WO2016123761A1 - 电连接组件组装设备 - Google Patents

电连接组件组装设备 Download PDF

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Publication number
WO2016123761A1
WO2016123761A1 PCT/CN2015/072225 CN2015072225W WO2016123761A1 WO 2016123761 A1 WO2016123761 A1 WO 2016123761A1 CN 2015072225 W CN2015072225 W CN 2015072225W WO 2016123761 A1 WO2016123761 A1 WO 2016123761A1
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WO
WIPO (PCT)
Prior art keywords
insulating ring
assembly
positioning
array
electrode
Prior art date
Application number
PCT/CN2015/072225
Other languages
English (en)
French (fr)
Inventor
刘秋明
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/CN2015/072225 priority Critical patent/WO2016123761A1/zh
Priority to CN201590001248.8U priority patent/CN208144417U/zh
Publication of WO2016123761A1 publication Critical patent/WO2016123761A1/zh

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    • 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

Definitions

  • the utility model relates to the field of electronic cigarette manufacturing, in particular to an electrical connecting component assembly device.
  • E-cigarettes are a new type of electronic product that has the same appearance as ordinary cigarettes and the same taste as cigarettes, but e-cigarettes are healthier and more environmentally friendly than traditional cigarettes.
  • the electronic cigarette atomizes the smoke liquid containing nicotine and essence into a particle output through an atomizing core. E-cigarettes do not contain tar and other harmful components in ordinary cigarettes, nor do they produce second-hand smoke.
  • the electronic cigarette includes an electrical connection assembly including a copper member, an insulating ring and an electrode which are sequentially nested from the outside to the inside, wherein the copper member is respectively connected to the battery assembly and the atomizing core, and the electrode and the battery assembly respectively It is connected to the atomizing core to form a loop before the battery assembly and the atomizing core.
  • the utility model provides an electrical connection component assembly device, which can improve the assembly efficiency of the electrical connection component.
  • the utility model provides an electrical connection assembly assembly device, comprising:
  • a metal member fixing assembly including an array of metal member positioning structures and an insulating ring fixing assembly including an array of insulating ring positioning structures, each of the metal member positioning structures for fixing a metal member in a hollow cylindrical shape
  • Each of the insulating ring positioning structures in the array of insulating ring positioning structures is used for fixing an insulating ring;
  • the metal piece fixing assembly and the insulating ring fixing assembly stacked in parallel are laid flat on the base, and the metal piece positioning structure array and the insulating ring fixing component in the metal piece fixing assembly One-to-one correspondence of the array of insulating ring positioning structures;
  • the pressure plate is located above the base, and the power mechanism is configured to control the platen to move downwards, so that when the pressure plate is pressed against the base, the platen is placed
  • the power mechanism is configured to control the platen to move downwards, so that when the pressure plate is pressed against the base, the platen is placed
  • Each of the insulating ring positioning structure arrays on the base Inserting the inner side of the metal member fixed on the corresponding metal member positioning structure, so that the insulating ring on each of the insulating ring positioning structures can be embedded inside the metal member.
  • each of the metal member positioning structures is specifically a positioning bracket, the positioning bracket includes a concentric outer ring and an inner ring, and Forming an annular groove between the outer ring and the inner ring;
  • the metal piece fixing assembly further includes an upper pressing plate and a lower pressing plate, wherein the upper pressing plate and the lower pressing plate press the positioning ring array in the middle;
  • the upper platen includes a first through hole array corresponding to the positioning ring array, and an inner peripheral wall of each of the first through holes and a corresponding positioning ring Alignment of the rings;
  • the lower pressing plate includes a second through hole array corresponding to the positioning ring array, and an inner peripheral wall of each of the second through holes and a corresponding positioning ring Alignment of the rings;
  • the annular groove is used for fixing a metal member such that one end of the metal member is embedded in the annular groove from the first through hole of the upper platen, and the other end extends out of the first through hole of the upper platen.
  • the electrical connection assembly assembly device wherein the insulation ring fixing assembly further comprises an insulation ring fixing plate;
  • Each of the insulating ring positioning structures in the array of insulating ring positioning structures is specifically an insulating ring positioning pin fixed on the insulating ring fixing plate, the insulating ring positioning pin includes a bearing surface and is disposed in the middle of the bearing surface Conical structure of the area;
  • the insulating ring positioning pin is used for fixing an insulating ring, such that the insulating ring can be sleeved outside the tapered structure and one end of the insulating ring abuts on the bearing surface.
  • the electrical connection assembly assembly device wherein the electrical connection assembly assembly device further comprises a sleeve pressing plate, the sleeve pressing plate comprising a third through hole array;
  • the base is further configured to place the sleeve pressing plate, the insulating ring plate and the insulating ring positioning assembly stacked in parallel, wherein the insulating ring plate is specifically an integrally formed insulating ring array, and the insulating ring array and the The insulating ring positioning pin arrays on the insulating ring fixing component are in one-to-one correspondence, and each of the insulating ring arrays is sleeved on a tapered structure of the corresponding insulating ring positioning nails on the sleeve pressing plate The third through hole array and the insulating ring positioning nail array on the insulating ring positioning component are in one-to-one correspondence;
  • the electrical connection assembly assembly apparatus further includes a displacement adjustment mechanism coupled to the power mechanism, the displacement adjustment mechanism for adjusting a distance at which the power mechanism moves the pressure plate up and down such that the pressure When the plate is pressed against the sleeve pressing plate, each of the insulating ring positioning nail arrays can be embedded in the corresponding third through hole, so that each insulating ring on the insulating ring plate is The insulating ring plate is detached and sleeved on the tapered structure of the corresponding insulating ring positioning nail.
  • the electrical connection assembly assembly device wherein the electrical connection assembly assembly device further comprises a sleeve pressing plate, the sleeve pressing plate comprising a third through hole array;
  • the sleeve pressing plates are stacked in parallel on a side of the metal piece fixing assembly facing away from the insulating ring fixing assembly, and the third through hole array on the sleeve pressing plate and the metal parts in the metal piece fixing assembly are positioned
  • the structure arrays are in one-to-one correspondence, such that when the pressing plate is pressed against the sleeve pressing plate, an area of the sleeve pressing plate other than the third through hole array is pressed against the metal piece fixing assembly to position the insulating ring
  • Each of the insulating ring positioning structures in the array of structures is inserted inside the metal member fixed to the corresponding metal member positioning structure.
  • the electrical connection assembly assembly device wherein the electrical connection assembly assembly device further comprises an electrode fixing assembly, the electrode fixing assembly comprising an array of electrode positioning structures, each of the electrode positioning structure arrays being used for Fix one electrode;
  • the base is further configured to place the sleeve pressing plate, the metal piece fixing assembly and the electrode fixing assembly which are sequentially stacked in parallel, wherein each metal piece positioning structure of the metal piece fixing assembly is fixed with a metal piece, and An insulating ring is embedded in each of the metal members, and the array of electrode positioning structures in the electrode fixing assembly and the array of positioning structures of the metal members are in one-to-one correspondence;
  • the electrical connection assembly assembly apparatus further includes a displacement adjustment mechanism coupled to the power mechanism, the displacement adjustment mechanism for adjusting a distance at which the power mechanism moves the pressure plate up and down such that the pressure plate is pressed against the base
  • a displacement adjustment mechanism coupled to the power mechanism, the displacement adjustment mechanism for adjusting a distance at which the power mechanism moves the pressure plate up and down such that the pressure plate is pressed against the base
  • the electrical connection assembly assembly device wherein the electrode fixing assembly further comprises an electrode fixing plate;
  • Each of the positioning structures of the electrode positioning structure is specifically an electrode positioning pin fixed on the electrode fixing plate, and the electrode positioning pin comprises a bearing surface and a tapered structure disposed at an intermediate portion of the bearing surface;
  • the electrode is in the shape of a hollow cylinder, and the electrode positioning pin is used for fixing one electrode, so that the electrode can be sleeved outside the tapered structure of the electrode positioning nail and one end of the electrode is abutted on the bearing surface of the electrode positioning nail. on.
  • the electrical connection assembly assembly apparatus wherein the electrical connection assembly assembly apparatus further includes a support surface, the power mechanism and the pressure plate are respectively located at two sides of the support surface, and the power mechanism passes through the The support surface is connected to the pressure plate;
  • At least one through hole is vertically penetrated through the support surface, and a guide shaft perpendicular to the pressure plate is fixedly disposed on the pressure plate corresponding to the through hole, and the guide shaft passes through the through hole, so that the power is
  • the guide shaft penetrates the through hole back and forth to ensure that the pressure plate can move vertically up and down.
  • the electrical connection assembly assembly apparatus wherein the electrical connection assembly assembly apparatus is provided with two switches, and the power mechanism is activated when the two switches are simultaneously pressed.
  • the electrical connection assembly assembly apparatus wherein the power mechanism is specifically a booster cylinder.
  • the utility model has the following advantages:
  • the metal component fixing component can be fixed with a plurality of metal components at the same time, and the insulating ring fixing component can be fixed with a plurality of insulating rings at the same time, and the pressure plate is driven by the power mechanism to fix the metal component fixing component.
  • the plurality of metal members are simultaneously pressed against the plurality of insulating rings on the insulating ring fixing component, so that each insulating ring can be embedded inside the corresponding metal piece; thus, the assembly efficiency of the electrical connecting component can be improved, thereby reducing the electronic cigarette Time cost and labor cost.
  • FIG. 1 is a cross-sectional structural view showing an embodiment of an electrical connection assembly assembly device of the present invention
  • FIG. 2 is a schematic structural view of an embodiment of a metal component fixing assembly in an electrical connection assembly assembly device of the present invention
  • FIG. 3 is a schematic structural view of an embodiment of a metal member of the present invention.
  • FIG. 4 is a schematic structural view of an embodiment of a metal member positioning structure in an electrical connection assembly assembly device of the present invention
  • FIG. 5 is a schematic structural view of an embodiment of an insulating ring fixing assembly in an electrical connection assembly assembly device of the present invention
  • FIG. 6 is a schematic structural view of an embodiment of an insulating ring of the present invention.
  • FIG. 7 is a schematic structural view of an embodiment of an insulation ring positioning structure in an electrical connection assembly assembly device of the present invention.
  • FIG. 8 is a schematic structural view of a metal member fixing assembly and an insulating ring fixing assembly in a working period of the electrical connection assembly assembly device of the present invention
  • Figure 9 is a partial structural view showing the metal member fixing assembly and the insulating ring fixing assembly when the insulating ring fixing assembly is pressed into the metal member fixing assembly;
  • FIG. 10 is a schematic structural view of a sleeve pressing plate and an insulating ring fixing assembly in a working period of the electrical connecting component assembly device of the present invention
  • FIG. 11 is a schematic structural view of an embodiment of an electrode fixing assembly in an electrical connection assembly assembly device of the present invention.
  • FIG. 12 is a schematic structural view of an embodiment of an electrode of the present invention.
  • FIG. 13 is a schematic structural view of an embodiment of an electrode positioning structure in an electrical connection assembly assembly device of the present invention.
  • FIG. 14 is a schematic structural view of a sleeve pressing plate, a metal member fixing assembly and an electrode fixing assembly in a working period of the electrical connecting component assembly device of the present invention
  • Fig. 15 is a partial structural view showing the electrode fixing assembly and the metal member fixing assembly when the electrode fixing assembly is pressed into the metal member fixing assembly.
  • the utility model discloses an electrical connection component assembly device, which can improve the assembly efficiency of the electrical connection component.
  • FIG. 1 is a cross-sectional structural view of an embodiment of an electrical connection assembly assembly device of the present invention.
  • the electrical connection assembly assembly apparatus includes a metal member fixing assembly (not shown), an insulating ring fixing assembly (not shown), a base 3, a power mechanism 4, and a pressure plate 5.
  • the metal piece fixing assembly includes an array of metal piece positioning structures, wherein the metal piece positioning structure array comprises a plurality of metal piece positioning structures, and each of the metal piece positioning structures is used for fixing a metal piece in a hollow cylindrical shape.
  • the metal piece is a copper piece.
  • the above is only The examples of the metal parts are not limited.
  • the insulating ring fixing assembly includes an array of insulating ring positioning structures, wherein the insulating ring positioning structure array comprises a plurality of insulating ring positioning structures, and each insulating ring positioning structure is used for fixing an insulating ring.
  • the metal piece positioning structure array in the assembly has a one-to-one correspondence with the insulating ring positioning structure array in the insulating ring fixing component, so that the metal piece on the metal piece positioning structure array and the insulating ring on the insulating ring fixing component have a one-to-one correspondence.
  • the pressure plate 5 is connected to the power mechanism 4, and the pressure plate 5 and the power mechanism 4 are located above the base 3.
  • the power mechanism 4 is configured to control the pressure plate 5 to move up and down, so that when the pressure plate 5 is pressed against the base 3, each of the insulating ring positioning structure arrays placed on the base 3 is insulated.
  • the positioning structure is inserted into the inner side of the metal piece fixed on the corresponding metal piece positioning structure, so that the insulating ring on each of the insulating ring positioning structures can be embedded inside the metal piece.
  • the power mechanism 4 is specifically a booster cylinder.
  • the metal component fixing component can be fixed with a plurality of metal components at the same time, and the insulating ring fixing component can be fixed with a plurality of insulating rings at the same time, and the pressure plate is driven by the power mechanism to fix the plurality of metal components on the metal component fixing component. Simultaneously pressing a plurality of insulating rings on the insulating ring fixing component, so that each insulating ring can be embedded inside the corresponding metal piece; thus, the assembly efficiency of the electrical connecting component can be improved, thereby reducing the time cost and labor cost of the electronic cigarette. .
  • FIG. 2 is a schematic structural view of an embodiment of a metal component fixing assembly in an electrical connection assembly assembly device of the present invention.
  • each of the metal piece positioning structures 111 in the metal piece positioning structure array 11 in the metal piece fixing component 1 is specifically a positioning bracket.
  • FIG. 3 is a schematic structural view of an embodiment of a metal member according to the present invention
  • FIG. 4 is an embodiment of a metal member positioning structure in the electrical connection assembly assembly device of the present invention. Schematic.
  • the metal member 10 in the embodiment is annular, and the inner side wall of the metal member 10 has an annular card base 101 protruding from the central axis of the metal member.
  • the annular card stage 101 is used to fix an insulating ring.
  • the positioning bracket 111 includes a concentric outer ring 1111 and an inner ring 1112.
  • the edge of one side of the inner ring 1112 extends outward and is connected to the edge of the outer ring 1111, so that the outer ring and the outer ring
  • An annular groove 1113 is formed between the inner rings, and the outer ring 1111 and the inner ring 1112 are respectively an outer side wall and an inner side wall of the annular groove.
  • the metal piece fixing assembly 1 further includes an upper pressing plate 12 and a lower pressing plate 13, and the upper pressing plate 12 and the lower pressing plate 13 press the positioning ring array 11 in the middle to The positioning brackets 111 in the positioning ring array 11 are fixed to each other.
  • the upper pressing plate 12 includes a first through hole array (not labeled) corresponding to the positioning ring array 11 , and each of the first through holes 121
  • the inner peripheral wall is aligned with the outer ring 1111 of the corresponding positioning bracket 111 so that the metal member can be inserted into the positioning bracket 111 through the first through hole 121 of the upper platen 12 when the metal member is fixed on the positioning bracket 111.
  • One end of the metal member 10 fixed in the annular groove 1113 extends outside the first through hole 121 of the upper pressing plate 12.
  • the lower pressing plate 13 includes a second through hole array (not labeled) corresponding to the positioning ring array 11 , and an inner peripheral wall of each of the second through holes 131 Aligning with the inner ring 1112 in the corresponding positioning bracket; so that the insulating ring positioning structure can be inserted into the positioning bracket 111 through the second through hole 131 of the lower pressing plate 13 when the insulating ring is inserted into the inner side of the metal member.
  • a second through hole array (not labeled) corresponding to the positioning ring array 11 , and an inner peripheral wall of each of the second through holes 131 Aligning with the inner ring 1112 in the corresponding positioning bracket; so that the insulating ring positioning structure can be inserted into the positioning bracket 111 through the second through hole 131 of the lower pressing plate 13 when the insulating ring is inserted into the inner side of the metal member.
  • FIG. 5 is a schematic structural view of an embodiment of an insulating ring fixing assembly in an electrical connection assembly assembly device of the present invention.
  • each of the insulating ring positioning structures 211 in the insulating ring positioning structure array 21 of the insulating ring fixing component 2 is specifically an insulating ring positioning pin.
  • FIG. 6 is a schematic structural view of an embodiment of an insulating ring of the present invention
  • FIG. 7 is an embodiment of an insulating ring positioning structure of the electrical connecting component assembling device of the present invention. Schematic.
  • the insulating ring 20 in this embodiment is generally annular, and the outer sidewall of the insulating ring 20 is A first annular projection 201 and a second annular projection 202 are provided with the central axis of the insulating ring as an axis, wherein the height of the first annular projection 201 is smaller than the height of the second annular projection 202.
  • the insulating ring positioning pin 211 includes a bearing surface 2111 and a tapered structure 2112 disposed at an intermediate portion of the bearing surface. Specifically, the insulating ring positioning pin 211 further includes a columnar structure 2113, wherein the bearing surface 2111 is an end surface of the columnar structure 2113.
  • the insulating ring fixing assembly further includes an insulating ring fixing plate 22, and the insulating ring positioning structure array 21 is fixed on the insulating ring fixing plate 22 such that the insulating ring positioning pins in the insulating ring positioning structure array 21 211 can be fixed to each other.
  • the insulating ring positioning pin 211 is configured to fix an insulating ring 20 such that the insulating ring can be sleeved outside the tapered structure 2112 of the insulating ring positioning pin 211 and the insulating ring 20 is adjacent to the second annular protrusion 202. One end is abutted on the bearing surface 2111.
  • FIG. 8 is a structural schematic view of the metal member fixing assembly and the insulating ring fixing assembly during one working period of the electrical connecting component assembly device of the present invention.
  • the metal member fixing assembly 1 and the insulating ring fixing assembly 2 stacked in parallel are laid flat on the base.
  • the insulating ring fixing component 2 to which the insulating ring is fixed is placed on the base 3, and the metal component fixing component 1 to which the metal component is fixed is stacked on the insulating ring fixing component 2, and the positioning ring array in the metal component fixing component 1 is disposed.
  • FIG. 9 is a partial structural view of the metal member fixing assembly and the insulating ring fixing assembly when the insulating ring fixing assembly is pressed into the metal member fixing assembly.
  • the power mechanism controls the pressure plate to move downward by a preset distance to press the metal piece fixing assembly 1 against the insulating ring fixing assembly 2, so that the insulating ring positioning nail 211 in the insulating ring fixing assembly 2 passes through the lower pressing plate 13 of the metal piece fixing assembly 1.
  • the second through hole 131 is formed, and the insulating ring on the insulating ring positioning pin 211 is caught on the ring-shaped card table 101 in the metal member 10 on the positioning bracket 111, wherein the ring-shaped card table 101 in the metal member 10 is embedded in Between the first annular protrusion 201 and the second annular protrusion 202 of the insulating ring 20.
  • the electrical connection assembly assembly apparatus further includes a sleeve pressing plate 6, and the sleeve pressing plate 6 includes a third through hole array 61.
  • the sleeve pressing plate 6 When the electrical connection assembly device inserts the insulating ring 20 into the metal member 10, the sleeve pressing plate 6 is stacked in parallel on a side of the metal member fixing assembly 1 facing away from the insulating ring fixing assembly 2, and the sleeve is pressed.
  • the third through hole array 61 on the board 6 and the metal piece positioning structure array 11 in the metal piece fixing assembly 1 are in one-to-one correspondence, so that when the pressing plate 5 is pressed against the sleeve pressing plate 6, the sleeve pressing plate is further caused A region other than the third via array 61 is pressed against the metal member fixing assembly 1 to insert and fix each of the insulating ring positioning structures 21 in the corresponding metal member.
  • the inner side of the metal member 10 on the positioning structure 111 The inner side of the metal member 10 on the positioning structure 111.
  • the arrangement of the third through hole array 61 on the sleeve pressing plate 6 prevents the insulating ring from being stuck in the metal when the metal member is inserted.
  • FIG. 10 is a structural schematic view of the sleeve pressing plate and the insulating ring fixing assembly during one working period of the electrical connecting component assembly apparatus of the present invention.
  • the electrical connection assembly assembly device further includes a displacement adjustment mechanism 7 (see FIG. 1) connected to the power mechanism 4 for adjusting the distance that the power mechanism 4 moves the pressure plate 5 up and down.
  • the insulating ring plate 30 is specifically an integrally formed insulating ring array 30, and the sleeve pressing plate 6, the insulating ring plate 30 and the insulating ring are sequentially stacked in parallel.
  • the positioning assembly 2 lies flat on the base 3, wherein the insulating ring positioning assembly 2 is placed on the bottommost layer.
  • the insulating ring array 30 and the insulating ring positioning pin array 21 on the insulating ring fixing component 2 are in one-to-one correspondence, and each insulating ring 20 of the insulating ring array 30 is sleeved on the corresponding insulating ring On the tapered structure 2112 of the positioning nail 211, the third through hole array 61 on the sleeve pressing plate 6 and the insulating ring positioning nail array 21 on the insulating ring positioning assembly 2 are in one-to-one correspondence.
  • the displacement adjusting mechanism 7 adjusts the distance that the power mechanism 4 moves the pressing plate 5 up and down, so that when the power mechanism 4 controls the pressing plate 5 to press against the sleeve pressing plate 6, the insulating ring positioning nail array can be made.
  • Each of the insulating ring positioning pins 211 is inserted into the corresponding third through hole 611, so that each of the insulating rings 20 on the insulating ring plate 30 is detached from the insulating ring plate 30 and sleeved in a corresponding insulation.
  • the ring is positioned on the tapered structure 2112 of the nail 211.
  • the electrical connection assembly assembly device further includes an electrode fixing assembly
  • the electrode fixing assembly includes an array of electrode positioning structures including a plurality of electrode positioning structures, each electrode positioning structure for fixing one electrode.
  • the electrical connection assembly assembly apparatus in this embodiment is further configured to simultaneously insert a plurality of electrodes into a plurality of mutually nested metal members and insulating rings such that each of the electrodes is inserted into an insulating ring embedded in the metal member.
  • the base is further configured to place the sleeve pressing plate, the metal piece fixing assembly and the electrode fixing assembly stacked in parallel in sequence, wherein each metal piece positioning structure of the metal piece fixing assembly is fixed with a metal And each of the metal members is embedded with an insulating ring, the electrode positioning structure array in the electrode fixing assembly and the metal piece positioning structure array are in one-to-one correspondence; and the electrode fixing component is placed at the bottom layer.
  • the displacement adjusting mechanism is configured to adjust a distance between the power mechanism to move the pressure plate up and down, so that when the pressure plate is pressed against the base, the sleeve pressing plate can press the metal piece fixing member against the electrode
  • the assembly causes each of the electrodes in the array of electrode positioning structures to be embedded within an insulating ring within the corresponding metal member positioning structure.
  • FIG. 11 is a schematic structural view of an embodiment of an electrode fixing assembly in an electrical connection assembly assembly device of the present invention.
  • each of the electrode positioning structures 811 in the electrode positioning structure array 81 is specifically an electrode positioning pin 811.
  • FIG. 12 is a schematic structural view of an embodiment of an electrode of the present invention
  • FIG. 13 is a schematic structural view of an embodiment of an electrode positioning structure in an electrical connection assembly assembly device of the present invention.
  • the electrode 40 in the embodiment is generally in the shape of a hollow cylinder, and the outer annular wall of the electrode 40 is provided with a first annular protrusion 401 and a second annular protrusion 402 with the central axis of the electrode 40 as an axis.
  • the height of the first annular protrusion 401 is smaller than the height of the second annular protrusion 402.
  • the electrode positioning pin 811 includes a bearing surface 8111 and a tapered structure 8112 disposed at an intermediate portion of the bearing surface 8111. Specifically, the electrode positioning pin 811 further includes a columnar structure 8113, wherein the bearing surface 8111 is an end surface of the columnar structure 8113.
  • the electrode fixing assembly 8 further includes an electrode fixing plate 82, and the electrode positioning nail array 81 is fixed on the electrode fixing plate 82 such that the electrode positioning pins 811 in the electrode positioning nail array 81 can be fixed to each other.
  • the electrode positioning pin 811 is used for fixing one electrode 40, so that the electrode 40 can be sleeved outside the tapered structure 8112 of the electrode positioning pin 811 and one end of the electrode 40 is abutted on the bearing surface 8111 of the electrode positioning pin 811. on.
  • FIG. 14 is a structural schematic view of a sleeve pressing plate, a metal member fixing assembly and an electrode fixing assembly during one working period of the electrical connecting component assembling device of the present invention.
  • the electrical connection assembly device inserts the electrode 40 into the insulating ring 20 in the metal member 10
  • the sleeve pressing plate 6, the metal member fixing assembly 1 and the electrode fixing assembly 8 which are stacked in parallel from top to bottom are laid flat.
  • the electrodes 40 on the electrode fixing assembly 8 are respectively aligned with the insulating rings 20 in the corresponding metal members 10 of the metal member fixing assembly 1.
  • the third through holes 611 of the sleeve pressing plate 6 are aligned with the metal member fixing assembly 1. Corresponding metal parts.
  • FIG. 15 is a partial structural view of the electrode fixing assembly and the metal member fixing assembly when the electrode fixing assembly is pressed into the metal member fixing assembly.
  • the power mechanism 4 controls the pressing plate 5 to move downward by a preset distance to press the sleeve pressing plate 6 against the metal piece fixing assembly 1 such that the electrodes 40 on the electrode fixing assembly 8 pass through the lower pressing plate 13 of the metal piece fixing assembly 1.
  • the two through holes 131 are formed, and the respective electrodes 40 on the respective electrode positioning pins 811 are inserted into the center of the insulating ring 20 in the metal member 10 on the positioning bracket 111, and are interference-fitted in the insulating ring 20.
  • the power mechanism 4 and the pressure plate 5 in the electrical connection assembly assembly device are located above the base 3.
  • the electrical connection assembly assembly device further includes a support surface 9, and the power mechanism 4 and the pressure plate 5 are respectively located at two sides of the support surface 9.
  • the power mechanism is mounted above the support surface 9
  • the pressure plate 5 and the base 3 are fixed below the support surface 9 .
  • the power mechanism 4 is connected to the pressure plate 5 through the support surface 9.
  • At least one through hole 91 is vertically penetrated in the support surface 9 , and a guide shaft 51 perpendicular to the pressure plate 5 is fixedly disposed on the pressure plate 5 corresponding to the through hole 91 , and the guide shaft 51 passes through the guide shaft 51
  • the through hole 91 allows the guide shaft 51 to pass through the through hole 91 back and forth when the power mechanism 4 controls the platen 5 to move up and down. In this way, it can be ensured that the power plate moves up and down in a direction perpendicular to the pressure plate when the power plate is moved.
  • the electrical connection assembly device is provided with two switches 92, and the power mechanism 4 is activated when the two switches 92 are simultaneously pressed.
  • the power mechanism can be activated to avoid work. The danger of the person's hand being pressed during the work of the power mechanism.
  • the electrical connection assembly device of the present invention may also be provided with only one switch, which is not limited herein.

Abstract

一种电连接组件组装设备,包括金属件定位结构阵列(11)的金属件固定组件(1)以及包括绝缘环定位结构阵列(21)的绝缘环固定组件(2);底座(3)(3),平行叠放的金属件固定组件(1)和绝缘环固定组件(2)平放在底座(3)(3)上,且金属件固定组件(1)中的金属件定位结构阵列(11)和绝缘环固定组件(2)中的绝缘环定位结构阵列(21)一一对应;动力机构(4)以及与动力机构(4)的相连的压板(5),压板(5)位于底座(3)上方,动力机构(4)用于控制压板(5)上下移动,使得压板(5)压向底座(3)时,将放置在底座(3)上的绝缘环定位结构阵列(21)中的每一个绝缘环定位结构(211)插入固定在对应的金属件定位结构(111)上的金属件(10)内侧,以使得每一个绝缘环定位结构(211)上的绝缘环(20)能够嵌设在金属件(10)内侧。该电连接组件组装设备能够提高电连接组件的组装效率。

Description

电连接组件组装设备 技术领域
本实用新型涉及电子烟制造领域,特别涉及一种电连接组件组装设备。
背景技术
电子烟是一种新型的电子产品,其与普通的香烟有着相同的外观,以及与香烟相同的味道,但是电子烟相对于传统的香烟更为的健康以及环保。电子烟是通过雾化芯将含有烟碱和香精的烟液雾化成颗粒输出。电子烟中不含普通香烟中的焦油和其他有害成分,也不会产生二手烟。
电子烟中包含有电连接组件,该电连接组件包括从外至内依次嵌套的铜件、绝缘环和电极,其中该铜件分别和电池组件和雾化芯连接,该电极分别和电池组件和雾化芯连接,以使得电池组件和雾化芯之前形成回路。
在生产电子烟中的电连接组件时,常用的做法是由人工手持铜件,并用压入棒将绝缘件和电极依次压入铜件中。这样的效率较低,提高了电子烟的时间成本和人工成本。
实用新型内容
本实用新型提供了一种电连接组件组装设备,能够提高电连接组件的组装效率。
本实用新型提供了一种电连接组件组装设备,包括:
包括金属件定位结构阵列的金属件固定组件以及包括绝缘环定位结构阵列的绝缘环固定组件,所述金属件定位结构阵列中的每一个金属件定位结构用于固定一个呈中空筒状的金属件,所述绝缘环定位结构阵列中的每一个绝缘环定位结构用于固定一个绝缘环;
底座,平行叠放的所述金属件固定组件和所述绝缘环固定组件平放在所述底座上,且所述金属件固定组件中的金属件定位结构阵列和所述绝缘环固定组件中的绝缘环定位结构阵列一一对应;
动力机构以及与所述动力机构的相连的压板,所述压板位于所述底座上方,所述动力机构用于控制所述压板上下移动,使得所述压板压向所述底座时,将放置在所述底座上的所述绝缘环定位结构阵列中的每一个绝缘环定位结构 插入固定在对应的金属件定位结构上的金属件内侧,以使得所述每一个绝缘环定位结构上的绝缘环能够嵌设在所述金属件内侧。
所述的电连接组件组装设备,其中,所述金属件定位结构阵列中的每一个金属件定位结构具体为定位托环,所述定位托环包括同心的外圆环和内圆环,且所述外圆环和所述内圆环之间形成环形凹槽;
所述金属件固定组件还包括上压板和下压板,所述上压板和下压板将所述定位托环阵列压在中间;
所述上压板包括和所述定位托环阵列一一对应的第一通孔阵列,且所述第一通孔阵列中的每一个第一通孔的内周壁和对应的定位托环中的外圆环对齐;
所述下压板包括和所述定位托环阵列一一对应的第二通孔阵列,且所述第二通孔阵列中的每一个第二通孔的内周壁和对应的定位托环中的内圆环对齐;
所述环形凹槽用于固定一个金属件,使得金属件的一端从所述上压板的第一通孔嵌入所述环形凹槽内,另一端延伸出所述上压板的第一通孔外。
所述的电连接组件组装设备,其中,所述绝缘环固定组件还包括绝缘环固定板;
所述绝缘环定位结构阵列中的每一个绝缘环定位结构具体为固定在所述绝缘环固定板上的绝缘环定位钉,所述绝缘环定位钉包括承载面以及设置在所述承载面的中间区域的锥状结构;
所述绝缘环定位钉用于固定一个绝缘环,使得绝缘环可以套设在所述锥状结构外且绝缘环的一端抵持在所述承载面上。
所述的电连接组件组装设备,其中,所述电连接组件组装设备还包括套压板,所述套压板包括第三通孔阵列;
所述底座还用于放置依次平行叠放的所述套压板、绝缘环板和所述绝缘环定位组件,其中所述绝缘环板具体为一体成型的绝缘环阵列,所述绝缘环阵列和所述绝缘环固定组件上的绝缘环定位钉阵列一一对应,且所述绝缘环阵列中的每一个绝缘环套设在与其对应的绝缘环定位钉的锥状结构上,所述套压板上的第三通孔阵列和所述绝缘环定位组件上的绝缘环定位钉阵列一一对应;
所述电连接组件组装设备还包括与所述动力机构相连的位移调节机构,所述位移调节机构用于调节所述动力机构上下移动所述压板的距离,使得所述压 板压向所述套压板时,能够使得所述绝缘环定位钉阵列中的每一个绝缘环定位钉嵌入对应的第三通孔内,进而使得所述绝缘环板上的每一个绝缘环从所述绝缘环板脱落并套设在对应的绝缘环定位钉的锥状结构上。
所述的电连接组件组装设备,其中,所述电连接组件组装设备还包括套压板,所述套压板包括第三通孔阵列;
所述套压板平行叠放在所述金属件固定组件背向所述绝缘环固定组件的一侧,且所述套压板上的第三通孔阵列和所述金属件固定组件中的金属件定位结构阵列一一对应,使得所述压板压向所述套压板时,所述套压板上除所述第三通孔阵列以外的区域压向所述金属件固定组件,以将所述绝缘环定位结构阵列中的每一个绝缘环定位结构插入固定在对应的金属件定位结构上的金属件内侧。
所述的电连接组件组装设备,其中,所述电连接组件组装设备还包括电极固定组件,所述电极固定组件包括电极定位结构阵列,所述电极定位结构阵列中的每一个电极定位结构用于固定一个电极;
所述底座还用于放置依次平行叠放的所述套压板、所述金属件固定组件和电极固定组件,其中所述金属件固定组件中的每个金属件定位结构上固定有金属件,且每个金属件内嵌设有绝缘环,所述电极固定组件中的电极定位结构阵列和所述金属件定位结构阵列一一对应;
所述电连接组件组装设备还包括与所述动力机构相连的位移调节机构,所述位移调节机构用于调节所述动力机构上下移动所述压板的距离,使得所述压板压向所述底座时,能够使得所述电极定位结构阵列中的每一个电极嵌入对应的金属件定位结构内的绝缘环内。
所述的电连接组件组装设备,其中,所述电极固定组件还包括电极固定板;
所述电极定位结构阵列中的每一个定位结构具体为固定在所述电极固定板上的电极定位钉,所述电极定位钉包括承载面以及设置在所述承载面的中间区域的锥状结构;
所述电极呈中空筒状,所述电极定位钉用于固定一个电极,使得电极可以套设在所述电极定位钉的锥状结构外且电极的一端抵持在所述电极定位钉的承载面上。
所述的电连接组件组装设备,其中,所述电连接组件组装设备还包括支撑面,所述动力机构和所述压板分别位于所述支撑面的两侧,且所述动力机构穿过所述支撑面和所述压板相连;
所述支撑面上垂直贯穿有至少一个通孔,所述压板上对应所述通孔处固定设置有垂直所述压板的导轴,且所述导轴穿过所述通孔,使得所述动力机构控制所述压板上下移动时,所述导轴来回贯穿所述通孔,以保证所述压板能够垂直上下移动。
所述的电连接组件组装设备,其中,所述电连接组件组装设备上设置有两个开关,且当所述两个开关同时被按压时所述动力机构启动。
所述的电连接组件组装设备,其中,所述动力机构具体为增压缸。
从以上技术方案可以看出,本实用新型具有以下优点:
本实用新型的电连接组件组装设备中,金属件固定组件可以同时固定有多个金属件,而绝缘环固定组件可以同时固定有多个绝缘环,通过动力机构带动压板,以将金属件固定组件上的多个金属件同时压向绝缘环固定组件上的多个绝缘环,使得每一个绝缘环能够嵌设在对应的金属件内侧;这样,能提高电连接组件的组装效率,进而降低电子烟的时间成本和人力成本。
附图说明
图1为本实用新型中电连接组件组装设备的一个实施例的剖面结构示意图;
图2为本实用新型的电连接组件组装设备中金属件固定组件的一种实施例的结构示意图;
图3为本实用新型的金属件的一种实施例的结构示意图;
图4为本实用新型的电连接组件组装设备中金属件定位结构的一种实施例的结构示意图;
图5为本实用新型的电连接组件组装设备中绝缘环固定组件的一种实施例的结构示意图;
图6为本实用新型的绝缘环的一种实施例的结构示意图;
图7为本实用新型的电连接组件组装设备中绝缘环定位结构的一种实施例的结构示意图;
图8为本实用新型的电连接组件组装设备的一个工作时段内时金属件固定组件和绝缘环固定组件的结构示意图;
图9为将绝缘环固定组件压入金属件固定组件时金属件固定组件和绝缘环固定组件的部分结构示意图;
图10为本实用新型的电连接组件组装设备的一个工作时段内时套压板和绝缘环固定组件的结构示意图;
图11为本实用新型的电连接组件组装设备中电极固定组件的一种实施例的结构示意图;
图12为本实用新型的电极的一种实施例的结构示意图;
图13为本实用新型的电连接组件组装设备中电极定位结构的一种实施例的结构示意图;
图14为本实用新型的电连接组件组装设备的一个工作时段内时套压板、金属件固定组件和电极固定组件的结构示意图;
图15为将电极固定组件压入金属件固定组件时电极固定组件和金属件固定组件的部分结构示意图。
具体实施方式
本实用新型公开了一种电连接组件组装设备,能够提高电连接组件的组装效率。
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,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,都属于本实用新型保护的范围。
请参阅图1,图1为本实用新型中电连接组件组装设备的一个实施例的剖面结构示意图。电连接组件组装设备包括金属件固定组件(图未示)、绝缘环固定组件(图未示)、底座3、动力机构4和压板5。
本实施例中,金属件固定组件包括金属件定位结构阵列,其中该金属件定位结构阵列包括多个金属件定位结构,每一个金属件定位结构用于固定一个呈中空筒状的金属件。具体的,本实施例中,该金属件为铜件。当然,上述仅为 对金属件的举例,并不作限制。
绝缘环固定组件包括绝缘环定位结构阵列,其中该绝缘环定位结构阵列包括多个绝缘环定位结构,每一个绝缘环定位结构用于固定一个绝缘环。
金属件固定组件上固定好金属件,以及绝缘环固定组件上固定好绝缘环后,该金属件固定组件和绝缘环固定组件平行叠放,并平放在底座3上,且所述金属件固定组件中的金属件定位结构阵列和所述绝缘环固定组件中的绝缘环定位结构阵列一一对应,使得金属件定位结构阵列上的金属件和绝缘环固定组件上的绝缘环一一对应。
所述压板5与所述动力机构4的相连,且所述压板5和所述动力机构4位于底座3的上方。所述动力机构4用于控制所述压板5上下移动,使得所述压板5压向所述底座3时,将放置在所述底座3上的所述绝缘环定位结构阵列中的每一个绝缘环定位结构插入固定在对应的金属件定位结构上的金属件内侧,以使得所述每一个绝缘环定位结构上的绝缘环能够嵌设在所述金属件内侧。优选的,所述动力机构4具体为增压缸。
本实施例中,金属件固定组件可以同时固定有多个金属件,而绝缘环固定组件可以同时固定有多个绝缘环,通过动力机构带动压板,以将金属件固定组件上的多个金属件同时压向绝缘环固定组件上的多个绝缘环,使得每一个绝缘环能够嵌设在对应的金属件内侧;这样,能提高电连接组件的组装效率,进而降低电子烟的时间成本和人力成本。
本实施例中,金属件固定组件的结构有多种形式,下面结合图2对金属件固定组件的一种结构进行具体描述。请参阅图2,图2为本实用新型的电连接组件组装设备中金属件固定组件的一种实施例的结构示意图。
本实施例中,所述金属件固定组件1中的金属件定位结构阵列11中的每一个金属件定位结构111具体为定位托环。如图3和图4所示,图3为本实用新型的金属件的一种实施例的结构示意图,图4为本实用新型的电连接组件组装设备中金属件定位结构的一种实施例的结构示意图。
具体的,本实施例中的金属件10呈环状,且所述金属件10的内侧壁上以所述金属件的中心轴为轴凸设有环形卡台101。该环形卡台101用于固定绝缘环。
所述定位托环111包括同心的外圆环1111和内圆环1112,所述内圆环1112一侧的边缘向外延伸并和外圆环1111的边缘相连,使得所述外圆环和所述内圆环之间形成环形凹槽1113,所述外圆环1111和内圆环1112分别为所述环形凹槽的外侧壁和内侧壁。
呈环状的金属件10固定于定位托环111时,所述金属件10的远离环形卡台101一端插入环形凹槽1113内,且所述金属件10与所述环形凹槽1113相匹配,以使得所述金属件10可以固定在所述环形凹槽1113内不动。
如图2所示,本实施例中,所述金属件固定组件1还包括上压板12和下压板13,所述上压板12和下压板13将所述定位托环阵列11压在中间,以将定位托环阵列11中的各定位托环111相互固定。
具体的,所述上压板12包括和所述定位托环阵列11一一对应的第一通孔阵列(图中未标号),且所述第一通孔阵列中的每一个第一通孔121的内周壁和对应的定位托环111中的外圆环1111对齐,以使得金属件固定在定位托环111上时,能够穿过上压板12的第一通孔121来插入到定位托环111的环形凹槽1113内,且固定于环形凹槽1113内的金属件10的一端延伸出所述上压板12的第一通孔121外。
所述下压板13包括和所述定位托环阵列11一一对应的第二通孔阵列(图中未标号),且所述第二通孔阵列中的每一个第二通孔131的内周壁和对应的定位托环中的内圆环1112对齐;以使得绝缘环定位结构将绝缘环插入金属件内侧时,能够穿过下压板13的第二通孔131来插入到定位托环111上的金属件10内。
本实施例中,绝缘环固定组件的结构有多种形式,下面结合图5对绝缘环固定组件的一种结构进行具体描述。请参阅图5,图5为本实用新型的电连接组件组装设备中绝缘环固定组件的一种实施例的结构示意图。
本实施例中,所述绝缘环固定组件2中的绝缘环定位结构阵列21中的每一个绝缘环定位结构211具体为绝缘环定位钉。如图6和图7所示,图6为本实用新型的绝缘环的一种实施例的结构示意图,图7为本实用新型的电连接组件组装设备中绝缘环定位结构的一种实施例的结构示意图。
具体的,本实施例中的绝缘环20总体呈环状,且该绝缘环20的外侧壁上 设有以该绝缘环的中心轴为轴的第一环形凸起201和第二环形凸起202,其中所述第一环形凸起201的高度小于所述第二环形凸起202的高度。
本实施例中,所述绝缘环定位钉211包括承载面2111以及设置在所述承载面的中间区域的锥状结构2112。具体的,所述绝缘环定位钉211还包括柱状结构2113,其中所述承载面2111为所述柱状结构2113的端面。
所述绝缘环固定组件还包括绝缘环固定板22,所述绝缘环定位结构阵列21固定在所述绝缘环固定板22上,以使得所述绝缘环定位结构阵列21中的各绝缘环定位钉211能够相互固定。
所述绝缘环定位钉211用于固定一个绝缘环20,使得绝缘环可以套设在所述绝缘环定位钉211的锥状结构2112外且绝缘环20的靠近所述第二环形凸起202的一端抵持在所述承载面2111上。
如图8所示,图8为本实用新型的电连接组件组装设备的一个工作时段内时金属件固定组件和绝缘环固定组件的结构示意图。
本实施例中,在电连接组件组装设备将绝缘环20插入金属件10时,平行叠放的所述金属件固定组件1和所述绝缘环固定组件2平放在所述底座上。其中,固定有绝缘环的绝缘环固定组件2放置在底座3上,固定有金属件的金属件固定组件1叠放在绝缘环固定组件2上,且金属件固定组件1中的定位托环阵列和绝缘环定位钉阵列一一对应。
如图9所示,图9为将绝缘环固定组件压入金属件固定组件时金属件固定组件和绝缘环固定组件的部分结构示意图。动力机构控制压板向下移动预置距离,以将金属件固定组件1压向绝缘环固定组件2,使得绝缘环固定组件2中的绝缘环定位钉211穿过金属件固定组件1的下压板13上的第二通孔131,且绝缘环定位钉211上的绝缘环卡在定位托环111上的金属件10内的环形卡台101上,其中,金属件10内的环形卡台101嵌在绝缘环20的第一环形凸起201和第二环形凸起202之间。
优选的,如图8所示,电连接组件组装设备还包括套压板6,所述套压板6包括第三通孔阵列61。
在电连接组件组装设备将绝缘环20插入金属件10时,所述套压板6平行叠放在所述金属件固定组件1背向所述绝缘环固定组件2的一侧,且所述套压 板6上的第三通孔阵列61和所述金属件固定组件1中的金属件定位结构阵列11一一对应,使得所述压板5压向所述套压板6时,进而使得所述套压板6上除所述第三通孔阵列61以外的区域压向所述金属件固定组件1,以将所述绝缘环定位结构阵列21中的每一个绝缘环定位结构211插入固定在对应的金属件定位结构111上的金属件10内侧。
这样,即使绝缘环在插入金属件时会延伸出金属件外的情况中,由于套压板6上的第三通孔阵列61的设置,避免了绝缘环无法在套入金属件时无法卡在金属件的环形卡台的情况。
本实施例中,由于套压板的设置,还可以利用电连接组件组装设备来将多个绝缘环分别套设在绝缘环固定组件2上。下面具体说明。请参阅图10,图10为本实用新型的电连接组件组装设备的一个工作时段内时套压板和绝缘环固定组件的结构示意图。本实施例中,所述电连接组件组装设备还包括与所述动力机构4相连的位移调节机构7(参见图1),用于调节所述动力机构4上下移动所述压板5的距离
本实施例中,在获得绝缘环板30后,其中所述绝缘环板30具体为一体成型的绝缘环阵列30,依次平行叠放的所述套压板6、绝缘环板30和所述绝缘环定位组件2平放在底座3上,其中所述绝缘环定位组件2放在最底层。
而且,所述绝缘环阵列30和所述绝缘环固定组件2上的绝缘环定位钉阵列21一一对应,且所述绝缘环阵列中30的每一个绝缘环20套设在与其对应的绝缘环定位钉211的锥状结构2112上,所述套压板6上的第三通孔阵列61和所述绝缘环定位组件2上的绝缘环定位钉阵列21一一对应。
所述位移调节机构7调节所述动力机构4上下移动所述压板5的距离,使得所述动力机构4控制所述压板5压向所述套压板6时,能够使得所述绝缘环定位钉阵列21中的每一个绝缘环定位钉211嵌入对应的第三通孔611内,进而使得所述绝缘环板30上的每一个绝缘环20从所述绝缘环板30脱落并套设在对应的绝缘环定位钉211的锥状结构2112上。
这样,能够同时将多个绝缘环套设在绝缘环固定组件上,能够提高电连接组件的组装效率。
优选的,本实用新型中,电连接组件组装设备还包括电极固定组件,所述 电极固定组件包括电极定位结构阵列,该电极定位结构阵列包括多个电极定位结构,每一个电极定位结构用于固定一个电极。
本实施例中的电连接组件组装设备还用于将多个电极同时套入多个相互嵌套的金属件和绝缘环中,使得每一个电极插入嵌在金属件内的绝缘环内。
具体的,所述底座还用于放置依次平行叠放的所述套压板、所述金属件固定组件和电极固定组件,其中所述金属件固定组件中的每个金属件定位结构上固定有金属件,且每个金属件内嵌设有绝缘环,所述电极固定组件中的电极定位结构阵列和所述金属件定位结构阵列一一对应;且所述电极固定组件放置在最底层。
所述位移调节机构用于调节所述动力机构上下移动所述压板的距离,使得所述压板压向所述底座时,能够使得所述套压板将所述金属件固定件压向所述电极固定组件,进而使得所述电极定位结构阵列中的每一个电极嵌入对应的金属件定位结构内的绝缘环内。
本实施例中,电极固定组件的结构有多种形式,下面结合图9对电极固定组件的一种结构进行具体描述。请参阅图11,图11为本实用新型的电连接组件组装设备中电极固定组件的一种实施例的结构示意图。
本实施例中,所述电极定位结构阵列81中的每一个电极定位结构811具体为电极定位钉811。如图12和图13所示,图12为本实用新型的电极的一种实施例的结构示意图,图13为本实用新型的电连接组件组装设备中电极定位结构的一种实施例的结构示意图。
具体的,本实施例中的电极40总体呈中空筒状,且该电极40的外侧壁上设有以该电极40的中心轴为轴的第一环形凸起401和第二环形凸起402,其中所述第一环形凸起401的高度小于所述第二环形凸起402的高度。
所述电极定位钉811包括承载面8111以及设置在所述承载面8111的中间区域的锥状结构8112。具体的,所述电极定位钉811还包括柱状结构8113,其中所述承载面8111为所述柱状结构8113的端面。
所述电极固定组件8还包括电极固定板82,所述电极定位钉阵列81固定在所述电极固定板82上,以使得所述电极定位钉阵列81中的各电极定位钉811能够相互固定。
所述电极定位钉811用于固定一个电极40,使得电极40可以套设在所述电极定位钉811的锥状结构8112外且电极40的一端抵持在所述电极定位钉811的承载面8111上。
如图14所示,图14为本实用新型的电连接组件组装设备的一个工作时段内时套压板、金属件固定组件和电极固定组件的结构示意图。
本实施例中,在电连接组件组装设备将电极40插入金属件10内的绝缘环20时,从上至下依次平行叠放的套压板6、金属件固定组件1和电极固定组件8平放在所述底座上。其中,电极固定组件8上的各电极40分别对准金属件固定组件1中对应的金属件10内的绝缘环20,套压板6上的各第三通孔611对准金属件固定组件1中对应的金属件。
如图15所示,图15为将电极固定组件压入金属件固定组件时电极固定组件和金属件固定组件的部分结构示意图。
动力机构4控制压板5向下移动预置距离,以将套压板6压向金属件固定组件1,使得电极固定组件8上的各电极40穿过金属件固定组件1的下压板13上的第二通孔131,且各电极定位钉811上的各电极40插入定位托环111上的金属件10内的绝缘环20的中心处,并过盈夹紧在该绝缘环20内。
本实用新型中,电连接组件组装设备中动力机构4和压板5位于底座3的上方。优选的,如图1所示,所述电连接组件组装设备还包括支撑面9,所述动力机构4和所述压板5分别位于所述支撑面9的两侧。具体的,所述动力机构架设在支撑面9的上方,压板5和底座3固定在所述支撑面9的下方。所述动力机构4穿过所述支撑面9和所述压板5相连。
所述支撑面9上垂直贯穿有至少一个通孔91,所述压板5上对应所述通孔91处固定设置有垂直所述压板5的导轴51,且所述导轴51穿过所述通孔91,使得所述动力机构4控制所述压板5上下移动时,所述导轴51在来回贯穿所述通孔91。这样,可以保证动力机构在移动压板时所述压板在垂直于该压板的方向上上下移动。
本实用新型中,优选的,如图1所示,所述电连接组件组装设备上设置有两个开关92,且当所述两个开关92同时被按压时所述动力机构4启动。这样,由于工作人员需用两只手同时去按压两个开关才可以启动动力机构,避免工作 人员的手在动力机构工作的过程中被压到的危险。
当然,本实用新型中的电连接组件组装设备也可以只设置一个开关,在此不作限制。
本说明书中各个实施例采用递进的方式描述,每个实施例重点说明的都是与其他实施例的不同之处,各个实施例之间相同相似部分互相参见即可。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本实用新型。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本实用新型的精神或范围的情况下,在其它实施例中实现。因此,本实用新型将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (10)

  1. 一种电连接组件组装设备,其特征在于,包括:
    包括金属件定位结构阵列的金属件固定组件以及包括绝缘环定位结构阵列的绝缘环固定组件,所述金属件定位结构阵列中的每一个金属件定位结构用于固定一个呈中空筒状的金属件,所述绝缘环定位结构阵列中的每一个绝缘环定位结构用于固定一个绝缘环;
    底座,平行叠放的所述金属件固定组件和所述绝缘环固定组件平放在所述底座上,且所述金属件固定组件中的金属件定位结构阵列和所述绝缘环固定组件中的绝缘环定位结构阵列一一对应;
    动力机构以及与所述动力机构的相连的压板,所述压板位于所述底座上方,所述动力机构用于控制所述压板上下移动,使得所述压板压向所述底座时,将放置在所述底座上的所述绝缘环定位结构阵列中的每一个绝缘环定位结构插入固定在对应的金属件定位结构上的金属件内侧,以使得所述每一个绝缘环定位结构上的绝缘环能够嵌设在所述金属件内侧。
  2. 根据权利要求1所述的电连接组件组装设备,其特征在于,所述金属件定位结构阵列中的每一个金属件定位结构具体为定位托环,所述定位托环包括同心的外圆环和内圆环,且所述外圆环和所述内圆环之间形成环形凹槽;
    所述金属件固定组件还包括上压板和下压板,所述上压板和下压板将所述定位托环阵列压在中间;
    所述上压板包括和所述定位托环阵列一一对应的第一通孔阵列,且所述第一通孔阵列中的每一个第一通孔的内周壁和对应的定位托环中的外圆环对齐;
    所述下压板包括和所述定位托环阵列一一对应的第二通孔阵列,且所述第二通孔阵列中的每一个第二通孔的内周壁和对应的定位托环中的内圆环对齐;
    所述环形凹槽用于固定一个金属件,使得金属件的一端从所述上压板的第一通孔嵌入所述环形凹槽内,另一端延伸出所述上压板的第一通孔外。
  3. 根据权利要求1所述的电连接组件组装设备,其特征在于,所述绝缘环固定组件还包括绝缘环固定板;
    所述绝缘环定位结构阵列中的每一个绝缘环定位结构具体为固定在所述绝缘环固定板上的绝缘环定位钉,所述绝缘环定位钉包括承载面以及设置在所 述承载面的中间区域的锥状结构;
    所述绝缘环定位钉用于固定一个绝缘环,使得绝缘环可以套设在所述锥状结构外且绝缘环的一端抵持在所述承载面上。
  4. 根据权利要求3所述的电连接组件组装设备,其特征在于,所述电连接组件组装设备还包括套压板,所述套压板包括第三通孔阵列;
    所述底座还用于放置依次平行叠放的所述套压板、绝缘环板和所述绝缘环定位组件,其中所述绝缘环板具体为一体成型的绝缘环阵列,所述绝缘环阵列和所述绝缘环固定组件上的绝缘环定位钉阵列一一对应,且所述绝缘环阵列中的每一个绝缘环套设在与其对应的绝缘环定位钉的锥状结构上,所述套压板上的第三通孔阵列和所述绝缘环定位组件上的绝缘环定位钉阵列一一对应;
    所述电连接组件组装设备还包括与所述动力机构相连的位移调节机构,所述位移调节机构用于调节所述动力机构上下移动所述压板的距离,使得所述压板压向所述套压板时,能够使得所述绝缘环定位钉阵列中的每一个绝缘环定位钉嵌入对应的第三通孔内,进而使得所述绝缘环板上的每一个绝缘环从所述绝缘环板脱落并套设在对应的绝缘环定位钉的锥状结构上。
  5. 根据权利要求1所述的电连接组件组装设备,其特征在于,所述电连接组件组装设备还包括套压板,所述套压板包括第三通孔阵列;
    所述套压板平行叠放在所述金属件固定组件背向所述绝缘环固定组件的一侧,且所述套压板上的第三通孔阵列和所述金属件固定组件中的金属件定位结构阵列一一对应,使得所述压板压向所述套压板时,所述套压板上除所述第三通孔阵列以外的区域压向所述金属件固定组件,以将所述绝缘环定位结构阵列中的每一个绝缘环定位结构插入固定在对应的金属件定位结构上的金属件内侧。
  6. 根据权利要求5所述的电连接组件组装设备,其特征在于,所述电连接组件组装设备还包括电极固定组件,所述电极固定组件包括电极定位结构阵列,所述电极定位结构阵列中的每一个电极定位结构用于固定一个电极;
    所述底座还用于放置依次平行叠放的所述套压板、所述金属件固定组件和电极固定组件,其中所述金属件固定组件中的每个金属件定位结构上固定有金属件,且每个金属件内嵌设有绝缘环,所述电极固定组件中的电极定位结构阵 列和所述金属件定位结构阵列一一对应;
    所述电连接组件组装设备还包括与所述动力机构相连的位移调节机构,所述位移调节机构用于调节所述动力机构上下移动所述压板的距离,使得所述压板压向所述底座时,能够使得所述电极定位结构阵列中的每一个电极嵌入对应的金属件定位结构内的绝缘环内。
  7. 根据权利要求6所述的电连接组件组装设备,其特征在于,所述电极固定组件还包括电极固定板;
    所述电极定位结构阵列中的每一个定位结构具体为固定在所述电极固定板上的电极定位钉,所述电极定位钉包括承载面以及设置在所述承载面的中间区域的锥状结构;
    所述电极呈中空筒状,所述电极定位钉用于固定一个电极,使得电极可以套设在所述电极定位钉的锥状结构外且电极的一端抵持在所述电极定位钉的承载面上。
  8. 根据权利要求1所述的电连接组件组装设备,其特征在于,所述电连接组件组装设备还包括支撑面,所述动力机构和所述压板分别位于所述支撑面的两侧,且所述动力机构穿过所述支撑面和所述压板相连;
    所述支撑面上垂直贯穿有至少一个通孔,所述压板上对应所述通孔处固定设置有垂直所述压板的导轴,且所述导轴穿过所述通孔,使得所述动力机构控制所述压板上下移动时,所述导轴来回贯穿所述通孔,以保证所述压板能够垂直上下移动。
  9. 根据权利要求1所述的电连接组件组装设备,其特征在于,所述电连接组件组装设备上设置有两个开关,且当所述两个开关同时被按压时所述动力机构启动。
  10. 根据权利要求1所述的电连接组件组装设备,其特征在于,所述动力机构具体为增压缸。
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