from the first clamping member 242 to form an open state; the pushing block 244 The reverse movement resets the pusher 245 in the direction of the first clip 242, pushing the second end of the second clip 243 to the side of the first clip 242 to clamp the heating wire 1 .
  • the second end of the second clamp member 243 is provided with a feed wheel 246 to reduce the feeding frictional force of the heating wire 1 at the time of winding; the heating wire 1 is wound on the bobbin 231 by the feed wheel 246.
  • the base 241 is further provided with a pretensioning assembly 247 on one side of the second clamping member 243.
  • a pretensioning assembly 247 can include a pretensioning plate and a pretensioning spring secured to the preform plate at one end, the other end of the pretensioning spring abutting the first end of the second clamping member 243.
  • the rotating mechanism 20 further includes a first motor 25 that connects and drives the rotation of the rotating shaft 22, and a second motor 26 that connects the first bracket 21 via a screw (not shown).
  • the first motor 25 is disposed on the first bracket 21, and the output shaft of the first motor 25 is coupled to the rotating shaft 22 via the timing belt 251, thereby driving the rotating shaft 22 to rotate synchronously.
  • the second motor 26 is connected to the first bracket 21 through the screw rod. When the second motor 26 rotates, the first bracket 21 is moved back and forth on the base 10 by the screw rod, and the first bracket 21 moves and also drives the first motor thereon. 25.
  • the rotating shaft 22 moves.
  • the first bracket 21 is further provided with a cylinder and a pull seat.
  • the pull base is connected with the cylinder, and is also connected to the push block 244 through the pull rod, so that a series of actions such as pulling the pull seat and the pull rod drive the push block 244 to move by the cylinder action.
  • the rotating mechanism 20 further includes a fixing bracket 27 that is movable back and forth on the base 10, and a first cylinder 28 that connects and drives the fixed bracket 27 to move back and forth.
  • the fixing bracket 27 is located on one side of the first bracket 21 on the base 10 and on the side of the rotating shaft 22 facing away from the heating wire clamping assembly 24.
  • One end of the support tube 23 is fixed to the fixing bracket 27, and the other end passes through the rotating shaft 22.
  • the first cylinder 28 moves to move the fixing bracket 27 away from the rotating shaft 22, and the spiral heating wire is detached from the bobbin 231 to be put on the cotton thread 2.
  • the clamping mechanism 30 is located on one side of the rotating mechanism 20 corresponding to the heating wire clamping assembly 24, and the clamping mechanism 30 is disposed opposite to the heating wire clamping assembly 24 for facilitating The heating wire 1 is clamped away from the other end of the heating wire clamping assembly 24.
  • the clamping mechanism 30 may include a first finger cylinder 31, a second finger cylinder 32, a first clip 33 for clamping one end of the heating wire 1 and a second clamping cotton 2 Clip 34.
  • the first clip 33 is disposed on the finger portion of the first finger cylinder 31 to open and close with the finger portion; the second clip 34 is disposed on the finger portion of the second finger cylinder 32 to open and close with the finger portion.
  • the first clip 33 is adjacent to the heating wire clamping assembly 24, and the second clamp 34 is located on the side of the first clip 33 away from the heating wire clamping assembly 24.
  • the extended end is clamped and fixed by the first clip 33, and the other end is clamped by the heating wire clamping assembly 24 and can be rotated with the heating wire clamping assembly 24.
  • the second clip 34 clamps and fixes one end of the cotton thread 2 extending from the bobbin 231.
  • the clamping mechanism 30 may further include a second bracket 35 mounted on the base 10.
  • the first finger cylinder 31 and the second finger cylinder 32 are disposed on the second bracket 35, and are fixed to the base 10 by the second bracket 35, And the first finger cylinder 31 and the second finger cylinder 32 are fixed at different positions of the second bracket 35 such that the first clip 33 and the second clip 34 can be staggered to hold different articles.
  • the shearing mechanism 40 is located on one side of the heating wire clamping assembly 21, opposite the clamping mechanism 30, for clamping the heating wire assembly and shearing the heating wire assembly from the cotton thread 2.
  • the shearing mechanism 40 may include a third finger cylinder 41 that is movable back and forth in the wire feeding direction of the cotton thread 2, a cotton thread clamp 42 disposed on the finger portion of the third finger cylinder 41, and a shearing assembly 43.
  • the cotton thread clamp 42 is used to hold the cotton thread 2
  • the shearing assembly 43 is used to cut the formed heat generating component from the cotton thread 2
  • the cotton thread clamp 42 and the shearing assembly 43 are synchronized with the finger portion of the third finger cylinder 41.
  • the shearing assembly 43 is located on a side of the cotton clip 42 remote from the heating wire clamp assembly 14.
  • the modified shearing assembly 43 can include two cutters that can be opened and closed, the two cutters being disposed oppositely to form a shearing clip. After the cotton thread clamp 2 holds the cotton thread 2, the cotton thread 2 is pulled as the third finger cylinder 41 moves away from the heating wire clamping unit 14.
  • the shearing mechanism 40 further includes a second cylinder 44 that connects and drives the third finger cylinder 41 to move back and forth.
  • the second cylinder 44 is a three-shaft cylinder.
  • the third finger cylinder 41 is fixed to the carriage 45, and the carriage 45 is connected to the output shaft of the second cylinder.
  • the output shaft telescopic movement of the second cylinder 44 drives the carriage 45 and its third finger cylinder 41 to move back and forth on the base 10, so that the third finger cylinder 41 and the cotton clip 42 and the shearing assembly 43 thereon are brought close to or away from the heat.
  • Wire clamp assembly 14 is a three-shaft cylinder.
  • the third finger cylinder 41 is fixed to the carriage 45, and the carriage 45 is connected to the output shaft of the second cylinder.
  • the output shaft telescopic movement of the second cylinder 44 drives the carriage 45 and its third finger cylinder 41 to move back and forth on the base 10, so that the third finger cylinder 41 and the cotton clip 42 and the shearing assembly 43 thereon are
  • the cotton thread 2 passes through the support tube 23 and the bobbin 231, and one end of the bobbin 231 is clamped and fixed by the second clip 34 of the chucking mechanism 30.
  • the heating wire 2 is placed in the heating wire holding unit 24, the heating wire holding unit 24 holds one end of the feeding of the heating wire, and the other end is clamped and fixed by the first clip 33 of the clamping mechanism 30.
  • the first motor 25 operates to rotate the rotating shaft 22 through the timing belt 251, and the heating wire clamping unit 24 rotates around the support tube 23, and the heating wire 1 is wound around the bobbin 231 to form a spiral heating wire.
  • the second motor 26 operates to move the first bracket 21 in the direction away from the bobbin 231, and drives the rotating shaft 22 and the heating wire clamping assembly 24 thereon to move the heating wire 1 along the bobbin. 231 is axially wound thereon.
  • the first cylinder 28 operates to move the fixing bracket 27 and the support tube 23 relative to the rotating shaft 22 in the direction away from the clamping mechanism 30, thereby driving the spiral heating wire to be detached from the bobbin 231.
  • the sleeve is wound onto the cotton thread 2 to form a heating wire assembly with the portion of the cotton thread.
  • the third finger cylinder 41 operates to clamp the cotton thread portion of the heating wire assembly, and the second clamp 34 releases the clamping of the cotton thread 2; the second cylinder 44 operates to move the third finger cylinder 41 away from the rotating mechanism.
  • the 20-direction movement (the distance moved has at least one length of the heat-generating component), while the cotton wire clip 42 pulls the heating wire assembly out, and the cotton thread clamp 42 releases the clamp.
  • the second cylinder 44 is reset to move the third finger cylinder 41 toward the rotating mechanism 20, the cotton clip 42 holds the cotton thread 2 again, and the heat generating component is pulled to the side of the shearing assembly 43 by the pulling, and the cotton clip 42 holds the cotton thread 2 At the same time, the shearing assembly 43 also operates to cut the heat generating component from the cotton thread 2 to complete the mechanized manufacturing of the heat generating component.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Yarns And Mechanical Finishing Of Yarns Or Ropes (AREA)

Abstract

La présente invention concerne un dispositif de fabrication d'élément chauffant comprenant un cadre (10), un mécanisme rotatif (20), un mécanisme de serrage (30) et un mécanisme de cisaillement (40) disposés sur le cadre (10) ; le mécanisme rotatif (20) comprend un premier support (21), un arbre rotatif (22) disposé sur le premier support (21), un tube de support (23) traversant axialement un trou traversant central de l'arbre rotatif (22), et un ensemble de serrage de fil chauffant (24) disposé sur l'arbre rotatif (22) ; le tube de support (23) est pourvu d'une bobine (231), l'intérieur du tube de support (23) est pourvu d'un canal de passage de fil, un fil de coton (2) s'étend à travers le tube de support (23) et s'étire hors de la bobine (231) ; le mécanisme de serrage (30) est disposé à l'opposé de l'ensemble de serrage de fil chauffant (24), serrant le fil chauffant (1) et le fil de coton (2) ; l'ensemble de serrage de fil chauffant (24) se met en rotation autour du tube de support (23) sous l'effet de la rotation de l'arbre rotatif (22), enroulant le fil chauffant (1) sur la bobine (231) pour former un fil chauffant en spirale ; le tube de support (23) se déplace par rapport à l'arbre rotatif (22) pour entraîner le fil chauffant en spirale à l'opposé de la bobine (231) vers le fil de coton (2), formant un ensemble fil chauffant ; le mécanisme de cisaillement (40) serre l'ensemble fil chauffant et cisaille l'ensemble fil chauffant à partir du fil de coton (2). La production automatique mécanique d'un ensemble chauffant est réalisée.
PCT/CN2018/078816 2018-03-13 2018-03-13 Dispositif de fabrication d'élément chauffant Ceased WO2019173963A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2018/078816 WO2019173963A1 (fr) 2018-03-13 2018-03-13 Dispositif de fabrication d'élément chauffant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2018/078816 WO2019173963A1 (fr) 2018-03-13 2018-03-13 Dispositif de fabrication d'élément chauffant

Publications (1)

Publication Number Publication Date
WO2019173963A1 true WO2019173963A1 (fr) 2019-09-19

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PCT/CN2018/078816 Ceased WO2019173963A1 (fr) 2018-03-13 2018-03-13 Dispositif de fabrication d'élément chauffant

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Country Link
WO (1) WO2019173963A1 (fr)

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103618190A (zh) * 2013-12-03 2014-03-05 昂纳信息技术(深圳)有限公司 一种电子烟绕线设备及绕线方法
CN203722036U (zh) * 2013-12-03 2014-07-16 昂纳信息技术(深圳)有限公司 一种电子烟绕线设备
US20140270730A1 (en) * 2013-03-14 2014-09-18 R.J. Reynolds Tobacco Company Atomizer for an aerosol delivery device formed from a continuously extending wire and related input, cartridge, and method
CN104161308A (zh) * 2014-09-04 2014-11-26 昂纳自动化技术(深圳)有限公司 电子烟雾化器发热模块
CN204159793U (zh) * 2014-09-09 2015-02-18 惠州市华业机械制造有限公司 一种电子烟发热管自动绕线机
CN205386700U (zh) * 2015-12-26 2016-07-20 深圳市林正电子有限公司 发热丝焊接及缠绕设备
US20170013882A1 (en) * 2014-03-07 2017-01-19 Kimree Hi-Tech Inc. Electronic cigarette provided with accumulated e-liquid removal function, and method therefor
CN206525545U (zh) * 2014-10-31 2017-09-29 惠州市吉瑞科技有限公司深圳分公司 一种电热丝绕线装置
CN206629989U (zh) * 2014-10-31 2017-11-14 惠州市吉瑞科技有限公司深圳分公司 一种电热丝绕线装置

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20140270730A1 (en) * 2013-03-14 2014-09-18 R.J. Reynolds Tobacco Company Atomizer for an aerosol delivery device formed from a continuously extending wire and related input, cartridge, and method
CN103618190A (zh) * 2013-12-03 2014-03-05 昂纳信息技术(深圳)有限公司 一种电子烟绕线设备及绕线方法
CN203722036U (zh) * 2013-12-03 2014-07-16 昂纳信息技术(深圳)有限公司 一种电子烟绕线设备
US20170013882A1 (en) * 2014-03-07 2017-01-19 Kimree Hi-Tech Inc. Electronic cigarette provided with accumulated e-liquid removal function, and method therefor
CN104161308A (zh) * 2014-09-04 2014-11-26 昂纳自动化技术(深圳)有限公司 电子烟雾化器发热模块
CN204159793U (zh) * 2014-09-09 2015-02-18 惠州市华业机械制造有限公司 一种电子烟发热管自动绕线机
CN206525545U (zh) * 2014-10-31 2017-09-29 惠州市吉瑞科技有限公司深圳分公司 一种电热丝绕线装置
CN206629989U (zh) * 2014-10-31 2017-11-14 惠州市吉瑞科技有限公司深圳分公司 一种电热丝绕线装置
CN205386700U (zh) * 2015-12-26 2016-07-20 深圳市林正电子有限公司 发热丝焊接及缠绕设备

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