WO2016065597A1 - 一种电热丝绕线装置及电热丝组件的制造方法 - Google Patents

一种电热丝绕线装置及电热丝组件的制造方法 Download PDF

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Publication number
WO2016065597A1
WO2016065597A1 PCT/CN2014/089991 CN2014089991W WO2016065597A1 WO 2016065597 A1 WO2016065597 A1 WO 2016065597A1 CN 2014089991 W CN2014089991 W CN 2014089991W WO 2016065597 A1 WO2016065597 A1 WO 2016065597A1
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WO
WIPO (PCT)
Prior art keywords
heating wire
clamping member
oil guiding
wire
guiding rope
Prior art date
Application number
PCT/CN2014/089991
Other languages
English (en)
French (fr)
Inventor
向智勇
Original Assignee
惠州市吉瑞科技有限公司
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 惠州市吉瑞科技有限公司 filed Critical 惠州市吉瑞科技有限公司
Priority to PCT/CN2014/089991 priority Critical patent/WO2016065597A1/zh
Priority to CN201490001467.1U priority patent/CN206525545U/zh
Priority to US15/068,904 priority patent/US10165798B2/en
Publication of WO2016065597A1 publication Critical patent/WO2016065597A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21FWORKING OR PROCESSING OF METAL WIRE
    • B21F15/00Connecting wire to wire or other metallic material or objects; Connecting parts by means of wire
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/70Manufacture
    • 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
    • B21F3/04Coiling wire into particular forms helically externally on a mandrel or the like
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M11/00Sprayers or atomisers specially adapted for therapeutic purposes
    • A61M11/04Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised
    • A61M11/041Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters
    • A61M11/042Sprayers or atomisers specially adapted for therapeutic purposes operated by the vapour pressure of the liquid to be sprayed or atomised using heaters electrical
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M2207/00Methods of manufacture, assembly or production
    • A61M2207/10Device therefor

Definitions

  • the present invention relates to the field of electronic cigarette technology, and in particular, to a heating wire winding device and a method of manufacturing the heating wire assembly.
  • Electronic cigarettes are a relatively common simulated cigarette electronic product, which mainly includes an atomizer and a battery rod assembly.
  • the battery rod assembly supplies electric energy to the atomizer, causes the heating wire in the atomizer to generate heat, and then atomizes the smoke liquid in the oil guiding rope of the atomizer to emit smoke, thereby achieving the effect of simulating smoke.
  • a heating wire assembly for atomizing the tobacco oil is disposed in the atomizer, and the heating wire on the heating wire assembly is generally wound onto the oil guiding rope by hand.
  • the invention provides a heating wire winding device and a heating wire assembly manufacturing method, which are used for winding a heating wire on an oil guiding rope to improve work efficiency.
  • a first aspect of the invention provides a heating wire winding device comprising: a connecting assembly, a feed assembly and a winding assembly;
  • the connecting component is configured to connect an electronic wire of a first preset length to a heating wire located on a conveying path, the heating wire comprising at least two heating segments for atomizing the smoke oil and a connection for connecting the electronic cigarette power source.
  • a connecting section the heating sections are spaced apart and connected by the connecting section, and the first predetermined length of electronic wires are respectively connected to the connecting segments of the heating wire;
  • the sending component is connected to the connecting component, and is configured to transmit the heating wire connected to the first preset length of the electronic wire to the winding component;
  • the winding assembly includes a first clamping member, a second clamping member, a first rotating member, a second rotating member, a first power unit, a second power unit, and a third clamping member;
  • the first clamping member is disposed opposite to the second clamping member for respectively clamping the oil guiding rope Both ends; the first rotating member is coupled to the first clamping member, the second rotating member is coupled to the second clamping member, the first power unit and the first rotating member The second rotating component is drivingly connected, and the second power device is drivingly connected to the second clamping component;
  • the third clamping member is disposed on the second clamping member and faces the first clamping member for clamping the first predetermined length connected to the free end of the heating wire Electronic line
  • the first power device is configured to drive the first rotating component and the second rotating component to rotate, and the second power device is configured to drive the second clamping component to move along the axial direction of the oil guiding rope ;
  • the first predetermined length of the electronic wire connected to the free end of the heating wire rotates together with the oil guiding rope and moves in a direction away from the first clamping member along the axial direction of the oil guiding rope
  • the heating wire is wound around the oil guiding rope.
  • the winding assembly further includes a cutting member, the cutting member comprising: a first cutting member, a second cutting member, and Three cutting parts;
  • the first cutting member and the second cutting member are both disposed at one end of the second clamping member adjacent to the first clamping member, and the third cutting member is disposed at the second clamping member away from One end of the first clamping member;
  • the first cutting member is configured to: after the third clamping member clamps the first predetermined length of electron lines connected to the free end of the heating wire, the first preset length of electrons The wire is cut away from the heating wire at one end of the third clamping member;
  • the second cutting member is configured to move another first predetermined length of the electron line adjacent to the first predetermined length of the electron line after the electric heating wire is wound on the oil guiding rope Cutting the electric heating wire at one end of the third clamping member;
  • the third cutting member is configured to cut the oil guiding rope after the oil guiding wire wound with the heating wire is transferred to the third cutting member to obtain the second preset length of the oil guiding rope .
  • the third cutting member is provided with a fourth clamping member, a fifth clamping member, and a cutter a first cylinder, a second cylinder, and a third cylinder;
  • the fourth clamping member is disposed opposite to the fifth clamping member for respectively clamping the two ends of the oil guiding wire around which the heating wire is wound;
  • the cutter is disposed on an end surface of the fourth clamping member
  • the first cylinder is coupled to the cutter for pushing the cutter to cut the oil guiding rope;
  • the second cylinder is coupled to the fourth clamping member for driving the fourth clamping member to clamp or open the oil guiding rope;
  • the third cylinder is coupled to the fifth clamping member for driving the fifth clamping member to clamp or open the oil guiding rope.
  • the first cutting component is provided with: a cutter, a fixed block, and a fourth cylinder;
  • One end of the fixing block is connected to the cutter for fixing the cutter
  • the fourth cylinder is coupled to the other end of the fixing block, and is configured to push the fixing block and drive the cutter to cut the first predetermined length of the electron line away from the end of the third clamping member Heating wire.
  • the fixed block is provided with a funnel-shaped notch
  • the funnel-shaped notch is located at an end of the fixed block contacting the heating wire for making the first predetermined length of the electronic wire having a larger diameter than the heating wire
  • the funnel-shaped notch is clamped without contact with the cutter, and the electric heating wire having a smaller diameter than the first predetermined length of the electron wire falls into the funnel-shaped notch and is cut by the cutter.
  • the third clip is provided with a robot, a clamping member, a connecting shaft, a fifth cylinder, a sixth cylinder and a seventh cylinder;
  • the manipulator is configured to send the heating wire connected to the first preset length of electronic wires to the clamping member;
  • the clamping member is rotatably coupled to the connecting shaft
  • the fifth cylinder is coupled to the robot for pushing the robot to move laterally;
  • the sixth cylinder is coupled to the robot for driving the robot to rotate longitudinally;
  • the seventh cylinder is coupled to the robot for driving the robot to clamp or open.
  • connection component is configured There are riveting machines, wire feeding pipes and airflow sources;
  • the riveting machine is configured to rive the electric heating wire with the first preset length of electronic wires
  • One end of the wire feeding tube is fixedly disposed at a riveting portion of the riveting machine for conveying the first preset length of electron wires to the riveting portion;
  • the other end of the wire feeding tube is provided with the airflow source, and the airflow source is used to blow the first preset length of electronic wires from the wire feeding pipe to the riveting point.
  • the device is further fixedly provided with a roller for electrically connecting the heating wire and the first predetermined length of the electronic wire A connection terminal to which connection is made is transmitted to the connection assembly.
  • the apparatus further includes a first tensioner and a second tensioner;
  • the first tensioner is fixedly disposed at one end of the oil guiding rope and connected to the oil guiding rope for controlling the tension of the oil guiding rope;
  • the second tensioner is fixedly disposed at one end of the heating wire and connected to the heating wire for controlling the tension of the heating wire.
  • the second clamping member is provided with a clamping member, a spring, and an eighth cylinder;
  • the clamping member is configured to clamp a free end of the oil guiding rope
  • the eighth cylinder is coupled to the clamping member for pushing the clamping member to open when the second power unit drives the second clamping member to move along the axial direction of the oil guiding rope So that the oil guiding rope is in a relaxed state;
  • the spring is coupled to the clamping member for clamping the oil guiding cord by the elastic potential energy of the spring when the eighth cylinder returns to an initial state.
  • a second aspect of the invention provides a method of manufacturing a heating wire assembly, the electric heating wire assembly comprising an oil guiding rope and an electric heating wire wound around the oil guiding rope, the method comprising:
  • the heating wire Feeding the heating wire in a first predetermined position;
  • the heating wire includes at least two heating segments for atomizing the smoke oil and a connecting portion for connecting the electronic cigarette power source, the heating segments are spaced apart and passed through Connected segments are connected;
  • the first predetermined length of the electronic wire connected to the free end of the heating wire and the pre-clamped oil guiding rope rotate together and move along the axial direction of the oil guiding rope to wind the heating wire On the oil guiding rope.
  • the clamping the first predetermined length of the electronic line connected to the free end of the heating wire further includes :
  • the connecting portion of the free end of the heating wire located at one end of the heat generating section away from the first predetermined position is cut.
  • the electric heating wire is wound on the oil guiding rope and further includes:
  • the oil guiding rope is cut to obtain a second predetermined length of the oil guiding rope.
  • the cutting the oil guiding rope specifically includes:
  • the present invention has the following advantages: the third clamping member is disposed on the second clamping member and faces the first clamping member for clamping and The first predetermined length of the electronic wire connected to the free end of the heating wire; the first power device is configured to drive the first rotating component and the second rotating component to rotate, and the second power device is used for Driving the second clamping member to move along the axial direction of the oil guiding rope; when the first predetermined length of the electronic wire connected to the free end of the heating wire is rotated together with the oil guiding rope The electric heating wire is wound around the oil guiding rope when the axial direction of the oil guiding rope is moved away from the first clamping member. Therefore, the invention not only improves the working efficiency, but also accurately controls the length of the heating wire winding to ensure the quality and service life of the electronic cigarette product.
  • FIG. 1 is a schematic structural view of a preferred embodiment of a heating wire winding device according to the present invention
  • FIG. 2 is a schematic cross-sectional structural view of a preferred embodiment of a heating wire winding device according to the present invention
  • FIG. 3 is a schematic perspective structural view of a preferred embodiment of a heating wire winding device according to the present invention.
  • FIG. 4 is a cross-sectional structural view showing a preferred embodiment of a winding assembly of a heating wire winding device according to the present invention
  • FIG. 5 is a cross-sectional structural view showing a preferred embodiment of a third cutting member of the electric heating wire winding device according to the present invention.
  • FIG. 6 is a cross-sectional structural view showing a preferred embodiment of a first cutting member of the electric heating wire winding device according to the present invention.
  • FIG. 7 is a cross-sectional structural view showing a preferred embodiment of a third clamping member of the electric heating wire winding device according to the present invention.
  • FIG. 8 is a cross-sectional structural view showing a preferred embodiment of a connection assembly of a heating wire winding device according to the present invention.
  • FIG. 9 is a cross-sectional structural view showing a preferred embodiment of a second clamping member of the electric heating wire winding device according to the present invention.
  • FIG. 10 is a schematic flow chart of a method for manufacturing a heating wire assembly according to the present invention.
  • FIG. 11 is another schematic flow chart of a method for manufacturing a heating wire assembly according to the present invention.
  • FIG. 12 is another schematic flow chart of a method for manufacturing a heating wire assembly according to the present invention.
  • FIG. 13 is another schematic flow chart of a method of manufacturing a heating wire assembly according to the present invention.
  • FIG. 1 is a schematic structural view of a preferred embodiment of a heating wire winding device according to the present invention
  • FIG. 2 is a cross-sectional structural view of a preferred embodiment of a heating wire winding device according to the present invention
  • FIG. 4 is a schematic cross-sectional structural view of a winding assembly of the electric heating wire winding device provided by the present invention.
  • the structure of the electric wire automatic winding device will be specifically described in conjunction with the above drawings:
  • Connection assembly 3 delivery assembly 4 and winding assembly 5;
  • the connecting component 3 is configured to connect the first predetermined length of the electronic wire to the heating wire located on the conveying path, wherein the heating wire comprises at least two heating segments for atomizing the tobacco oil and a connection for connecting the electronic cigarette power source. a segment, the heating segments are spaced apart from each other and connected by the connecting segments, and the first predetermined length of the electronic wires are respectively connected to the connecting segments of the heating wires;
  • the delivery assembly 4 is connected to the connection assembly 3 for transmitting the electric heating wire connected to the first predetermined length of the electronic wire to the winding assembly 5;
  • the winding assembly 5 includes a first clamping member 51, a second clamping member 52, a first rotating member 53, a second rotating member 54, a first power unit 55, a second power unit 56, and a third clamping member 57. ;
  • the first clamping member 51 is disposed opposite to the second clamping member 52 for clamping the two ends of the oil guiding rope, respectively;
  • the first rotating member 53 is connected to the first clamping member 51, and the second rotation
  • the member 54 is connected to the second clamping member 52, and the first power unit 55 is drivingly coupled to the first rotating member 53 and the second rotating member 54, and the second power unit 56 and the first unit Two clamping members 52 are drivingly connected;
  • the third clamping member 57 is disposed on the second clamping member 52 and faces the first clamping member 51 for clamping the first predetermined length of electrons connected to the free end of the heating wire. line;
  • the first power unit 55 is configured to drive the first rotating member 53 and the second rotating member 54 to rotate, and the second power unit 56 is configured to drive the second clamping member 52 to move along the axial direction of the oil guiding rope;
  • the electric heating is performed when the first predetermined length of the electronic wire connected to the free end of the heating wire rotates together with the oil guiding rope and moves in a direction away from the first clamping member 51 along the axial direction of the oil guiding rope.
  • the wire is wound around the above-mentioned oil guiding rope.
  • the heating wire includes at least two heating segments for atomizing the tobacco oil and a connecting portion for connecting the electronic cigarette power source, the heating portion and the connecting portion are a heating wire;
  • the first clamping member 51 is Opposite to the second clamping member 52, for clamping the two ends of the oil guiding rope respectively; that is, the first clamping member 51 and the second clamping member 52 are respectively disposed at two ends of the oil guiding rope;
  • the above-mentioned oil guiding rope can be selected from glass fiber wires, and the specific materials are not limited herein.
  • the third clamping member 57 is disposed on the second clamping member 52 and faces the first clamping member 51 for clamping the first end connected to the free end of the heating wire.
  • a predetermined length of the electronic line the first power unit 55 is configured to drive the first rotating member 53 and the second rotating member 54 to rotate, and the second power unit 56 is configured to drive the second clamping member 52 along the The axial movement of the oil guiding rope; the first predetermined length of the electronic wire connected to the free end of the heating wire rotates together with the oil guiding rope and moves away from the first clamping member along the axial direction of the oil guiding rope.
  • the invention not only improves the working efficiency, but also accurately controls the length of the heating wire winding to ensure the quality and service life of the electronic cigarette product.
  • the winding assembly 5 further includes a cutting member, the cutting member comprising: a first cutting member 581, a second cutting member 582 and a third cutting member 583;
  • the first cutting member 581 and the second cutting member 582 are both disposed in the second clamping portion
  • the member 52 is adjacent to one end of the first clamping member 51, and the third cutting member 583 is disposed at an end of the second clamping member 52 away from the first clamping member 51;
  • the first cutting member 581 is configured to move the first predetermined length of the electron line away from the electronic component line of the first predetermined length after the third clamping member 57 clamps the free end of the heating wire. The above-mentioned heating wire of one end of the third clamping member 57 is cut;
  • the second cutting member 582 is configured to move the first predetermined length of the electron line adjacent to the first predetermined length of the electron line away from the third clip after the heating wire is wound on the oil guiding rope. The above-mentioned heating wire at one end of the tight member 57 is cut;
  • the third cutting member 583 is configured to cut the oil guiding rope after the oil guiding wire around which the heating wire is wound, and then to cut the oil guiding rope to obtain the oil guiding rope of a second predetermined length.
  • the third cutting member 583 is provided with a fourth clamping member 5831, a fifth clamping member 5832, a cutter 5833, a first cylinder 5834, a second cylinder 5835, and a third cylinder;
  • the fourth clamping member 5831 is disposed opposite to the fifth clamping member 5832 for clamping the two ends of the oil guiding wire wound with the heating wire respectively;
  • the cutter 5833 is disposed on an end surface of the fourth clamping member 5831;
  • the first cylinder 5834 is connected to the cutter 5833 for pushing the cutter 5833 to cut the oil guiding rope;
  • the second cylinder 5835 is connected to the fourth clamping member 5831 for driving the fourth clamping member 5831 to clamp or open the oil guiding rope;
  • the third cylinder is coupled to the fifth clamping member 5832 for driving the fifth clamping member 5832 to clamp or open the oil guiding rope.
  • the fourth clamping member 5831 is disposed opposite to the fifth clamping member 5832 for clamping the two ends of the oil guiding wire wound with the heating wire, that is, the fourth clamping member 5831.
  • the fifth clamping member 5832 is respectively provided at both ends of the oil guiding wire around which the heating wire is wound.
  • the first cutting member 581 is provided with: a cutter 5811.
  • One end of the fixing block 5812 is connected to the cutter 5811 for fixing the cutter 5811;
  • the fourth cylinder 5813 is connected to the other end of the fixing block 5812, and is configured to push the fixing block 5812 and drive the cutter 5811 to cut the electric wire of the first predetermined length away from the end of the third clamping member 57. .
  • the fixing block 5812 is provided with a funnel-shaped notch
  • the funnel-shaped notch is located at an end of the end of the fixing block 5812 contacting the heating wire, and is configured to clamp the first predetermined length of the electron wire having a larger diameter than the heating wire by the funnel-shaped slot
  • the heating wire which is not in contact with the cutter 5811, and has a smaller diameter than the first predetermined length of the electronic wire, falls into the funnel-shaped notch and is cut by the cutter 5811.
  • the configuration of the second cutting member 582 is identical to the configuration of the first cutting member 581. Since the specific structure of the first cutting member 581 is described in detail, it will not be described herein.
  • the third clamping member 57 is provided with a robot, a clamping member 572, a connecting shaft 573, a fifth cylinder 574, a sixth cylinder 575 and a seventh cylinder 576;
  • the above-mentioned manipulator is used to send the above-mentioned first preset length of electronic wire to the clamping member 572;
  • the clamping member 572 is rotatably coupled to the connecting shaft 573;
  • the fifth cylinder 574 is coupled to the robot to drive the lateral movement of the robot;
  • the sixth cylinder 575 is coupled to the robot to push the longitudinal rotation of the robot;
  • the seventh cylinder 576 is connected to the robot to drive the robot to be clamped or opened.
  • connection assembly 3 is provided with a riveting machine 31, a wire duct 32 and a gas source 33;
  • the riveting machine 31 is configured to rive the electric heating wire with the first predetermined length of the electronic wire;
  • One end of the wire feeding tube 32 is fixedly disposed at the riveting portion of the riveting machine 31 for conveying the first predetermined length of the electronic wire to the riveting portion;
  • the other end of the wire feeder 32 is provided with the airflow source 33, and the airflow source 33 is for blowing the first predetermined length of the electron beam from the wire feeder 32 to the riveting portion.
  • the device is further provided with a drum 6 for transmitting a connection terminal for connecting the heating wire to the first preset length of electronic wires to the connection assembly 3.
  • the above apparatus further includes a first tensioner 7 and a second tensioner 8;
  • the first tensioner 7 is fixedly disposed at one end of the oil guiding rope and connected to the oil guiding rope for controlling the tension of the oil guiding rope;
  • the second tensioner 8 is fixedly disposed at one end of the heating wire and connected to the heating wire for controlling the tension of the heating wire.
  • the second clamping member 52 is provided with a clamping member 521, a spring 522, an eighth cylinder 523;
  • the clamping member 521 is configured to clamp the free end of the oil guiding rope
  • the eighth cylinder 523 is coupled to the clamping member 521 for pushing the clamping member 521 to open when the second power unit 56 drives the second clamping member 52 to move along the axial direction of the oil guiding rope. So that the above-mentioned oil guiding rope is in a relaxed state;
  • the spring 522 is coupled to the clamping member 521 for clamping the oil guiding cord by the elastic potential of the spring 522 when the eighth cylinder 523 is returned to the initial state.
  • an embodiment of a method for manufacturing a heating wire assembly according to an embodiment of the present invention includes:
  • the heating wire includes at least two heating segments for atomizing the tobacco oil and a connecting portion for connecting the electronic cigarette power source, and the heating segments are spaced apart and connected by the connecting portion; the heating segment and The connecting section is a section of heating wire.
  • the first predetermined length of the electronic wire connected to the free end of the heating wire and the pre-clamped oil guiding rope rotate together and move along the axial direction of the oil guiding rope, so that the heating wire is wound around On the oil guide rope.
  • the first predetermined length of the electronic wire connected to the free end of the heating wire and the pre-clamped oil guiding rope are rotated together and moved along the axial direction of the oil guiding rope to make the above
  • the heating wire is wound around the above-mentioned oil guiding rope. Therefore, the invention not only improves the working efficiency, but also accurately controls the length of the heating wire winding to ensure the quality and service life of the electronic cigarette product.
  • another embodiment of a method for manufacturing an electric heating wire assembly according to an embodiment of the present invention includes:
  • the heating wire includes at least two heating segments for atomizing the tobacco oil and a connecting portion for connecting the electronic cigarette power source, and the heating segments are spaced apart and connected by the connecting portion; the heating segment and The connecting section is a section of heating wire.
  • the first predetermined length of the electronic wire is connected to the heating wire located on the conveying path, and the first predetermined length of the electronic wire is respectively connected to the connecting portion of the heating wire;
  • the first predetermined length of the electronic wire connected to the free end of the heating wire and the pre-clamped oil guiding rope rotate together and move along the axial direction of the oil guiding rope, so that the heating wire is wound around On the oil guide rope.
  • the connecting portion located at one end of the heat generating portion away from the first predetermined position is cut off in the free end of the heating wire, so as to wind the heating wire around the oil guiding rope.
  • another embodiment of a method for manufacturing a heating wire assembly according to an embodiment of the present invention includes:
  • the heating wire includes at least two heating segments for atomizing the tobacco oil and a connecting portion for connecting the electronic cigarette power source, and the heating segments are spaced apart and connected by the connecting portion; the heating segment and The connecting section is a section of heating wire.
  • the first predetermined length of the electronic wire is connected to the heating wire located on the conveying path, and the first predetermined length of the electronic wire is respectively connected to the connecting portion of the heating wire;
  • the first predetermined length of the electronic wire connected to the free end of the heating wire and the pre-clamped oil guiding rope rotate together and move along the axial direction of the oil guiding rope, so that the heating wire is wound around On the oil guiding rope;
  • the connecting portion located at an end adjacent to the first predetermined position of the heat generating portion in the free end of the heating wire is cut and wound
  • the oil guiding wire having the above heating wire is conveyed to a second predetermined position to cut the oil guiding rope to obtain the second predetermined length of the oil guiding rope.
  • FIG. 13 another embodiment of a method for manufacturing a heating wire assembly according to an embodiment of the present invention includes:
  • the heating wire includes at least two heating segments for atomizing the tobacco oil and a connecting portion for connecting the electronic cigarette power source, and the heating segments are spaced apart and connected by the connecting portion; the heating segment and The connecting section is a section of heating wire.
  • the first preset length of the electronic wire is connected to the heating wire located on the conveying path, and the first predetermined length of the electronic wire is respectively connected to the connecting portion of the heating wire;
  • the first predetermined length of the electronic wire connected to the free end of the heating wire and the pre-clamped oil guiding rope rotate together, and move along the axial direction of the oil guiding rope, so that the heating wire is wound around On the oil guiding rope;
  • the first end of the oil guiding wire wound with the electric heating wire is obtained by clamping the free end of the oil guiding rope and the connecting end respectively, and cutting the connecting end of the oil guiding rope.

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Abstract

一种电热丝绕线装置及电热丝组件的制造方法,包括:连接组件(3)、送件组件(4)以及绕线组件(5);绕线组件包括第一夹紧部件(51)、第二夹紧部件(52)、第一转动部件(53)、第二转动部件(54)、第一动力装置(55)、第二动力装置(56)、第三夹紧部件(57);第一夹紧部件(51)与第二夹紧部件(52)相对设置;第一转动部件(53)与第一夹紧部件(51)相连,第二转动部件(54)与第二夹紧部件(52)相连,第一动力装置(55)与第一转动部件(53)和第二转动部件(54)传动连接,第二动力装置(56)与第二夹紧部件(52)传动连接;第三夹紧部件(57)设置于第二夹紧部件(52)上,且面对第一夹紧部件(51);当电子线与导油绳一起旋转并沿导油绳的轴向向远离第一夹紧部件(51)的方向运动时,电热丝缠绕在导油绳上。将电热丝缠绕在导油绳上,提高了工作效率。

Description

一种电热丝绕线装置及电热丝组件的制造方法 技术领域
本发明涉及电子烟技术领域,特别涉及一种电热丝绕线装置及电热丝组件的制造方法。
背景技术
电子烟是一种较为常见的仿真香烟电子产品,其主要包括雾化器和电池杆组件。电池杆组件为雾化器提供电能,使雾化器中的电热丝发热,进而将雾化器内导油绳中的烟液雾化以散发烟雾,从而达到仿真烟的效果。
在上述雾化器内设置有用于雾化烟油的电热丝组件,该电热丝组件上的电热丝一般是通过人工缠绕到导油绳上。
通过上述人工将电热丝缠绕在导油绳上的工作效率低下,浪费过多人力,对工厂的生产成本消耗较大。且人工缠绕的电热丝的长度无法准确控制,影响电子烟的产品质量,进而影响电子烟的使用寿命和用户体验。
发明内容
本发明提供了一种电热丝绕线装置及电热丝组件的制造方法,用于将电热丝缠绕在导油绳上,提高工作效率。
本发明的第一方面提供了一种电热丝绕线装置,包括:连接组件、送件组件以及绕线组件;
所述连接组件用于将第一预设长度的电子线与位于输送路径上的电热丝相连,所述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,所述发热段之间间隔设置并通过所述连接段相连,所述第一预设长度的电子线分别连接在所述电热丝的连接段上;
所述送件组件与所述连接组件相连,用于将相连有所述第一预设长度的电子线的所述电热丝传送至所述绕线组件;
所述绕线组件包括第一夹紧部件、第二夹紧部件、第一转动部件、第二转动部件、第一动力装置、第二动力装置、第三夹紧部件;
所述第一夹紧部件与所述第二夹紧部件相对设置,用于分别夹紧导油绳的 两端;所述第一转动部件与所述第一夹紧部件相连,所述第二转动部件与所述第二夹紧部件相连,所述第一动力装置与所述第一转动部件和所述第二转动部件传动连接,所述第二动力装置与所述第二夹紧部件传动连接;
所述第三夹紧部件设置于所述第二夹紧部件上,且面对所述第一夹紧部件,用于夹紧与所述电热丝的自由端相连的所述第一预设长度的电子线;
所述第一动力装置用于带动所述第一转动部件及所述第二转动部件旋转,所述第二动力装置用于带动所述第二夹紧部件沿所述导油绳的轴向运动;
当所述电热丝的自由端相连的所述第一预设长度的电子线与所述导油绳一起旋转并沿所述导油绳的轴向向远离所述第一夹紧部件的方向运动时,所述电热丝缠绕在所述导油绳上。
结合本发明的第一方面,在本发明的第一方面的第一种实现方式中,所述绕线组件还包括切断部件,所述切断部件包括:第一切断部件、第二切断部件以及第三切断部件;
所述第一切断部件和所述第二切断部件均设置于所述第二夹紧部件靠近所述第一夹紧部件的一端,所述第三切断部件设置于所述第二夹紧部件远离所述第一夹紧部件的一端;
所述第一切断部件用于在所述第三夹紧部件夹紧与所述电热丝的自由端相连的所述第一预设长度的电子线后,将所述第一预设长度的电子线远离所述第三夹紧部件的一端的所述电热丝切断;
所述第二切断部件用于在所述电热丝缠绕在所述导油绳上后,将与所述第一预设长度的电子线相邻的另一第一预设长度的电子线远离所述第三夹紧部件的一端的所述电热丝切断;
所述第三切断部件用于在缠绕有所述电热丝的导油绳被传送至所述第三切断部件处后,切断所述导油绳,得到第二预设长度的所述导油绳。
结合本发明的第一方面的第一种实现方式,在本发明的第一方面的第二种实现方式中,所述第三切断部件设置有第四夹紧部件、第五夹紧部件、刀具、第一气缸、第二气缸以及第三气缸;
所述第四夹紧部件与所述第五夹紧部件相对设置,用于分别夹紧所述缠绕有所述电热丝的导油绳的两端;
所述刀具设置于所述第四夹紧部件的端面上;
所述第一气缸与所述刀具连接,用于推动所述刀具切断所述导油绳;
所述第二气缸与所述第四夹紧部件连接,用于带动所述第四夹紧部件夹紧或张开所述导油绳;
所述第三气缸与所述第五夹紧部件连接,用于带动所述第五夹紧部件夹紧或张开所述导油绳。
结合本发明的第一方面的第一种实现方式,在本发明的第一方面的第三种实现方式中,所述第一切断部件设置有:刀具、固定块、第四气缸;
所述固定块的一端与所述刀具连接,用于固定所述刀具;
所述第四气缸连接于所述固定块的另一端,用于推动所述固定块并带动所述刀具切断所述第一预设长度的电子线远离所述第三夹紧部件一端的所述电热丝。
结合本发明的第一方面的第三种实现方式,在本发明的第一方面的第四种实现方式中,所述固定块上设有漏斗状槽口;
所述漏斗状槽口位于所述固定块与所述电热丝接触的一端的端部,用于使与所述电热丝相比直径较大的所述第一预设长度的电子线被所述漏斗状槽口夹住而不与所述刀具接触,与所述第一预设长度的电子线相比直径较小的所述电热丝落入所述漏斗状槽口被所述刀具切断。
结合本发明的第一方面、或第一方面的第一种实现方式、或第一方面的第二种实现方式,在本发明的第一方面的第五种实现方式中,所述第三夹紧部件设置有机械手、夹紧件、连接轴、第五气缸、第六气缸以及第七气缸;
所述机械手用于将所述连接有所述第一预设长度的电子线的电热丝送至所述夹紧件;
所述夹紧件与所述连接轴可旋转连接;
所述第五气缸与所述机械手连接,用于推动所述机械手横向运动;
所述第六气缸与所述机械手连接,用于推动所述机械手纵向旋转;
所述第七气缸与所述机械手连接,用于带动所述机械手夹紧或张开。
结合本发明的第一方面、或第一方面的第一种实现方式、或第一方面的第二种实现方式,在本发明的第一方面的第六种实现方式中,所述连接组件设置有铆接机、送线管及气流源;
所述铆接机用于将所述电热丝与所述第一预设长度的电子线进行铆接;
所述送线管的一端固定设置于所述铆接机的铆接处,用于将所述第一预设长度的电子线输送至所述铆接处;
所述送线管另一端设置有所述气流源,所述气流源用于将所述第一预设长度的电子线从所述送线管吹至所述铆接处。
结合本发明的第一方面,在本发明的第一方面的第七种实现方式中,所述装置还固定设置有滚筒,用于将所述电热丝与所述第一预设长度的电子线进行连接的连接端子传送至所述连接组件。
结合本发明的第一方面,在本发明的第一方面的第八种实现方式中,所述装置还包括第一张力器以及第二张力器;
所述第一张力器固定设置于所述导油绳的一端并与所述导油绳相连,用于控制所述导油绳张力;
所述第二张力器固定设置于所述电热丝的一端并与所述电热丝相连,用于控制所述电热丝张力。
结合本发明的第一方面,在本发明的第一方面的第九种实现方式中,所述第二夹紧部件设置有夹紧件、弹簧、第八气缸;
所述夹紧件用于夹紧所述导油绳的自由端;
所述第八气缸与所述夹紧件连接,用于当所述第二动力装置带动所述第二夹紧部件沿所述导油绳的轴向运动时,推动所述夹紧件张开,以使所述导油绳处于松弛状态;
所述弹簧与所述夹紧件连接,用于当所述第八气缸回到初始状态时,所述夹紧件通过所述弹簧的弹性势能将所述导油绳夹紧。
本发明的第二方面提供了一种电热丝组件的制造方法,所述电热丝组件包括导油绳及缠绕在所述导油绳上的电热丝,该方法包括:
将电热丝沿第一预定位置方向输送;所述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,所述发热段之间间隔设置并通过所述连接段相连;
将第一预设长度的电子线与位于输送路径上的所述电热丝相连,所述第一预设长度的电子线分别连接在所述电热丝的连接段上;
当所述电热丝到达所述第一预定位置后,夹紧与所述电热丝的自由端相连的所述第一预设长度的电子线;
带动所述电热丝的自由端相连的所述第一预设长度的电子线以及预先夹紧的导油绳一起旋转,并沿所述导油绳的轴向运动,以使所述电热丝缠绕在所述导油绳上。
结合本发明的第二方面,在本发明的第二方面的第一种实现方式中,所述夹紧与所述电热丝的自由端相连的所述第一预设长度的电子线后还包括:
切断所述电热丝的自由端中位于所述发热段的远离所述第一预定位置一端的所述连接段。
结合本发明的第二方面、或第二方面的第一种实现方式,在本发明的第二方面的第二种实现方式中,所述电热丝缠绕在导油绳上后还包括:
切断所述电热丝的自由端中位于所述发热段的与所述第一预定位置相邻一端的所述连接段;
将缠绕有所述电热丝的导油绳传送至第二预定位置;
切断所述导油绳,得到第二预设长度的所述导油绳。
结合本发明的第二方面的第二种实现方式,在本发明的第二方面的第三种实现方式中,所述切断所述导油绳具体包括:
分别夹紧所述导油绳的自由端以及连接端;
切断所述导油绳的连接端,得到所述第二预设长度的缠绕有所述电热丝的所述导油绳。
从以上技术方案可以看出,本发明具有以下优点:所述第三夹紧部件设置于所述第二夹紧部件上,且面对所述第一夹紧部件,用于夹紧与所述电热丝的自由端相连的所述第一预设长度的电子线;所述第一动力装置用于带动所述第一转动部件及所述第二转动部件旋转,所述第二动力装置用于带动所述第二夹紧部件沿所述导油绳的轴向运动;当所述电热丝的自由端相连的所述第一预设长度的电子线与所述导油绳一起旋转并沿所述导油绳的轴向向远离所述第一夹紧部件的方向运动时,所述电热丝缠绕在所述导油绳上。因此,本发明不仅提高了工作效率,而且能准确的控制电热丝缠绕的长度以保证电子烟产品的质量及使用寿命。
附图说明
图1为本发明所提供的电热丝绕线装置的一种较佳实施例结构示意图;
图2为本发明所提供的电热丝绕线装置的一种较佳实施例剖面结构示意图;
图3为本发明所提供的电热丝绕线装置的一种较佳实施例立体结构示意图;
图4为本发明所提供的电热丝绕线装置的绕线组件的一种较佳实施例剖面结构示意图;
图5为本发明所提供的电热丝绕线装置的第三切断部件的一种较佳实施例剖面结构示意图;
图6为本发明所提供的电热丝绕线装置的第一切断部件的一种较佳实施例剖面结构示意图;
图7为本发明所提供的电热丝绕线装置的第三夹紧部件的一种较佳实施例剖面结构示意图;
图8为本发明所提供的电热丝绕线装置的连接组件的一种较佳实施例剖面结构示意图;
图9为本发明所提供的电热丝绕线装置的第二夹紧部件的一种较佳实施例剖面结构示意图;
图10为本发明所提供的电热丝组件的制造方法的一个流程示意图;
图11为本发明所提供的电热丝组件的制造方法的另一流程示意图;
图12为本发明所提供的电热丝组件的制造方法的另一流程示意图;
图13为本发明所提供的电热丝组件的制造方法的另一流程示意图。
具体实施方式
为使得本发明的发明目的、特征、优点能够更加的明显和易懂,下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,下面所描述的实施例仅仅是本发明一部分实施例,而非全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
图1为本发明所提供的电热丝绕线装置的一种较佳实施例结构示意图,图2为本发明所提供的电热丝绕线装置的一种较佳实施例剖面结构示意图,图3为本发明所提供的电热丝绕线装置的一种较佳实施例立体结构示意图,图4为本发明所提供的电热丝绕线装置的绕线组件的一种较佳实施例剖面结构示意图,现结合上述附图对该电热丝自动绕线装置的结构作具体说明:
本发明实施例中的电热丝绕线装置,包括:
连接组件3、送件组件4以及绕线组件5;
上述连接组件3用于将第一预设长度的电子线与位于输送路径上的电热丝相连,上述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,上述发热段之间间隔设置并通过上述连接段相连,上述第一预设长度的电子线分别连接在上述电热丝的连接段上;
上述送件组件4与上述连接组件3相连,用于将相连有上述第一预设长度的电子线的上述电热丝传送至上述绕线组件5;
上述绕线组件5包括第一夹紧部件51、第二夹紧部件52、第一转动部件53、第二转动部件54、第一动力装置55、第二动力装置56、第三夹紧部件57;
上述第一夹紧部件51与上述第二夹紧部件52相对设置,用于分别夹紧导油绳的两端;上述第一转动部件53与上述第一夹紧部件51相连,上述第二转动部件54与上述第二夹紧部件52相连,上述第一动力装置55与上述第一转动部件53和上述第二转动部件54传动连接,上述第二动力装置56与上述第 二夹紧部件52传动连接;
上述第三夹紧部件57设置于上述第二夹紧部件52上,且面对上述第一夹紧部件51,用于夹紧与上述电热丝的自由端相连的上述第一预设长度的电子线;
上述第一动力装置55用于带动上述第一转动部件53及上述第二转动部件54旋转,上述第二动力装置56用于带动上述第二夹紧部件52沿上述导油绳的轴向运动;
当上述电热丝的自由端相连的上述第一预设长度的电子线与上述导油绳一起旋转并沿上述导油绳的轴向向远离上述第一夹紧部件51的方向运动时,上述电热丝缠绕在上述导油绳上。
需要说明的是,上述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,该发热段以及连接段为一段电热丝;上述第一夹紧部件51与上述第二夹紧部件52相对设置,用于分别夹紧导油绳的两端;即上述第一夹紧部件51与上述第二夹紧部件52分别设置于该导油绳的两端;上述导油绳可选用玻纤线,具体材质此处不作限制。
本发明实施例中,上述第三夹紧部件57设置于上述第二夹紧部件52上,且面对上述第一夹紧部件51,用于夹紧与上述电热丝的自由端相连的上述第一预设长度的电子线;上述第一动力装置55用于带动上述第一转动部件53及上述第二转动部件54旋转,上述第二动力装置56用于带动上述第二夹紧部件52沿上述导油绳的轴向运动;当上述电热丝的自由端相连的上述第一预设长度的电子线与上述导油绳一起旋转并沿上述导油绳的轴向向远离上述第一夹紧部件51的方向运动时,上述电热丝缠绕在上述导油绳上。因此,本发明不仅提高了工作效率,而且能准确的控制电热丝缠绕的长度以保证电子烟产品的质量及使用寿命。
进一步的,结合图1所示,上述绕线组件5还包括切断部件,上述切断部件包括:第一切断部件581、第二切断部件582以及第三切断部件583;
上述第一切断部件581和上述第二切断部件582均设置于上述第二夹紧部 件52靠近上述第一夹紧部件51的一端,上述第三切断部件583设置于上述第二夹紧部件52远离上述第一夹紧部件51的一端;
上述第一切断部件581用于在上述第三夹紧部件57夹紧与上述电热丝的自由端相连的上述第一预设长度的电子线后,将上述第一预设长度的电子线远离上述第三夹紧部件57的一端的上述电热丝切断;
上述第二切断部件582用于在上述电热丝缠绕在上述导油绳上后,将与上述第一预设长度的电子线相邻的另一第一预设长度的电子线远离上述第三夹紧部件57的一端的上述电热丝切断;
上述第三切断部件583用于在缠绕有上述电热丝的导油绳被传送至上述第三切断部件583处后,切断上述导油绳,得到第二预设长度的上述导油绳。
具体的,结合图5所示,上述第三切断部件583设置有第四夹紧部件5831、第五夹紧部件5832、刀具5833、第一气缸5834、第二气缸5835以及第三气缸;
上述第四夹紧部件5831与上述第五夹紧部件5832相对设置,用于分别夹紧上述缠绕有上述电热丝的导油绳的两端;
上述刀具5833设置于上述第四夹紧部件5831的端面上;
上述第一气缸5834与上述刀具5833连接,用于推动上述刀具5833切断上述导油绳;
上述第二气缸5835与上述第四夹紧部件5831连接,用于带动上述第四夹紧部件5831夹紧或张开上述导油绳;
上述第三气缸与上述第五夹紧部件5832连接,用于带动上述第五夹紧部件5832夹紧或张开上述导油绳。
需要说明的是,上述第四夹紧部件5831与上述第五夹紧部件5832相对设置,用于分别夹紧上述缠绕有上述电热丝的导油绳的两端;即上述第四夹紧部件5831与上述第五夹紧部件5832分别设置于该缠绕有上述电热丝的导油绳的两端。
更具体的,结合图6所示,上述第一切断部件581设置有:刀具5811、 固定块5812、第四气缸5813;
上述固定块5812的一端与上述刀具5811连接,用于固定上述刀具5811;
上述第四气缸5813连接于上述固定块5812的另一端,用于推动上述固定块5812并带动上述刀具5811切断上述第一预设长度的电子线远离上述第三夹紧部件57一端的上述电热丝。
更具体的,上述固定块5812上设有漏斗状槽口;
上述漏斗状槽口位于上述固定块5812与上述电热丝接触的一端的端部,用于使与上述电热丝相比直径较大的上述第一预设长度的电子线被上述漏斗状槽口夹住而不与上述刀具5811接触,与上述第一预设长度的电子线相比直径较小的上述电热丝落入上述漏斗状槽口被上述刀具5811切断。
需要说明的是,上述第二切断部件582的结构与上述第一切断部件581的结构一致,由于对上述第一切断部件581的具体结构作了详细描述,此处不再赘述。
更具体的,结合图7所示,上述第三夹紧部件57设置有机械手、夹紧件572、连接轴573、第五气缸574、第六气缸575以及第七气缸576;
上述机械手用于将上述连接有上述第一预设长度的电子线的电热丝送至上述夹紧件572;
上述夹紧件572与上述连接轴573可旋转连接;
上述第五气缸574与上述机械手连接,用于推动上述机械手横向运动;
上述第六气缸575与上述机械手连接,用于推动上述机械手纵向旋转;
上述第七气缸576与上述机械手连接,用于带动上述机械手夹紧或张开。
进一步的,结合图8所示,上述连接组件3设置有铆接机31、送线管32及气流源33;
上述铆接机31用于将上述电热丝与上述第一预设长度的电子线进行铆接;
上述送线管32的一端固定设置于上述铆接机31的铆接处,用于将上述第一预设长度的电子线输送至上述铆接处;
上述送线管32另一端设置有上述气流源33,上述气流源33用于将上述第一预设长度的电子线从上述送线管32吹至上述铆接处。
进一步的,结合图3所示,上述装置还固定设置有滚筒6,用于将上述电热丝与上述第一预设长度的电子线进行连接的连接端子传送至上述连接组件3。
进一步的,结合图1和图3所示,上述装置还包括第一张力器7以及第二张力器8;
上述第一张力器7固定设置于上述导油绳的一端并与上述导油绳相连,用于控制上述导油绳张力;
上述第二张力器8固定设置于上述电热丝的一端并与上述电热丝相连,用于控制上述电热丝张力。
更具体的,结合图9所示,上述第二夹紧部件52设置有夹紧件521、弹簧522、第八气缸523;
上述夹紧件521用于夹紧上述导油绳的自由端;
上述第八气缸523与上述夹紧件521连接,用于当上述第二动力装置56带动上述第二夹紧部件52沿上述导油绳的轴向运动时,推动上述夹紧件521张开,以使上述导油绳处于松弛状态;
上述弹簧522与上述夹紧件521连接,用于当上述第八气缸523回到初始状态时,上述夹紧件521通过上述弹簧522的弹性势能将上述导油绳夹紧。
为便于更好的实施本发明实施例的电热丝绕线装置,下面还提供用于配合该电热丝绕线装置的电热丝组件的制造方法。
请参阅图10,本发明实施例中电热丝组件的制造方法的一个实施例包括:
1001、将电热丝沿第一预定位置方向输送;
需要说明的是,上述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,上述发热段之间间隔设置并通过上述连接段相连;该发热段以及连接段为一段电热丝。
1002、将第一预设长度的电子线与位于输送路径上的上述电热丝相连,上 述第一预设长度的电子线分别连接在上述电热丝的连接段上;
1003、当上述电热丝到达上述第一预定位置后,夹紧与上述电热丝的自由端相连的上述第一预设长度的电子线;
1004、带动上述电热丝的自由端相连的上述第一预设长度的电子线以及预先夹紧的导油绳一起旋转,并沿上述导油绳的轴向运动,以使上述电热丝缠绕在上述导油绳上。
本发明实施例中,通过带动上述电热丝的自由端相连的上述第一预设长度的电子线以及预先夹紧的导油绳一起旋转,并沿上述导油绳的轴向运动,以使上述电热丝缠绕在上述导油绳上。因此,本发明不仅提高了工作效率,而且能准确的控制电热丝缠绕的长度以保证电子烟产品的质量及使用寿命。
请参阅图11,本发明实施例中电热丝组件的制造方法的另一实施例包括:
1101、将电热丝沿第一预定位置方向输送;
需要说明的是,上述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,上述发热段之间间隔设置并通过上述连接段相连;该发热段以及连接段为一段电热丝。
1102、将第一预设长度的电子线与位于输送路径上的上述电热丝相连,上述第一预设长度的电子线分别连接在上述电热丝的连接段上;
1103、当上述电热丝到达上述第一预定位置后,夹紧与上述电热丝的自由端相连的上述第一预设长度的电子线;
1104、切断上述电热丝的自由端中位于上述发热段的远离上述第一预定位置一端的所述连接段;
1105、带动上述电热丝的自由端相连的上述第一预设长度的电子线以及预先夹紧的导油绳一起旋转,并沿上述导油绳的轴向运动,以使上述电热丝缠绕在上述导油绳上。
本发明实施例中,通过切断上述电热丝的自由端中位于上述发热段的远离上述第一预定位置一端的所述连接段,以便于将上述电热丝缠绕在上述导油绳上。
请参阅图12,本发明实施例中电热丝组件的制造方法的另一实施例包括:
1201、将电热丝沿第一预定位置方向输送;
需要说明的是,上述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,上述发热段之间间隔设置并通过上述连接段相连;该发热段以及连接段为一段电热丝。
1202、将第一预设长度的电子线与位于输送路径上的上述电热丝相连,上述第一预设长度的电子线分别连接在上述电热丝的连接段上;
1203、当上述电热丝到达上述第一预定位置后,夹紧与上述电热丝的自由端相连的上述第一预设长度的电子线;
1204、切断上述电热丝的自由端中位于上述发热段的远离上述第一预定位置一端的所述连接段;
1205、带动上述电热丝的自由端相连的上述第一预设长度的电子线以及预先夹紧的导油绳一起旋转,并沿上述导油绳的轴向运动,以使上述电热丝缠绕在上述导油绳上;
1206、切断上述电热丝的自由端中位于上述发热段的与上述第一预定位置相邻一端的上述连接段;
1207、将缠绕有上述电热丝的导油绳传送至第二预定位置;
1208、切断上述导油绳,得到第二预设长度的上述导油绳。
本发明实施例中,在上述电热丝缠绕在上述导油绳上后,通过切断上述电热丝的自由端中位于上述发热段的与上述第一预定位置相邻一端的上述连接段,并将缠绕有上述电热丝的导油绳传送至第二预定位置,以切断上述导油绳,得到第二预设长度的上述导油绳。
请参阅图13,本发明实施例中电热丝组件的制造方法的另一实施例包括:
1301、将电热丝沿第一预定位置方向输送;
需要说明的是,上述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,上述发热段之间间隔设置并通过上述连接段相连;该发热段以及连接段为一段电热丝。
1302、将第一预设长度的电子线与位于输送路径上的上述电热丝相连,上述第一预设长度的电子线分别连接在上述电热丝的连接段上;
1303、当上述电热丝到达上述第一预定位置后,夹紧与上述电热丝的自由端相连的上述第一预设长度的电子线;
1304、切断上述电热丝的自由端中位于上述发热段的远离上述第一预定位置一端的所述连接段;
1305、带动上述电热丝的自由端相连的上述第一预设长度的电子线以及预先夹紧的导油绳一起旋转,并沿上述导油绳的轴向运动,以使上述电热丝缠绕在上述导油绳上;
1306、切断上述电热丝的自由端中位于上述发热段的与上述第一预定位置相邻一端的上述连接段;
1307、将缠绕有上述电热丝的导油绳传送至第二预定位置;
1308、分别夹紧上述导油绳的自由端以及连接端;
1309、切断上述导油绳的连接端,得到第二预设长度的缠绕有上述电热丝的上述导油绳。
本发明实施例中,通过分别夹紧上述导油绳的自由端以及连接端,并切断上述导油绳的连接端,以得到第二预设长度的缠绕有上述电热丝的上述导油绳。
以上实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的精神和范围。

Claims (14)

  1. 一种电热丝绕线装置,其特征在于,包括:连接组件、送件组件以及绕线组件;
    所述连接组件用于将第一预设长度的电子线与位于输送路径上的电热丝相连,所述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,所述发热段之间间隔设置并通过所述连接段相连,所述第一预设长度的电子线分别连接在所述电热丝的连接段上;
    所述送件组件与所述连接组件相连,用于将相连有所述第一预设长度的电子线的所述电热丝传送至所述绕线组件;
    所述绕线组件包括第一夹紧部件、第二夹紧部件、第一转动部件、第二转动部件、第一动力装置、第二动力装置、第三夹紧部件;
    所述第一夹紧部件与所述第二夹紧部件相对设置,用于分别夹紧导油绳的两端;所述第一转动部件与所述第一夹紧部件相连,所述第二转动部件与所述第二夹紧部件相连,所述第一动力装置与所述第一转动部件和所述第二转动部件传动连接,所述第二动力装置与所述第二夹紧部件传动连接;
    所述第三夹紧部件设置于所述第二夹紧部件上,且面对所述第一夹紧部件,用于夹紧与所述电热丝的自由端相连的所述第一预设长度的电子线;
    所述第一动力装置用于带动所述第一转动部件及所述第二转动部件旋转,所述第二动力装置用于带动所述第二夹紧部件沿所述导油绳的轴向运动;
    当所述电热丝的自由端相连的所述第一预设长度的电子线与所述导油绳一起旋转并沿所述导油绳的轴向向远离所述第一夹紧部件的方向运动时,所述电热丝缠绕在所述导油绳上。
  2. 根据权利要求1所述的电热丝绕线装置,其特征在于,所述绕线组件还包括切断部件,所述切断部件包括:第一切断部件、第二切断部件以及第三切断部件;
    所述第一切断部件和所述第二切断部件均设置于所述第二夹紧部件靠近所述第一夹紧部件的一端,所述第三切断部件设置于所述第二夹紧部件远离所 述第一夹紧部件的一端;
    所述第一切断部件用于在所述第三夹紧部件夹紧与所述电热丝的自由端相连的所述第一预设长度的电子线后,将所述第一预设长度的电子线远离所述第三夹紧部件的一端的所述电热丝切断;
    所述第二切断部件用于在所述电热丝缠绕在所述导油绳上后,将与所述第一预设长度的电子线相邻的另一第一预设长度的电子线远离所述第三夹紧部件的一端的所述电热丝切断;
    所述第三切断部件用于在缠绕有所述电热丝的导油绳被传送至所述第三切断部件处后,切断所述导油绳,得到第二预设长度的所述导油绳。
  3. 根据权利要求2所述的电热丝绕线装置,其特征在于,所述第三切断部件设置有第四夹紧部件、第五夹紧部件、刀具、第一气缸、第二气缸以及第三气缸;
    所述第四夹紧部件与所述第五夹紧部件相对设置,用于分别夹紧所述缠绕有所述电热丝的导油绳的两端;
    所述刀具设置于所述第四夹紧部件的端面上;
    所述第一气缸与所述刀具连接,用于推动所述刀具切断所述导油绳;
    所述第二气缸与所述第四夹紧部件连接,用于带动所述第四夹紧部件夹紧或张开所述导油绳;
    所述第三气缸与所述第五夹紧部件连接,用于带动所述第五夹紧部件夹紧或张开所述导油绳。
  4. 根据权利要求2所述的电热丝绕线装置,其特征在于,所述第一切断部件设置有:刀具、固定块、第四气缸;
    所述固定块的一端与所述刀具连接,用于固定所述刀具;
    所述第四气缸连接于所述固定块的另一端,用于推动所述固定块并带动所述刀具切断所述第一预设长度的电子线远离所述第三夹紧部件一端的所述电热丝。
  5. 根据权利要求4所述的电热丝绕线装置,其特征在于,所述固定块上 设有漏斗状槽口;
    所述漏斗状槽口位于所述固定块与所述电热丝接触的一端的端部,用于使与所述电热丝相比直径较大的所述第一预设长度的电子线被所述漏斗状槽口夹住而不与所述刀具接触,与所述第一预设长度的电子线相比直径较小的所述电热丝落入所述漏斗状槽口被所述刀具切断。
  6. 根据权利要求1至3任一项所述的电热丝自动绕线装置,其特征在于,所述第三夹紧部件设置有机械手、夹紧件、连接轴、第五气缸、第六气缸以及第七气缸;
    所述机械手用于将所述连接有所述第一预设长度的电子线的电热丝送至所述夹紧件;
    所述夹紧件与所述连接轴可旋转连接;
    所述第五气缸与所述机械手连接,用于推动所述机械手横向运动;
    所述第六气缸与所述机械手连接,用于推动所述机械手纵向旋转;
    所述第七气缸与所述机械手连接,用于带动所述机械手夹紧或张开。
  7. 根据权利要求1至3任一项所述的电热丝绕线装置,其特征在于,所述连接组件设置有铆接机、送线管及气流源;
    所述铆接机用于将所述电热丝与所述第一预设长度的电子线进行铆接;
    所述送线管的一端固定设置于所述铆接机的铆接处,用于将所述第一预设长度的电子线输送至所述铆接处;
    所述送线管另一端设置有所述气流源,所述气流源用于将所述第一预设长度的电子线从所述送线管吹至所述铆接处。
  8. 根据权利要求1所述的电热丝绕线装置,其特征在于,所述装置还固定设置有滚筒,用于将所述电热丝与所述第一预设长度的电子线进行连接的连接端子传送至所述连接组件。
  9. 根据权利要求1所述的电热丝绕线装置,其特征在于,所述装置还包括第一张力器以及第二张力器;
    所述第一张力器固定设置于所述导油绳的一端并与所述导油绳相连,用于 控制所述导油绳张力;
    所述第二张力器固定设置于所述电热丝的一端并与所述电热丝相连,用于控制所述电热丝张力。
  10. 根据权利要求1所述的电热丝绕线装置,其特征在于,所述第二夹紧部件设置有夹紧件、弹簧、第八气缸;
    所述夹紧件用于夹紧所述导油绳的自由端;
    所述第八气缸与所述夹紧件连接,用于当所述第二动力装置带动所述第二夹紧部件沿所述导油绳的轴向运动时,推动所述夹紧件张开,以使所述导油绳处于松弛状态;
    所述弹簧与所述夹紧件连接,用于当所述第八气缸回到初始状态时,所述夹紧件通过所述弹簧的弹性势能将所述导油绳夹紧。
  11. 一种电热丝组件的制造方法,所述电热丝组件包括导油绳及缠绕在所述导油绳上的电热丝,其特征在于,包括:
    将电热丝沿第一预定位置方向输送;所述电热丝包括至少两个用于雾化烟油的发热段以及用于连接电子烟电源的连接段,所述发热段之间间隔设置并通过所述连接段相连;
    将第一预设长度的电子线与位于输送路径上的所述电热丝相连,所述第一预设长度的电子线分别连接在所述电热丝的连接段上;
    当所述电热丝到达所述第一预定位置后,夹紧与所述电热丝的自由端相连的所述第一预设长度的电子线;
    带动所述电热丝的自由端相连的所述第一预设长度的电子线以及预先夹紧的导油绳一起旋转,并沿所述导油绳的轴向运动,以使所述电热丝缠绕在所述导油绳上。
  12. 根据权利要求11所述的电热丝组件的制造方法,其特征在于,所述夹紧与所述电热丝的自由端相连的所述第一预设长度的电子线后还包括:
    切断所述电热丝的自由端中位于所述发热段的远离所述第一预定位置一端的所述连接段。
  13. 根据权利要求11或12所述的电热丝组件的制造方法,其特征在于,所述电热丝缠绕在导油绳上后还包括:
    切断所述电热丝的自由端中位于所述发热段的与所述第一预定位置相邻一端的所述连接段;
    将缠绕有所述电热丝的导油绳传送至第二预定位置;
    切断所述导油绳,得到第二预设长度的所述导油绳。
  14. 根据权利要求13所述的电热丝组件的制造方法,其特征在于,所述切断所述导油绳具体包括:
    分别夹紧所述导油绳的自由端以及连接端;
    切断所述导油绳的连接端,得到所述第二预设长度的缠绕有所述电热丝的所述导油绳。
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