Heat shrink tube equipment
By designing a heat shrink tube equipment containing multiple automation components, the problem of low working efficiency of heat shrink tube equipment in the prior art is solved, and automated production and efficient assembly of wire components are realized.
Patent Information
- Application Number
- CN202422082828.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-08-27
AI Technical Summary
The existing heat shrink tube equipment has low working efficiency, and wire processing and heat shrink tube processing require manual operation, resulting in semi-active production and low efficiency.
A heat shrink tube equipment is designed, including wire feeding components, wire peeling components, heat shrink tube components, end-pressing components, baking components, load transfer components, number tube components, end-pressing components, pulling components and baking components. Through the automation and collaboration of these components, the automated production of wire components is realized.
Through automated production processes, the conductors are avoided to assemble heat shrink tubes under artificial action, which significantly improves the working efficiency of heat shrink tube equipment.
Smart Images

Figure CN223045172U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of heat shrinkable tube equipment, in particular to a heat shrinkable tube equipment. Background Technique
[0002] With the development of technology, heat shrinkable tube equipment is applied in industry. A heat shrinkable tube is a multi-functional plastic layer that electricians, engineers and similar professionals can apply to cables.
[0003] In the prior art, the existing heat shrinkable tube equipment includes a wire assembly for terminating wires. However, the processing of wires and heat shrinkable tubes is carried out separately. After wire termination, the terminated wires are assembled with heat shrinkable tubes manually, and then further processed in semi-automatic production, resulting in low working efficiency of the existing heat shrinkable tube equipment. Summary of the Utility Model
[0004] The purpose of the utility model is to provide a heat shrinkable tube equipment. A wire feeding assembly is installed on a frame; the wire feeding assembly is used for feeding wires; a wire stripping assembly is arranged on one side of the wire feeding assembly; a wire processing assembly is used for cutting and stripping wires; a heat shrinkable tube assembly is arranged on one side of the wire stripping assembly; the heat shrinkable tube assembly is used for feeding heat shrinkable tubes; the heat shrinkable tubes are for wires to pass through; a first termination assembly is arranged between the wire stripping assembly and the heat shrinkable tube assembly, and the first termination assembly is used for terminating the wires sleeved with heat shrinkable tubes; a first baking assembly is arranged on one side of the first termination assembly, and the first baking assembly is used for baking the terminated wires, so that the heat shrinkable tubes shrink on the wires under the action of heat; a transfer assembly is installed on the frame, and the transfer assembly transports the wires separated from the wire stripping assembly; a number tube assembly is arranged on one side of the transfer assembly, and the number tube assembly is used for feeding number tubes and sleeving the number tubes on the wires separated from the wire stripping assembly; a second termination assembly is arranged on one side of the number tube assembly, and the second termination assembly is used for secondarily terminating the wires sleeved with number tubes; a tube pulling assembly is arranged on one side of the second termination assembly, and the tube pulling assembly is used for pulling the tubes of the wires after secondary termination to output a wire assembly in a formed state; a second baking assembly is arranged on one side of the tube pulling assembly, and the second baking assembly is used for forming and baking the wires after tube pulling. Based on the wire feeding assembly, the wire stripping assembly, the heat shrinkable tube assembly, the first termination assembly, the first baking assembly, the transfer assembly, the number tube assembly, the second termination assembly, the tube pulling assembly and the second baking assembly, the automatic production of the wire assembly in a formed state is realized, the manual assembly of heat shrinkable tubes for the terminated wires is avoided, and the working efficiency of the heat shrinkable tube equipment is improved.
[0005] To achieve the above object, the utility model provides the following technical solutions:
[0006] A heat shrinkable tube equipment, comprising:
[0007] Frame;
[0008] Wire feeding assembly, installed on the frame; the wire feeding assembly is used to convey wires;
[0009] Wire stripping assembly, arranged on one side of the wire feeding assembly; the wire stripping assembly is used to cut and strip wires;
[0010] Heat shrink tube assembly, arranged on one side of the wire stripping assembly; the heat shrink tube assembly is used to convey heat shrink tubes; the heat shrink tubes are for wires to pass through;
[0011] First terminal crimping assembly, arranged between the wire stripping assembly and the heat shrink tube assembly, the first terminal crimping assembly is used to crimp the wires sleeved with heat shrink tubes;
[0012] First baking assembly, arranged on one side of the first terminal crimping assembly, the first baking assembly is used to bake the wires after terminal crimping, so that the heat shrink tubes shrink on the wires under the action of heat;
[0013] Transfer assembly, installed on the frame, the transfer assembly conveys the wires separated from the wire stripping assembly;
[0014] Number tube assembly, arranged on one side of the transfer assembly, the number tube assembly is used to convey number tubes and sleeve the number tubes on the wires separated from the wire stripping assembly;
[0015] Second terminal crimping assembly, arranged on one side of the number tube assembly, the second terminal crimping assembly is used to perform secondary terminal crimping on the wires sleeved with number tubes;
[0016] Tube pulling assembly, arranged on one side of the second terminal crimping assembly, the tube pulling assembly is used to pull the tubes of the wires after secondary terminal crimping to output the wire assembly in a formed state;
[0017] Second baking assembly, arranged on one side of the tube pulling assembly, the second baking assembly is used to perform forming baking on the wires after tube pulling.
[0018] Optionally, the wire stripping assembly, the heat shrink tube assembly, the first terminal crimping assembly, and the first baking assembly are arranged adjacent to each other and face the wire feeding area of the frame;
[0019] The wire feeding assembly conveys the wires to the wire feeding area, the wire feeding assembly is rotatably connected to the frame and sequentially passes through the wire stripping assembly, the heat shrink tube assembly, the first terminal crimping assembly, and the first baking assembly;
[0020] The wire feeding assembly, the wire stripping assembly, the heat shrink tube assembly, the first terminal crimping assembly, and the first baking assembly form a set of wire devices.
[0021] Optionally, there are multiple sets of the wire devices, and the multiple sets of wire devices are arranged along the length direction of the frame;
[0022] The wire feeding assembly includes a first bracket, multiple conveying wheels, a second bracket, and multiple calibration wheels;
[0023] Both the first bracket and the second bracket are installed on the frame;
[0024] The multiple conveying wheels are installed on the first bracket and are arranged alternately, and are used for conveying wires;
[0025] The multiple calibration wheels are installed on the second bracket and are arranged alternately, and the multiple calibration wheels are used for calibrating the conveyed wires.
[0026] Optionally, the wire stripping assembly includes a third bracket, multiple cutting members, and multiple stripping members;
[0027] The third bracket is installed on the frame;
[0028] The multiple cutting members are telescopically connected to the third bracket and cut the wires conveyed by the wire feeding assembly;
[0029] The multiple stripping members are telescopically connected to the third bracket and strip the outer skins of the wires conveyed by the wire feeding assembly.
[0030] Optionally, the heat shrink tube assembly includes a fourth bracket, a heat shrink tube feeding member, and a heat shrink tube clamping member;
[0031] The fourth bracket is installed on the frame;
[0032] The heat shrink tube feeding member is installed on the fourth bracket and is used for feeding the heat shrink tube;
[0033] The heat shrink tube clamping member is movably installed on the fourth bracket and is used for clamping off the heat shrink tube, and the wire passes through the heat shrink tube;
[0034] The first terminal crimping assembly includes a fifth bracket and a first terminal crimping member;
[0035] The fifth bracket is installed on the frame;
[0036] The first terminal crimping member is telescopically installed on the fifth bracket and is used for crimping the wire sleeved with the heat shrink tube;
[0037] The first baking assembly includes a sixth bracket and a first baking member;
[0038] The sixth bracket is installed on the frame;
[0039] The first baking component is installed on the sixth bracket and is used for baking the wire after end crimping.
[0040] Optionally, the transfer component includes a transfer base and a first clamping member;
[0041] The transfer base is movably connected to the frame and moves along the length direction of the frame;
[0042] The first clamping member is installed on the transfer base and is used for clamping the wire separated from the wire feeding component; the first clamping member sequentially passes through the number tube component, the second end crimping component, the tube pulling component, and the second baking component as the transfer base moves.
[0043] Optionally, the number tube component includes a seventh bracket and a number tube conveyor;
[0044] The seventh bracket is installed on the frame;
[0045] The number tube conveyor is installed on the seventh bracket and is used for conveying the number tube, and the number tube is sleeved on the wire separated from the wire stripping component.
[0046] Optionally, the second end crimping component includes an eighth bracket and a second end crimping member;
[0047] The eighth bracket is installed on the frame;
[0048] The second end crimping member is telescopically installed on the eighth bracket and is used for performing secondary end crimping on the wire sleeved with the number tube.
[0049] Optionally, the tube pulling component includes a ninth bracket and a tube pulling member;
[0050] The ninth bracket is installed on the frame;
[0051] The tube pulling member is movably installed on the ninth bracket and is used for pulling the tube of the wire after secondary end crimping.
[0052] Optionally, the second baking component includes a tenth bracket and a second baking member;
[0053] The tenth bracket is installed on the frame;
[0054] The second baking member is installed on the tenth bracket and is used for performing forming baking on the wire after tube pulling.
[0055] Compared with the prior art, the beneficial effects of the present utility model are:
[0056] The utility model provides a heat shrinkable tube device. A wire feeding assembly is installed on a frame; the wire feeding assembly is used for conveying a wire; a wire stripping assembly is arranged on one side of the wire feeding assembly; a wire processing assembly is used for cutting and stripping the wire; a heat shrinkable tube assembly is arranged on one side of the wire stripping assembly; the heat shrinkable tube assembly is used for conveying a heat shrinkable tube; the heat shrinkable tube is for the wire to pass through; a first terminal crimping assembly is arranged between the wire stripping assembly and the heat shrinkable tube assembly, and the first terminal crimping assembly is used for crimping the wire sleeved with the heat shrinkable tube; a first baking assembly is arranged on one side of the first terminal crimping assembly, and the first baking assembly is used for baking the wire after crimping, so that the heat shrinkable tube shrinks on the wire under the action of heat; a transfer assembly is installed on the frame, and the transfer assembly conveys the wire separated from the wire stripping assembly; a number tube assembly is arranged on one side of the transfer assembly, and the number tube assembly is used for conveying a number tube and sleeving the number tube on the wire separated from the wire stripping assembly; a second terminal crimping assembly is arranged on one side of the number tube assembly, and the second terminal crimping assembly is used for performing secondary crimping on the wire sleeved with the number tube; a tube pulling assembly is arranged on one side of the second terminal crimping assembly, and the tube pulling assembly is used for pulling the tube of the wire after secondary crimping to output a formed wire assembly; a second baking assembly is arranged on one side of the tube pulling assembly, and the second baking assembly is used for performing forming baking on the wire after tube pulling. Based on the wire feeding assembly, the wire stripping assembly, the heat shrinkable tube assembly, the first terminal crimping assembly, the first baking assembly, the transfer assembly, the number tube assembly, the second terminal crimping assembly, the tube pulling assembly and the second baking assembly, the automatic production of the formed wire assembly is realized, the manual assembly of the heat shrinkable tube for the wire after crimping is avoided, and the working efficiency of the heat shrinkable tube device is improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0057] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creative efforts.
[0058] In order to more completely understand the present application and its beneficial effects, the following will be described in conjunction with the drawings. Among them, the same reference numerals in the following description represent the same parts.
[0059] Figure 1 FIG. 1 shows a schematic diagram of a heat shrinkable tube device according to an embodiment of the present application.
[0060] Figure 2 FIG. 2 shows a schematic diagram of another state of the heat shrinkable tube device according to an embodiment of the present application.
[0061] Figure 3 FIG. 3 shows a schematic diagram of the wire feeding assembly of the heat shrinkable tube device according to an embodiment of the present application
[0062] Figure 4 Shows a schematic diagram of a wire stripping assembly of a heat shrinkable tube device according to an embodiment of the present application.
[0063] Figure 5 Shows a schematic diagram of a heat shrinkable tube assembly of a heat shrinkable tube device according to an embodiment of the present application.
[0064] Figure 6 Shows a schematic diagram of a first crimping assembly of a heat shrinkable tube device according to an embodiment of the present application.
[0065] Figure 7 Shows a schematic diagram of a first baking assembly of a heat shrinkable tube device according to an embodiment of the present application.
[0066] Figure 8 Shows a schematic diagram of a transfer assembly of a heat shrinkable tube device according to an embodiment of the present application.
[0067] Figure 9 Shows a schematic diagram of a number tube assembly of a heat shrinkable tube device according to an embodiment of the present application.
[0068] Figure 10 Shows a schematic diagram of a second crimping assembly of a heat shrinkable tube device according to an embodiment of the present application.
[0069] Figure 11 Shows a schematic diagram of a tube pulling assembly of a heat shrinkable tube device according to an embodiment of the present application.
[0070] Figure 12 Shows a schematic diagram of a second baking assembly of a heat shrinkable tube device according to an embodiment of the present application. Figure 13 Shows a schematic diagram of a conversion assembly of a heat shrinkable tube device according to an embodiment of the present application.
[0071] Reference numerals
[0072] 100, heat shrinkable tube device;
[0073] 10, frame;
[0074] 20, wire feeding assembly; 21, first bracket; 22, conveying wheel; 23, second bracket; 24, calibration wheel; 25, first motor; 26, guide rail;
[0075] 30, wire stripping assembly; 31, third bracket; 32, cutting member; 321, first cylinder; 322, cutting arm; 33, stripping member; 331, second motor; 332, screw drive module;
[0076] 40. Heat shrinkable tube assembly; 41. Fourth bracket; 42. Pipe feeding member; 421. Third motor; 422. First synchronous pulley drive module; 423. First pipe feeding wheel; 43. Pipe clamping member; 431. Second cylinder; 432. Pipe clamping arm
[0077] 50. First terminal crimping assembly; 51. Fifth bracket; 52. First terminal crimping member
[0078] 60. First baking assembly; 61. Sixth bracket; 62. First baking member
[0079] 70. Transfer assembly; 71. Transfer base; 72. First clamping member; 73. Moving module
[0080] 80. Number tube assembly; 81. Seventh bracket; 82. Number tube conveying member; 821. Fourth motor; 822. Second synchronous pulley drive module; 823. Second pipe feeding wheel; 83. Cutting member; 831. Third cylinder; 832. Cutting arm
[0081] 90. Second terminal crimping assembly; 91. Eighth bracket; 92. Second terminal crimping member
[0082] 110. Tube pulling assembly; 111. Ninth bracket; 112. Tube pulling member
[0083] 120. Second baking assembly; 121. Tenth bracket; 122. Second baking member
[0084] 130. Conversion assembly; 131. Rotating member; 132. Second clamping member Detailed implementation manners
[0085] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present application.
[0086] Please refer to the attached Figures 1 to 2 , an embodiment of the present application provides a heat shrinkable tube device 100. The heat shrinkable tube device 100 is used for the automated production of wire assemblies. The heat shrinkable tube device 100 includes a frame 10, a wire feeding assembly 20, a wire stripping assembly 30, a heat shrinkable tube assembly 40, a first terminal crimping assembly 50, a first baking assembly 60, a transfer assembly 70, a number tube assembly 80, a second terminal crimping assembly 90, a tube pulling assembly 110, and a second baking assembly 120.
[0087] Please refer to the attached Figures 1 to 2, in the embodiment of the present application, the frame 10 serves as a support component of the heat shrink tube device 100, and the frame 10 is used to support the wire feeding component 20, the wire stripping component 30, the heat shrink tube component 40, the first terminal crimping component 50, the first baking component 60, the transfer component 70, the number tube component 80, the second terminal crimping component 90, the tube pulling component 110, and the second baking component 120.
[0088] Please refer to the appendix Figure 1 and 3 , in the embodiment of the present application, the wire feeding component 20 is arranged on the upper side of the frame 10, and the wire feeding component 20 is installed on the frame 10; the wire feeding component 20 is used to convey the wire so that the wire can be transferred through the wire feeding component 20.
[0089] Please refer to the appendix Figure 1 and 3 , at this time, the wire feeding component 20 includes a first bracket 21, a plurality of conveying wheels 22, a second bracket 23, and a plurality of calibration wheels 24; both the first bracket 21 and the second bracket 23 are installed on the frame 10; the plurality of conveying wheels 22 are rotatably installed on the first bracket 21 and are arranged alternately to facilitate adjusting the position of the plurality of conveying wheels 22 relative to the first bracket 21. The plurality of conveying wheels 22 are used to convey the wire so that the plurality of conveying wheels 22 can drive the wire to be transferred during rotation. The plurality of calibration wheels 24 are installed on the second bracket 23 and are arranged alternately. The plurality of calibration wheels 24 are used to calibrate the conveyed wire, ensuring the position accuracy of the output wire.
[0090] Please refer to the appendix Figure 1 and 3 , wherein, a first motor 25 is provided between the second bracket 23 and the frame 10. The fixed end of the first motor 25 is connected to the frame 10, and the output end of the first motor 25 is connected to the second bracket 23 and drives the second bracket 23 to rotate so that the wire output by the plurality of calibration wheels 24 can sequentially pass through the wire stripping component 30, the heat shrink tube component 40, the first terminal crimping component 50, and the first baking component 60.
[0091] Please refer to the appendix Figure 1 and 3 , in addition, a guide rail 26 is provided between the second bracket 23 and the first motor 25. The fixed end of the guide rail 26 is connected to the first motor 25, and the moving end of the guide rail 26 is connected to the second bracket 23 and drives the second bracket 23 to move so that the wire output by the plurality of calibration wheels 24 can be telescoped.
[0092] Please refer to the appendix Figure 1 and 4 , in the embodiment of the present application, the wire stripping component 30 is arranged at the rear side of the wire feeding component 20; the wire stripping component 30 is used to cut and strip the wire so that the wire can be subjected to cutting treatment and stripping treatment through the wire processing component.
[0093] Please refer to the appendix Figure 1 and 4 At this time, the wire stripping assembly 30 includes a third bracket 31, a plurality of cutting members 32 and a plurality of stripping members 33; the third bracket 31 is installed on the frame 10; the plurality of cutting members 32 are telescopically connected to the third bracket 31 to facilitate adjusting the positions of the plurality of cutting members 32 relative to the third bracket 31, and the plurality of cutting members 32 cut the wire conveyed by the wire feeding assembly 20 to achieve wire cutting; the plurality of stripping members 33 are telescopically connected to the third bracket 31 to facilitate adjusting the positions of the plurality of stripping members 33 relative to the third bracket 31, and the plurality of stripping members 33 strip the outer skin of the wire conveyed by the wire feeding assembly 20 to achieve stripping of the outer skin of the wire, so as to expose the copper wire of the wire.
[0094] Please refer to the appendix Figure 1 and 4 Among them, a second motor 331 and a lead screw drive module 332 are provided between the plurality of stripping members 33 and the third bracket 31. The second motor 331 is arranged in the vertical direction. The fixed end of the second motor 331 is connected to the third bracket 31, the output end of the second motor 331 is connected to one end of the lead screw drive module 332, and the other end of the lead screw drive module 332 is connected to the plurality of stripping members 33, so that the plurality of stripping members 33 can be telescoped relative to the third bracket 31 through the second motor 331 and the lead screw drive module 332, thereby facilitating the plurality of stripping members 33 to strip the outer skin of the wire during the telescoping process.
[0095] Please refer to the appendix Figure 1 and 4 In addition, the cutting member 32 includes a first air cylinder 321 and two cutting arms 322. The two cutting arms 322 are arranged oppositely. The fixed end of the first air cylinder 321 is connected to the third bracket 31, and the output end of the first air cylinder 321 is connected to the two cutting arms 322 and drives the two cutting arms 322 to swing, so as to facilitate the two cutting arms 322 to cut the wire during the swinging process.
[0096] Please refer to the appendix Figure 1 and 5 In the embodiment of the present application, the heat shrinkable tube assembly 40 is arranged on the left side of the wire stripping assembly 30; the heat shrinkable tube assembly 40 is used to convey the heat shrinkable tube; the heat shrinkable tube is provided for the wire to pass through, so that the heat shrinkable tube can be sleeved on the wire through the heat shrinkable tube assembly 40, thereby facilitating the heat shrinkable tube to be on the outer surface of the wire.
[0097] Please refer to the appendix Figure 1 and 5, at this time, the heat shrinkable tube assembly 40 includes a fourth bracket 41, a tube feeding member 42 and a tube clamping member 43; the fourth bracket 41 is installed on the frame 10; the tube feeding member 42 is installed on the fourth bracket 41 and is used for feeding the heat shrinkable tube, so that the heat shrinkable tube can be transferred through the tube feeding member 42; the tube clamping member 43 is movably installed on the fourth bracket 41 to facilitate adjusting the position of the tube clamping member 43 relative to the fourth bracket 41. The tube clamping member 43 is used for clamping and cutting the heat shrinkable tube, so that the tube clamping member 43 can adjust from a roll of heat shrinkable tube to multiple segments of heat shrinkable tube, thereby facilitating the adaptation of the length of the heat shrinkable tube to the length of the wire, and the wire is passed through the heat shrinkable tube.
[0098] Please refer to the appendix Figure 1 and 5 , wherein, the tube feeding member 42 includes a third motor 421, a first synchronous pulley transmission module 422 and two first tube feeding wheels 423. The two first tube feeding wheels 423 are arranged oppositely in the up-down direction. The fixed end of the third motor 421 is connected to the fourth bracket 41, the output end of the third motor 421 is connected to one end of the first synchronous pulley transmission module 422, and the other end of the first synchronous pulley transmission module 422 is connected to the two first tube feeding wheels 423 and drives the two first tube feeding wheels 423 to rotate, so as to facilitate the two first tube feeding wheels 423 to feed the heat shrinkable tube during rotation.
[0099] Please refer to the appendix Figure 1 and 5 , in addition, the tube clamping member 43 includes two second cylinders 431 and two tube clamping arms 432. The fixed ends of the two second cylinders 431 are connected to the fourth bracket 41. The two tube clamping arms 432 are arranged oppositely. The output ends of the two second cylinders 431 are respectively connected to the two tube clamping arms 432 and drive the two tube clamping arms 432 to approach or separate from each other. When the two tube clamping arms 432 approach each other, it is convenient for the two tube clamping arms 432 to clamp and cut the heat shrinkable tube.
[0100] Please refer to the appendix Figure 1 and 6 , in the embodiment of the present application, the first terminal crimping assembly 50 is arranged between the wire stripping assembly 30 and the heat shrinkable tube assembly 40. The first terminal crimping assembly 50 is used for crimping the wire sleeved with the heat shrinkable tube, so that the first terminal can be fixed to one end of the wire sleeved with the heat shrinkable tube through the first terminal crimping assembly 50.
[0101] Please refer to the appendix Figure 1 and 6 , at this time, the first terminal crimping assembly 50 includes a fifth bracket 51 and a first terminal crimping member 52; the fifth bracket 51 is installed on the frame 10; the first terminal crimping member 52 is telescopically installed on the fifth bracket 51 to facilitate adjusting the position of the first terminal crimping member 52 relative to the fifth bracket 51. The first terminal crimping member 52 is used for crimping the wire sleeved with the heat shrinkable tube, so that the first terminal can be fixed to the wire sleeved with the heat shrinkable tube through the first terminal crimping member 52.
[0102] Please refer to the attached Figure 1 and 7 , in the embodiment of the present application, the first baking assembly 60 is arranged on the front side of the first wire - ending assembly 50. The first baking assembly 60 is used to bake the wire after wire - ending, so that the heat - shrinkable tube shrinks on the wire under the action of heat, facilitating the heat - shrinkable tube to wrap around the outer surface of the wire, thereby facilitating the heat - shrinkable tube to protect the outer surface of the wire.
[0103] Please refer to the attached Figure 1 and 7 , at this time, the first baking assembly 60 includes a sixth bracket 61 and a first baking member 62; the sixth bracket 61 is installed on the frame 10; the first baking member 62 is installed on the sixth bracket 61 and is used to bake the wire after wire - ending, so that the heat output by the first baking member 62 is conducted to the wire after wire - ending, thereby facilitating the shrinkage of the heat - shrinkable tube of the wire after wire - ending.
[0104] Please refer to the attached Figure 1 and 8 , in the embodiment of the present application, the transfer assembly 70 is arranged on the rear side of the wire stripping assembly 30. The transfer assembly 70 is installed on the frame 10. The transfer assembly 70 conveys the wire separated from the wire stripping assembly 30 to realize the transfer of the wire separated from the wire stripping assembly 30.
[0105] Please refer to the attached Figure 1 and 8 , the transfer assembly 70 includes a transfer seat 71 and a first clamping member 72; the transfer seat 71 is movably connected to the frame 10 and moves along the length direction of the frame 10; so as to facilitate adjusting the position of the transfer seat 71 relative to the frame 10. The first clamping member 72 is installed on the transfer seat 71. The first clamping member 72 is used to clamp the wire separated from the wire feeding assembly 20; the first clamping member 72 sequentially passes through the number - tube assembly 80, the second wire - ending assembly 90, the tube - pulling assembly 110, and the second baking assembly 120 as the transfer seat 71 moves, so that the wire separated from the wire feeding assembly 20 sequentially passes through the number - tube assembly 80, the second wire - ending assembly 90, the tube - pulling assembly 110, and the second baking assembly 120 for processing.
[0106] Please refer to the attached Figure 1 and 8 , a moving module 73 is provided between the transfer seat 71 and the frame 10. The fixed end of the moving module 73 is connected to the frame 10, and the moving end of the moving module 73 is connected to the transfer seat 71 and drives the transfer seat 71 to move along the length direction of the frame 10. Optionally, the moving module 73 is a lead - screw moving module.
[0107] Please refer to the attached Figure 1 and 13, the heat shrinkable tube device 100 further includes a conversion assembly 130. The conversion assembly 130 includes a rotating member 131 and a second clamping member 132. The fixed end of the rotating member 131 is connected to the frame 10, and the output end of the rotating member 131 is connected to the second clamping member 132 and drives the second clamping member 132 to rotate. The second clamping member 132 is used to clamp the wire separated from the wire feeding assembly 20, so as to facilitate the conversion of the wire separated from the wire feeding assembly 20 and adjust the direction of the wire separated from the wire feeding assembly 20.
[0108] Please refer to the appendix Figure 1 and 9 , in the embodiment of the present application, the number tube assembly 80 is arranged on the front side of the transfer assembly 70. The number tube assembly 80 is used to convey the number tube and sleeved the number tube on the wire separated from the wire stripping assembly 30, so as to facilitate the transfer of the number tube to the outer surface of the wire separated from the wire stripping assembly 30 through the number tube assembly 80.
[0109] Please refer to the appendix Figure 1 and 9 , at this time, the number tube assembly 80 includes a seventh bracket 81 and a number tube conveying member 82; the seventh bracket 81 is installed on the frame 10; the number tube conveying member 82 is installed on the seventh bracket 81 and is used to convey the number tube. The number tube is sleeved on the wire separated from the wire stripping assembly 30, so as to facilitate the transfer of the number tube to the wire separated from the wire stripping assembly 30 through the number tube conveying member 82.
[0110] Please refer to the appendix Figure 1 and 9 , the number tube conveying member 82 includes a fourth motor 821, a second synchronous pulley transmission module 822 and two second tube feeding wheels 823. The two second tube feeding wheels 823 are arranged opposite to each other in the left-right direction. The fixed end of the fourth motor 821 is connected to the seventh bracket 81, the output end of the fourth motor 821 is connected to one end of the second synchronous pulley transmission module 822, and the other end of the second synchronous pulley transmission module 822 is connected to the two second tube feeding wheels 823 and drives the two second tube feeding wheels 823 to rotate, so as to facilitate the two second tube feeding wheels 823 to convey the number tube during rotation.
[0111] Please refer to the appendix Figure 1 and 9 , the number tube assembly 80 further includes a cutting member 83. The cutting member 83 includes a third cylinder 831 and two cutting arms 832. The fixed end of the third cylinder 831 is connected to the seventh bracket 81, the output end of the third cylinder 831 is connected to the two cutting arms 832 and drives the two cutting arms 832 to swing, so as to facilitate the two cutting arms 832 to cut the number tube during swinging, thereby facilitating the length of the number tube to match the wire.
[0112] In the embodiment of the present application, the second terminal crimping assembly 90 is disposed on the right side of the number tube assembly 80. The second terminal crimping assembly 90 is used for secondary terminal crimping of the wire sleeved with the number tube, so that the second terminal can be fixed to the wire sleeved with the number tube through the second terminal crimping assembly 90.
[0113] Please refer to the appendix Figure 1 and 10 At this time, the second terminal crimping assembly 90 includes an eighth bracket 91 and a second terminal crimping member 92. The eighth bracket 91 is mounted on the frame 10. The second terminal crimping member 92 is telescopically mounted on the eighth bracket 91 to facilitate adjustment of the position of the second terminal crimping member 92 relative to the eighth bracket 91. The second terminal crimping member 92 is used for secondary terminal crimping of the wire sleeved with the number tube, so that the second terminal can be fixed to the wire sleeved with the number tube through the second terminal crimping member 92.
[0114] Please refer to the appendix Figure 1 and 11 In the embodiment of the present application, the tube pulling assembly 110 is disposed on the right side of the second terminal crimping assembly 90. The tube pulling assembly 110 is used for pulling the tube of the wire after secondary terminal crimping to output a formed wire assembly, so that the wire after secondary terminal crimping can be pulled by the tube pulling assembly 110, thereby facilitating the transfer of the wire after secondary terminal crimping.
[0115] Please refer to the appendix Figure 1 and 11 At this time, the tube pulling assembly 110 includes a ninth bracket 111 and a tube pulling member 112. The ninth bracket 111 is mounted on the frame 10. The tube pulling member 112 is movably mounted on the ninth bracket 111 to facilitate adjustment of the position of the tube pulling member 112 relative to the ninth bracket 111. The tube pulling member 112 is used for pulling the tube of the wire after secondary terminal crimping to test the toughness of the wire after secondary terminal crimping.
[0116] Please refer to the appendix Figure 1 and 12 In the embodiment of the present application, the second baking assembly 120 is disposed on the right side of the tube pulling assembly 110. The second baking assembly 120 is used for forming and baking the wire after tube pulling. Based on the wire feeding assembly 20, the wire stripping assembly 30, the heat shrinkable tube assembly 40, the first terminal crimping assembly 50, the first baking assembly 60, the transfer assembly 70, the number tube assembly 80, the second terminal crimping assembly 90, the tube pulling assembly 110 and the second baking assembly 120, the automatic production of the formed wire assembly is realized, avoiding the assembly of the heat shrinkable tube for the wire after terminal crimping under the manual action, and improving the working efficiency of the heat shrinkable tube equipment 100.
[0117] Please refer to the appendix Figure 1 and 12, the second baking component 120 includes a tenth bracket 121 and a second baking member 122; the tenth bracket 121 is installed on the frame 10; the second baking member 122 is installed on the tenth bracket 121 and is used for forming and baking the wire after tube drawing, so that the heat output by the second baking member 122 is conducted to the wire after tube drawing, thereby facilitating the forming of the wire after tube drawing.
[0118] Please refer to the appendix Figure 1 , the wire stripping component 30, the heat shrinkable tube component 40, the first terminal assembly 50, and the first baking component 60 are arranged adjacent to each other and face the wire feeding area of the frame 10, so that the wire stripping component 30, the heat shrinkable tube component 40, the first terminal assembly 50, and the first baking component 60 can make full use of the space in the wire feeding area of the frame 10. The wire feeding component 20 conveys the wire to the wire feeding area. The wire feeding component 20 is rotatably connected to the frame 10 to facilitate adjusting the position of the wire feeding component 20 relative to the frame 10. The wire feeding component 20 sequentially passes through the wire stripping component 30, the heat shrinkable tube component 40, the first terminal assembly 50, and the first baking component 60, so that the wire conveyed by the wire feeding component 20 sequentially passes through the wire stripping component 30, the heat shrinkable tube component 40, the first terminal assembly 50, and the first baking component 60 for processing;
[0119] Please refer to the appendix Figure 1 , the wire feeding component 20, the wire stripping component 30, the heat shrinkable tube component 40, the first terminal assembly 50, and the first baking component 60 form a set of wire devices, so that the wire can be sequentially stripped, sleeved with a heat shrinkable tube, assembled with terminals, shrunk the heat shrinkable tube, and cut off.
[0120] Please refer to the appendix Figure 1 , there are multiple sets of wire devices. The multiple sets of wire devices are arranged along the length direction of the frame 10. By arranging multiple sets of wire devices, the processing efficiency of the wire is increased, so that multiple wires can be processed simultaneously, and the working efficiency of the heat shrinkable tube equipment 100 is further improved.
[0121] Compared with the prior art, the beneficial effects of the present utility model are:
[0122] The present utility model provides a heat shrinkable tube device 100. The wire feeding assembly 20 is installed on the frame 10; the wire feeding assembly 20 is used for conveying wires; the wire stripping assembly 30 is arranged on one side of the wire feeding assembly 20; the wire processing assembly is used for cutting and stripping the wires; the heat shrinkable tube assembly 40 is arranged on one side of the wire stripping assembly 30; the heat shrinkable tube assembly 40 is used for conveying heat shrinkable tubes; the heat shrinkable tubes are for the wires to pass through; the first terminal crimping assembly 50 is arranged between the wire stripping assembly 30 and the heat shrinkable tube assembly 40, and the first terminal crimping assembly 50 is used for crimping the wires sleeved with heat shrinkable tubes; the first baking assembly 60 is arranged on one side of the first terminal crimping assembly 50, and the first baking assembly 60 is used for baking the wires after crimping, so that the heat shrinkable tubes shrink on the wires under the action of heat; the transfer assembly 70 is installed on the frame 10, and the transfer assembly 70 conveys the wires separated from the wire stripping assembly 30; the number tube assembly 80 is arranged on one side of the transfer assembly 70, and the number tube assembly 80 is used for conveying number tubes and sleeving the number tubes on the wires separated from the wire stripping assembly 30; the second terminal crimping assembly 90 is arranged on one side of the number tube assembly 80, and the second terminal crimping assembly 90 is used for secondarily crimping the wires sleeved with number tubes; the tube pulling assembly 110 is arranged on one side of the second terminal crimping assembly 90, and the tube pulling assembly 110 is used for pulling the tubes of the wires after secondary crimping to output the wire assembly in a formed state; the second baking assembly 120 is arranged on one side of the tube pulling assembly 110, and the second baking assembly 120 is used for forming and baking the wires after tube pulling. Based on the wire feeding assembly 20, the wire stripping assembly 30, the heat shrinkable tube assembly 40, the first terminal crimping assembly 50, the first baking assembly 60, the transfer assembly 70, the number tube assembly 80, the second terminal crimping assembly 90, the tube pulling assembly 110 and the second baking assembly 120, the automatic production of the wire assembly in a formed state is realized, avoiding the assembly of heat shrinkable tubes on the wires after crimping manually, and improving the working efficiency of the heat shrinkable tube device 100.
[0123] In the description of the present application, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features limited by "first" and "second" may explicitly or implicitly include one or more features.
[0124] Specific examples are applied in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the method and its core idea of the present application; at the same time, for those skilled in the art, according to the idea of the present application, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present application.
Claims
1. A heat shrink tube device, characterized in that: include: frame; A wire feeding assembly is installed on the frame; The wire feeding assembly is used for conveying wires; A wire stripping assembly is arranged on one side of the wire feeding assembly; the wire stripping assembly is used to cut and strip the wire; A heat shrink tube assembly is arranged on one side of the wire stripping assembly; the heat shrink tube assembly is used to transport the heat shrink tube; the heat shrink tube is used for the wire to pass through; A first end-breaking assembly is disposed between the wire stripping assembly and the heat shrinkable tube assembly, and the first end-breaking assembly is used to break the ends of the wires sleeved in the heat shrinkable tube; A first baking assembly is arranged at one side of the first terminal assembly, and the first baking assembly is used to bake the wire after the terminal is beaten, so that the heat shrink tube shrinks to the wire under the action of heat; A transfer assembly is installed on the frame, and the transfer assembly conveys the wires separated by the wire stripping assembly; A number tube assembly is arranged on one side of the transfer assembly, and is used to transport the number tubes and to cover the number tubes with the wires separated by the wire stripping assembly; A second terminal assembly is arranged on one side of the number tube assembly, and the second terminal assembly is used for performing secondary terminal bonding on the wires sleeved with the number tubes; A tube drawing assembly is arranged on one side of the second end-bending assembly, and is used to draw the wire after the second end-bending to output a wire assembly in a formed state; The second baking component is arranged on one side of the tube drawing component, and the second baking component is used to shape and bake the wire after the tube is drawn.
2. The heat shrink tube device according to claim 1, characterized in that: The wire stripping assembly, the heat shrink tube assembly, the first terminal assembly, and the first baking assembly are arranged adjacent to each other and face the wire feeding area of the rack; The wire feeding assembly conveys the wire to the wire feeding area, the wire feeding assembly is rotatably connected to the frame, and passes through the wire stripping assembly, the heat shrink tube assembly, the first terminal assembly, and the first baking assembly in sequence; The wire feeding assembly, the wire stripping assembly, the heat shrink tube assembly, the first terminal assembly, and the first baking assembly form a set of wire devices.
3. The heat shrink tube device according to claim 2, characterized in that: The wire devices have multiple groups, and the multiple groups of wire devices are arranged along the length direction of the rack; The wire feeding assembly includes a first bracket, a plurality of conveying wheels, a second bracket, and a plurality of calibration wheels; The first bracket and the second bracket are both mounted on a frame; A plurality of the conveying wheels are mounted on the first bracket and arranged alternately, and are used to convey the wire; A plurality of calibration wheels are mounted on the second bracket and arranged alternately, and the plurality of calibration wheels are used to calibrate the conveyed wire.
4. The heat shrink tube device according to claim 3, characterized in that: The wire stripping assembly includes a third bracket, a plurality of cutting members and a plurality of stripping members; The third bracket is installed on the frame; The plurality of cutting members are telescopically connected to the third bracket and cut the wires conveyed by the wire feeding assembly; The plurality of stripping members are telescopically connected to the third bracket and are used to strip the outer sheath of the wire conveyed by the wire feeding assembly.
5. The heat shrink tube device according to claim 4, characterized in that: The heat shrink tube assembly comprises a fourth bracket, a tube feeding member and a tube clamping member; The fourth bracket is installed on the frame; The tube delivery member is installed on the fourth bracket and is used to deliver the heat shrink tube; The tube clamp is movably mounted on the fourth bracket and is used to clamp off the heat shrink tube, through which the wire is passed; The first end-attaching assembly includes a fifth bracket and a first end-attaching piece; The fifth bracket is installed on the frame; The first terminal member is telescopically mounted on the fifth bracket and is used to terminate the wires covered with heat shrink tubes; The first baking assembly includes a sixth bracket and a first baking member; The sixth bracket is installed on the frame; The first baking member is installed on the sixth bracket and is used to bake the terminated wires.
6. The heat shrink tube device according to claim 1, characterized in that: The transfer assembly includes a transfer seat and a first clamping member; The transfer seat is movably connected to the frame and moves along the length direction of the frame; The first clamping member is installed on the transfer seat and is used to clamp the wire separated from the wire feeding assembly; the first clamping member passes through the number tube assembly, the second end-piercing assembly, the tube pulling assembly, and the second baking assembly in sequence as the transfer seat moves.
7. The heat shrink tube device according to claim 6, characterized in that: The number tube assembly includes a seventh bracket and a number tube conveying member; The seventh bracket is installed on the frame; The number tube conveying member is installed on the seventh bracket and is used to convey the number tube. The number tube is sleeved with the wire separated by the wire stripping assembly.
8. The heat shrink tube device according to claim 7, characterized in that: The second end-attaching assembly includes an eighth bracket and a second end-attaching piece; The eighth bracket is installed on the frame; The second terminal member is telescopically mounted on the eighth bracket and is used for performing secondary terminal taping on the wires that are sleeved with number tubes.
9. The heat shrink tube device according to claim 8, characterized in that: The tube pulling assembly comprises a ninth bracket and a tube pulling member; The ninth bracket is installed on the frame; The tube drawing member is movably mounted on the ninth bracket and is used to draw the tube of the wire after secondary terminal punching.
10. The heat shrink tube device according to claim 9, characterized in that: The second baking assembly includes a tenth bracket and a second baking member; The tenth bracket is installed on the frame; The second baking member is installed on the tenth bracket and is used to shape and bake the wire after the tube is drawn.