Cable marker shell inserting machine

By designing an automated number tube shell plug-in machine, the load transfer assembly is used to realize automated assembly line operations of line feeding components, pipe threading components, wire peeling components, end-pushing components, pipe pulling components, drying components and shell plug-in components, solving the problem of low operating efficiency in the prior art and improving the working efficiency of number tube shell plug-in machine.

CN223296583UActive Publication Date: 2025-09-02ZHONGSHAN ZHENGHANG INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422087975.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-27
Publication Date
2025-09-02
Estimated Expiration
2034-08-27

AI Technical Summary

Technical Problem

The existing number tube enclosure machine has low operating efficiency and requires artificial transfer of conductors, resulting in low working efficiency.

Method used

A number tube shell plug-in machine is designed, including wire feeding components, pipe threading components, wire peeling components, end-pressing components, pipe pulling components, drying components and shell plug-in components. Through the transfer component, the automatic assembly line operation of each component is realized.

Benefits of technology

It improves the working efficiency of the number tube enclosure machine, avoids human wire transfer, and improves the degree of operation automation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a cable marker shell inserting machine which comprises a rack, a wire feeding assembly, a cable marker penetrating assembly, a wire stripping assembly, a terminal crimping assembly, a cable marker pulling assembly, a cable marker drying assembly, a shell inserting assembly and a transferring assembly. The transferring assembly sequentially passes through the wire feeding assembly, the pipe penetrating assembly, the wire stripping assembly, the terminal crimping assembly, the pipe pulling assembly, the pipe drying assembly and the shell inserting assembly, and the wire output by the wire feeding assembly sequentially passes through the pipe penetrating assembly, the wire stripping assembly, the terminal crimping assembly, the pipe pulling assembly, the pipe drying assembly and the shell inserting assembly. Therefore, the transferring assembly can transfer the wires output by the wire feeding assembly, the wires are prevented from being transferred under the manual action, and the working efficiency of the cable marker shell inserting machine is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of number tube shell inserting machines, in particular to a number tube shell inserting machine. Background Art

[0002] With the development of science and technology, number tube shell inserters are used in industry. Number tubes are a type of cable marker and are widely used in electronics, electricity, electrical appliances, computers, communications and other fields.

[0003] In the prior art, the existing number tube shell inserting machine includes a tube threading assembly, a wire stripping assembly, a terminal assembly, a tube pulling assembly, a tube drying assembly and a shell inserting assembly. The tube threading assembly, the wire stripping assembly, the terminal assembly, the tube pulling assembly, the tube drying assembly and the shell inserting assembly are arranged separately. Under human intervention, the wire passes through the tube threading assembly, the wire stripping assembly, the terminal assembly, the tube pulling assembly, the tube drying assembly and the shell inserting assembly in sequence, which requires the operator to hold the wire for transfer, resulting in low working efficiency of the existing number tube shell inserting machine. Utility Model Content

[0004] The purpose of the utility model is to provide a number tube shell inserting machine to solve at least part of the above problems.

[0005] To achieve the above objectives, the present invention provides the following technical solutions:

[0006] A number tube shell inserting machine, comprising:

[0007] frame;

[0008] A wire feeding assembly is installed on the frame; the wire feeding assembly is used to feed the wire;

[0009] A pipe threading assembly is provided on one side of the wire feeding assembly; the pipe threading assembly is used to thread the wires through the number tube;

[0010] A wire stripping assembly is provided on one side of the tube threading assembly; the wire stripping assembly is used to strip the wires covered with number tubes;

[0011] A terminal assembly is provided on one side of the wire stripping assembly, and is used to terminate the wires sleeved on the number tube;

[0012] A tube drawing assembly is provided on one side of the end-punching assembly, and is used to draw the wire after the end-punching to output a wire assembly in a formed state;

[0013] A tube drying assembly is provided on one side of the tube drawing assembly and is used to dry the wire after the wire has been terminated, so that the number tube shrinks to the wire under the action of heat;

[0014] The plug-in shell assembly is arranged on one side of the drying tube assembly and is used to plug the wires after passing through the drying tube;

[0015] A transfer assembly is installed on the frame, and the transfer assembly passes through the wire feeding assembly, the tube threading assembly, the wire stripping assembly, the end-bending assembly, the tube pulling assembly, the drying tube assembly and the plug-in shell assembly in sequence, and passes the wire output from the wire feeding assembly through the tube threading assembly, the wire stripping assembly, the end-bending assembly, the tube pulling assembly, the drying tube assembly and the plug-in shell assembly in sequence.

[0016] Optionally, the wire feeding assembly, the tube threading assembly, the wire stripping assembly, the end-piercing assembly, the tube pulling assembly, the tube drying assembly and the plug-in shell assembly are sequentially arranged along the length direction of the rack;

[0017] 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 used to clamp the wire and is installed on the transfer seat.

[0018] Optionally, the wire feeding assembly includes a first bracket, a plurality of conveying wheels, a second bracket, and a plurality of calibration wheels;

[0019] The first bracket and the second bracket are both mounted on the frame;

[0020] The plurality of conveying wheels are mounted on the first bracket and arranged alternately, and are used to convey the wire;

[0021] A plurality of calibration wheels are mounted on the first bracket and arranged alternately, and are used to calibrate the conveyed wire;

[0022] The wire feeding assembly further includes a transfer member configured to transfer the calibrated wire to the first clamping member.

[0023] Optionally, the pipe threading assembly includes a third bracket, a number pipe conveying component, and a number pipe cutting component;

[0024] The number tube conveying member and the number tube cutting member are both installed on the third bracket. The number tube conveying member is used to convey number tubes. The number tube cutting member is used to cut the number tubes conveyed by the number tube conveying member to form number tubes to be inserted.

[0025] When the transfer assembly is arranged relative to the number tube conveying member, the number tube to be inserted and the wire clamped by the first clamping member are inserted into each other.

[0026] Optionally, the wire stripping assembly includes a fourth bracket and a plurality of stripping pieces;

[0027] When the transfer assembly is arranged relative to the wire stripping assembly, the plurality of stripping members are telescopically connected to the fourth bracket and strip the outer skin of the wire clamped by the transfer assembly.

[0028] Optionally, the end-piercing assembly includes a fifth bracket and an end-piercing piece;

[0029] The fifth bracket is mounted on the frame;

[0030] When the transfer assembly is arranged relative to the terminal-piercing assembly, the terminal-piercing piece can be telescopically mounted on the fifth bracket and is used to perform terminal piercing on the wires that are sleeved with number tubes.

[0031] Optionally, the tube pulling assembly includes a sixth bracket and a tube pulling member;

[0032] The sixth bracket is mounted on the frame;

[0033] The tube-drawing member is movably mounted on the sixth bracket and is used to draw the tube of the wire after being terminated.

[0034] Optionally, the drying tube assembly includes a seventh bracket and a drying tube member;

[0035] The seventh bracket is telescopically mounted on the frame;

[0036] The tube-baking member is mounted on the seventh bracket and is used to shape and bake the wire after the tube is drawn.

[0037] Optionally, the plug-in shell assembly includes an eighth bracket and a plug-in shell member;

[0038] The eighth bracket is mounted on the frame;

[0039] The shell insert is installed on the eighth bracket and is used to insert the shell of the wire after being dried in the tube to form a finished wire product.

[0040] Optionally, the number tube shell inserting machine further includes a discharging component;

[0041] The discharging assembly is arranged between the plug housing assembly and the transfer assembly, and is used to output the finished wire.

[0042] Compared with the prior art, the beneficial effects of the present invention are:

[0043] The utility model provides a number tube shell inserting machine, wherein a wire feeding assembly is installed on a machine frame; the wire feeding assembly is used to feed the wire; the tube threading assembly is arranged on one side of the wire feeding assembly; the tube threading assembly is used to thread the wire into the number tube; the wire stripping assembly is arranged on one side of the tube threading assembly; the wire stripping assembly is used to strip the wire sleeved with the number tube; the end-punching assembly is arranged on one side of the wire stripping assembly, and the end-punching assembly is used to punch the wire sleeved with the number tube; the tube drawing assembly is arranged on one side of the end-punching assembly, and the tube drawing assembly is used to draw the wire after the end is punched, so as to output the wire assembly in a formed state; the tube drying assembly is arranged on one side of the tube drying assembly, and the tube drying assembly is used to The wires are baked so that the number tubes shrink to the wires under the action of heat; the plug-in shell assembly is arranged on one side of the baking tube assembly, and the plug-in shell assembly is used to plug the wires after the baking tubes; the transfer assembly is installed on the frame, and the transfer assembly passes through the wire feeding assembly, the tube threading assembly, the wire stripping assembly, the end-bumping assembly, the tube pulling assembly, the baking tube assembly and the plug-in shell assembly in sequence, and the wires output by the wire feeding assembly pass through the tube threading assembly, the wire stripping assembly, the end-bumping assembly, the tube pulling assembly, the baking tube assembly and the plug-in shell assembly in sequence, so that the transfer assembly can realize the transfer of the wires output by the wire feeding assembly, avoid the transfer of the wires under human influence, and improve the working efficiency of the number tube plug-in shell machine. BRIEF DESCRIPTION OF THE DRAWINGS

[0044] To more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present application. Those skilled in the art can also derive other drawings based on these drawings without inventive effort.

[0045] In order to more completely understand the present application and its beneficial effects, the following description will be given in conjunction with the accompanying drawings. In the following description, the same reference numerals represent the same parts.

[0046] Figure 1 A schematic diagram of a number tube shell inserter according to an embodiment of the present application is shown.

[0047] Figure 2 A schematic diagram of a wire feeding assembly of a number tube shell inserting machine according to an embodiment of the present application is shown.

[0048] Figure 3 A schematic diagram showing a tube threading assembly of a number tube inserting machine according to an embodiment of the present application

[0049] Figure 4 A schematic diagram of a wire stripping assembly of a number tube inserter according to an embodiment of the present application is shown.

[0050] Figure 5A schematic diagram of a terminal punching assembly of a number tube shell inserting machine according to an embodiment of the present application is shown.

[0051] Figure 6 A schematic diagram of a tube pulling assembly of a number tube shell inserting machine according to an embodiment of the present application is shown.

[0052] Figure 7 A schematic diagram of a tube drying assembly of a number tube shell inserting machine according to an embodiment of the present application is shown.

[0053] Figure 8 A schematic diagram of a transfer assembly of a number tube shell inserting machine according to an embodiment of the present application is shown.

[0054] Figure 9 A schematic diagram of a CCD detector of a number tube shell inserter according to an embodiment of the present application is shown.

[0055] Figure 10 A schematic diagram of a conversion assembly of a number tube inserter according to an embodiment of the present application is shown.

[0056] Figure 11 A schematic diagram of the connection between the shell inserting assembly and the discharging assembly of a number tube shell inserting machine according to an embodiment of the present application is shown.

[0057] Reference numerals

[0058] 100. Number tube shell inserting machine;

[0059] 10. Rack;

[0060] 20. Wire feeding assembly; 21. First bracket; 22. Conveying wheel; 23. Second bracket; 24. Calibration wheel; 25. First motor; 26. First synchronous wheel transmission module; 27. Transfer member; 271. First support base; 272. Second motor; 273. Wire cutting member; 274. Second clamping member;

[0061] 30. Pipe threading assembly; 31. Third bracket; 32. Number tube conveying member; 321. Third motor; 322. Second synchronous wheel transmission module; 323. First tube feeding wheel; 33. Number tube cutting member; 331. First cylinder; 332. First tube cutting arm;

[0062] 40. Wire stripping assembly; 41. Fourth bracket; 42. Stripping piece; 43. Fourth motor; 44. First screw drive module;

[0063] 50. End-breaking assembly; 51. Fifth bracket; 52. End-breaking piece;

[0064] 60. Pull tube assembly; 61. Sixth bracket; 62. Pull tube member; 621. Third clamping member; 622. Fourth clamping member; 623. First guide rail; 624. Fifth motor; 625. Gear transmission module;

[0065] 70. Drying tube assembly; 71. Seventh bracket; 72. Drying tube parts;

[0066] 80. Plug shell assembly; 81. Eighth bracket; 82. Plug shell assembly; 83. Plastic shell conveyor line; 84. Positioning piece; 85. Y-axis linear motor; 86. X-axis linear motor; 87. Z-axis linear motor;

[0067] 90. Transfer assembly; 91. Transfer seat; 92. First clamping member; 93. Second guide rail;

[0068] 110. CCD detector;

[0069] 120. Conversion assembly; 121. Rotating member; 122. Fifth clamping member;

[0070] 130. Discharging assembly; 131. Discharging conveyor line; 132. Storage bucket. DETAILED DESCRIPTION

[0071] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the embodiments described are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making creative efforts are within the scope of protection of this application.

[0072] Please refer to the attached Figure 1 The embodiment of the present application provides a number tube shell inserting machine 100, which is used for automated production of number tubes. The number tube shell inserting machine 100 includes a frame 10, a wire feeding assembly 20, a tube threading assembly 30, a wire stripping assembly 40, a terminal assembly 50, a tube pulling assembly 60, a tube drying assembly 70, a shell inserting assembly 80 and a transfer assembly 90.

[0073] Please refer to the attached Figure 1 In the embodiment of the present application, the frame 10 serves as a supporting component of the number tube shell inserting machine 100. The frame 10 is used to support the wire feeding assembly 20, the tube threading assembly 30, the wire stripping assembly 40, the terminal assembly 50, the tube pulling assembly 60, the tube drying assembly 70, the shell inserting assembly 80 and the transfer assembly 90.

[0074] Please refer to the attached Figure 1 and 2In an embodiment of the present application, the wire feeding assembly 20 is arranged on the upper side of the frame 10, and the wire feeding assembly 20 is installed on the frame 10; the wire feeding assembly 20 is used to transport the wire so that the wire can be transferred through the wire feeding assembly 20.

[0075] Please refer to the attached Figure 1 and 2 At this time, the wire feeding assembly 20 includes a first bracket 21, multiple conveying wheels 22, a second bracket 23, and multiple calibration wheels 24; the first bracket 21 and the second bracket 23 are both installed on the frame 10; the multiple conveying wheels 22 are rotatably installed on the first bracket 21 and are arranged alternately to facilitate adjustment of the positions of the multiple conveying wheels 22 relative to the first bracket 21. The multiple conveying wheels 22 are used to convey the wires so that the multiple conveying wheels 22 drive the wires to transfer during the rotation process. The multiple calibration wheels 24 are installed on the second bracket 23 and are arranged alternately. The multiple calibration wheels 24 are used to calibrate the conveyed wires to ensure the position accuracy of the output wires.

[0076] Please refer to the attached Figure 1 and 2 A first motor 25 and a first synchronous wheel transmission module 26 are provided between the multiple calibration wheels 24 and the second bracket 23. The fixed end of the first motor 25 is connected to the second bracket 23, and the output end of the first motor 25 is connected to one end of the first synchronous wheel transmission module 26. The other end of the first synchronous wheel transmission module 26 is connected to the multiple calibration wheels 24 and drives the multiple calibration wheels 24 to rotate, so that the multiple calibration wheels 24 can rotate relative to the second bracket 23 through the first motor 25 and the first synchronous wheel transmission module 26.

[0077] Please refer to the attached Figure 1 and 2 The wire feeding assembly 20 also includes a transfer member 27, which transfers the calibrated wire to the first clamping member 92. The transfer member 27 includes a first support seat 271, a second motor 272, a wire cutting member 273 and a second clamping member 274. The first support seat 271 is connected to the frame 10, and the fixed end of the second motor 272 is connected to the first support seat 271. The output end of the second motor 272 is connected to the second clamping member 274 and drives the second clamping member 274 to rotate. The tightening member 274 is used to clamp the wires conveyed by the multiple calibration wheels 24 so that the wires conveyed by the multiple calibration wheels 24 are directed toward the first clamping member 92. The wire tube cutting member 273 is arranged between the second clamping member 274 and the multiple calibration wheels 24. The wire tube cutting member 273 is connected to the first support seat 271. The wire tube cutting member 273 is used to cut the wires conveyed by the multiple calibration wheels 24 to form wires to be assembled. Optionally, the rotation angle of the second clamping member 274 is 180 degrees.

[0078] Please refer to the attached Figure 1 and 3In the embodiment of the present application, the pipe threading assembly 30 is arranged on the right side of the wire feeding assembly 20; the pipe threading assembly 30 is used to thread the wires through the number tubes to facilitate the connection between the number tubes and the wires.

[0079] Please refer to the attached Figure 1 and 3 At this time, the tube threading assembly 30 includes a third bracket 31, a number tube conveying member 32, and a number tube cutting member 33; the number tube conveying member 32 and the number tube cutting member 33 are both installed on the third bracket 31, the number tube conveying member 32 is used to convey the number tubes; the number tube cutting member 33 is used to cut the number tubes conveyed by the number tube conveying member 32 to form the number tubes to be threaded.

[0080] Please refer to the attached Figure 1 and 3 The number tube conveying member 32 includes a third motor 321, a second synchronous wheel transmission module 322, and two first tube-feeding wheels 323. The two first tube-feeding wheels 323 are arranged opposite each other in the left-right direction. The fixed end of the third motor 321 is connected to the third bracket 31, and the output end of the third motor 321 is connected to one end of the second synchronous wheel transmission module 322. The other end of the second synchronous wheel transmission module 322 is connected to the two first tube-feeding wheels 323, and drives the two first tube-feeding wheels 323 to rotate, so that the two first tube-feeding wheels 323 can convey the number tubes during the rotation process.

[0081] Please refer to the attached Figure 1 and 3 The number tube cutting member 33 includes a first cylinder 331 and two first tube cutting arms 332. The fixed end of the first cylinder 331 is connected to the third bracket 31, and the output end of the first cylinder 331 is connected to the two first tube cutting arms 332, thereby driving the two first tube cutting arms 332 to swing, so that the two first tube cutting arms 332 can cut the number tubes during the swinging process, thereby facilitating the adaptation of the length of the number tubes to the wires. When the transfer assembly 90 is arranged relative to the number tube conveying member 32, the number tubes to be threaded and the wires clamped by the first clamping member 92 are threaded together.

[0082] Please refer to the attached Figure 1 and 4 In the embodiment of the present application, the wire stripping assembly 40 is arranged on the right side of the tube threading assembly 30; the wire stripping assembly 40 is used to strip the wire covered with a number tube, and the wire stripping assembly 40 includes a fourth bracket 41 and a plurality of stripping pieces 42; when the transfer assembly 90 is arranged relative to the wire stripping assembly 40, the plurality of stripping pieces 42 can be telescopically connected to the fourth bracket 41 to facilitate adjustment of the position of the plurality of stripping pieces 42 relative to the fourth bracket 41, and the plurality of stripping pieces 42 strip the outer skin of the wire clamped by the transfer assembly 90 to achieve stripping of the outer skin of the wire, so as to expose the copper wire of the wire.

[0083] Please refer to the attached Figure 1 and 4 A fourth motor 43 and a first screw transmission module 44 are provided between the multiple stripping pieces 42 and the fourth bracket 41. The fourth motor 43 is arranged in the vertical direction. The fixed end of the fourth motor 43 is connected to the fourth bracket 41, and the output end of the fourth motor 43 is connected to one end of the first screw transmission module 44. The other end of the first screw transmission module 44 is connected to the multiple stripping pieces 42, so that the multiple stripping pieces 42 can be extended and retracted relative to the fourth bracket 41 through the fourth motor 43 and the first screw transmission module 44, thereby facilitating the multiple stripping pieces 42 to strip the outer skin of the wire during the extension and retraction process.

[0084] Please refer to the attached Figure 1 and 5 In the embodiment of the present application, the terminal assembly 50 is arranged on the right side of the wire stripping assembly 40, and the terminal assembly 50 is used to terminate the wire sleeved on the number tube; so that the terminal can be fixed to the wire sleeved on the number tube through the terminal assembly 50.

[0085] Please refer to the attached Figure 1 and 5 The terminal assembly 50 includes a fifth bracket 51 and a terminal piece 52; the fifth bracket 51 is installed on the frame 10; when the transfer assembly 90 is arranged relative to the terminal assembly 50, the terminal piece 52 can be telescopically installed on the fifth bracket 51 to facilitate adjustment of the position of the terminal piece 52 relative to the fifth bracket 51. The terminal piece 52 is used to terminate the wire that is sleeved with a number tube; so that the terminal can be fixed to the wire that is sleeved with a number tube through the terminal piece 52.

[0086] Please refer to the attached Figure 1 and 9 In the embodiment of the present application, the number tube shell inserter 100 further includes a CCD detector 110, which is disposed on the right side of the termination assembly 50. The CCD detector 110 is used to detect the terminated wires, so that the CCD detector 110 uses an industrial camera to replace human eyes to complete the identification, measurement and positioning of the terminated wires.

[0087] Please refer to the attached Figure 1 and 6 In an embodiment of the present application, a tube pulling assembly 60 is arranged on one side of the terminal assembly 50. The tube pulling assembly 60 is used to pull the wire after the terminal is punched to output a wire assembly in a formed state, so that the wire after the terminal is pulled through the tube pulling assembly 60.

[0088] Please refer to the attached Figure 1 and 6At this time, the tube pulling assembly 60 includes a sixth bracket 61 and a tube pulling member 62; the sixth bracket 61 is installed on the frame 10; the tube pulling member 62 is movably installed on the sixth bracket 61 to facilitate adjustment of the tube pulling member 62 relative to the sixth bracket 61, and is used to pull the tube of the wire after the terminal is punched to test the toughness of the wire after the terminal is punched.

[0089] Please refer to the attached Figure 1 and 6 The pulling tube member 62 includes a third clamping member 621 and a fourth clamping member 622. The third clamping member 621 is arranged in the horizontal direction, and the fourth clamping member 622 is arranged in the vertical direction. The third clamping member 621 and the fourth clamping member 622 can be telescopically connected to the sixth bracket 61. The third clamping member 621 and the fourth clamping member 622 respectively clamp the wire after the terminal is punched. Optionally, the telescopic distance of the fourth clamping member 622 is greater than the telescopic distance of the third clamping member 621.

[0090] Please refer to the attached Figure 1 and 6 A first guide rail 623 is provided between the third clamping member 621 and the sixth bracket 61. The fixed end of the first guide rail 623 is connected to the sixth bracket 61. The output end of the first guide rail 623 is connected to the third clamping member 621 and drives the third clamping member 621 to extend and retract, so that the third clamping member 621 can be extended and retracted relative to the sixth bracket 61 through the first guide rail 623.

[0091] Please refer to the attached Figure 1 and 6 A fifth motor 624 and a gear transmission module 625 are provided between the fourth clamping member 622 and the sixth bracket 61. The fixed end of the fifth motor 624 is connected to the sixth bracket 61, and the output end of the fifth motor 624 is connected to one end of the gear transmission module 625. The other end of the gear transmission module 625 is connected to the fourth clamping member 622, and drives the fourth clamping member 622 to extend and retract, so that the fourth clamping member 622 can be extended and retracted relative to the sixth bracket 61 through the fifth motor 624 and the gear transmission module 625.

[0092] Please refer to the attached Figure 1 and 7 In the embodiment of the present application, the baking tube assembly 70 is arranged on the right side of the drawing tube assembly 60. The baking tube assembly 70 is used to bake the wire after the end is punched, so that the number tube shrinks to the wire under the action of heat, so that the number tube is fixed to the outer surface of the wire.

[0093] Please refer to the attached Figure 1 and 7At this time, the tube drying assembly 70 includes a seventh bracket 71 and a tube drying member 72; the seventh bracket 71 is telescopically mounted on the frame 10 to facilitate adjustment of the position of the seventh bracket 71 relative to the frame 10; the tube drying member 72 is mounted on the seventh bracket 71 and expands and contracts with the expansion and contraction of the seventh bracket 71. The tube drying member 72 is used to shape and bake the wire after the tube is drawn, so that the heat output by the tube drying member 72 is transferred to the wire after the tube is drawn, thereby facilitating the contraction of the number tube of the wire after the tube is drawn.

[0094] Please refer to the attached Figure 1 and 10 In the embodiment of the present application, the number tube plug-in machine 100 further includes a conversion assembly 120, which includes a rotating member 121 and a fifth clamping member 122. The fixed end of the rotating member 121 is connected to the frame 10, and the output end of the rotating member 121 is connected to the fifth clamping member 122, and drives the fifth clamping member 122 to rotate. The fifth clamping member 122 is used to clamp the wire after the number tube is retracted, so as to facilitate the conversion of the wire after the number tube is retracted, so as to adjust the direction of the wire after the number tube is retracted.

[0095] Please refer to the attached Figure 1 and 11 In the embodiment of the present application, the plug shell assembly 80 is arranged on the right side of the drying tube assembly 70. The plug shell assembly 80 is used to insert the shell of the wire after passing through the drying tube so as to fix the shell to the wire after passing through the drying tube.

[0096] Please refer to the attached Figure 1 and 11 The plug shell assembly 80 includes an eighth bracket 81 and a plug shell part 82; the eighth bracket 81 is installed on the frame 10; the plug shell part 82 is installed on the eighth bracket 81, and is used to insert the wire after the drying tube into the shell, so that the wire after the drying tube can be inserted into the shell through the plug shell part 82, thereby facilitating the shell to be fixed to the outer surface of the wire after the drying tube to form a finished wire product.

[0097] Please refer to the attached Figure 1 and 11 The plug-in shell assembly 80 also includes a plastic shell conveying line 83 and a positioning member 84. The plastic shell conveying line 83 is connected to the eighth bracket 81. The plastic shell conveying line 83 is used to output the plastic shell. The positioning member 84 is connected to the eighth bracket 81. The positioning member 84 is used to position the plastic shell, ensuring the plug-in shell member 82's plug-in accuracy with respect to the wire after the drying tube.

[0098] Please refer to the attached Figure 1 and 11The plug-in shell assembly 80 also includes a Y-axis linear motor 85, an X-axis linear motor 86 and a Z-axis linear motor 87. The Y-axis linear motor 85 is connected to the eighth bracket 81, the X-axis linear motor 86 is connected to the output end of the Y-axis linear motor 85, the Z-axis linear motor 87 is connected to the output end of the X-axis linear motor 86, and the output end of the Z-axis linear motor 87 is connected to the plug-in shell 82, so that the plug-in shell 82 can move along the X-axis, Y-axis and Z-axis directions.

[0099] Please refer to the attached Figure 1 and 8 In the embodiment of the present application, the transfer assembly 90 is arranged on the rear side of the tube threading assembly 30, and the transfer assembly 90 is installed on the frame 10. The transfer assembly 90 passes through the wire feeding assembly 20, the tube threading assembly 30, the wire stripping assembly 40, the end-breaking assembly 50, the tube pulling assembly 60, the tube drying assembly 70 and the shell plugging assembly 80 in sequence, and the wires output by the wire feeding assembly 20 pass through the tube threading assembly 30, the wire stripping assembly 40, the end-breaking assembly 50, the tube pulling assembly 60, the tube drying assembly 70 and the shell plugging assembly 80 in sequence, so that the transfer assembly 90 can realize the transfer of the wires output by the wire feeding assembly 20, avoid the transfer of the wires under human influence, and improve the working efficiency of the number tube shell plugging machine 100.

[0100] Please refer to the attached Figure 1 and 8 The wire feeding assembly 20, the tube threading assembly 30, the wire stripping assembly 40, the end-breaking assembly 50, the tube pulling assembly 60, the tube drying assembly 70 and the plug shell assembly 80 are sequentially arranged along the length direction of the frame 10, and the transfer assembly 90 is arranged along the length direction of the frame 10 so that the transfer assembly 90 can sequentially pass through the wire feeding assembly 20, the tube threading assembly 30, the wire stripping assembly 40, the end-breaking assembly 50, the tube pulling assembly 60, the tube drying assembly 70 and the plug shell assembly 80. The transfer assembly 90 includes a transfer seat 91 and a first clamping member 92. The transfer seat 91 is movably connected to the frame 10 and is arranged along the length direction of the frame 10. The first clamping member 92 is mounted on the transfer base 91 and is used to clamp the wire so that the first clamping member 92 moves along with the movement of the transfer base 91, thereby facilitating the first clamping member 92 to clamp the wire and pass it through the tube threading assembly 30, the wire stripping assembly 40, the end-punching assembly 50, the tube pulling assembly 60, the drying tube assembly 70 and the plug-in shell assembly 80 in sequence, thereby facilitating the tube threading assembly 30, the wire stripping assembly 40, the end-punching assembly 50, the tube pulling assembly 60, the drying tube assembly 70 and the plug-in shell assembly 80 to process the wire respectively.

[0101] Please refer to the attached Figure 1 and 8A second guide rail 93 is provided between the transfer seat 91 and the frame 10. The fixed end of the second guide rail 93 is connected to the frame 10. The conveying end of the second guide rail 93 is connected to the transfer seat 91 and drives the transfer seat 91 to move, so that the transfer seat 91 can move relative to the frame 10 through the second guide rail 93.

[0102] Please refer to the attached Figure 1 and 11 The number tube shell inserting machine 100 also includes a discharge assembly 130; the discharge assembly 130 is arranged between the shell inserting assembly 80 and the transfer assembly 90, and is used to output the finished wire so that the finished wire can be transferred through the discharge assembly 130, thereby facilitating the combination of the wire feeding assembly 20, the tube threading assembly 30, the wire stripping assembly 40, the end-piercing assembly 50, the tube pulling assembly 60, the drying tube assembly 70, the shell inserting assembly 80, the transfer assembly 90 and the discharge assembly 130 to realize the automatic assembly of wire feeding and discharging.

[0103] Please refer to the attached Figure 1 and 11 The discharge assembly 130 includes a discharge conveyor line 131 and a storage barrel 132. The storage barrel 132 is connected to the discharge conveyor line 131. The finished wire product clamped by the first clamping member 92 is placed on the discharge conveyor line 131. The discharge conveyor line 131 is transferred to the storage barrel 132 under the action of transportation, so that the storage barrel 132 can store the finished wire product.

[0104] Compared with the prior art, the beneficial effects of the present invention are:

[0105] The utility model provides a number tube shell inserting machine 100, wherein a wire feeding assembly 20 is installed on a frame 10; the wire feeding assembly 20 is used to feed the wire; a tube threading assembly 30 is arranged on one side of the wire feeding assembly 20; the tube threading assembly 30 is used to thread the wire into the number tube; a wire stripping assembly 40 is arranged on one side of the tube threading assembly 30; the wire stripping assembly 40 is used to strip the wire sleeved with the number tube; a terminal assembly 50 is arranged on one side of the wire stripping assembly 40, and the terminal assembly 50 is used to terminal the wire sleeved with the number tube; a tube drawing assembly 60 is arranged on one side of the terminal drawing assembly 50, and the tube drawing assembly 60 is used to draw the wire after the terminal is tied, so as to output the wire assembly in a formed state; a tube drying assembly 70 is arranged on one side of the tube drying assembly 60, and the tube drying assembly 70 is used to dry the wire after the terminal is tied. The number tube is baked so that the number tube shrinks to the wire under the action of heat; the plug shell assembly 80 is arranged on one side of the baking tube assembly 70, and the plug shell assembly 80 is used to plug the wire after the baking tube; the transfer assembly 90 is installed on the frame 10, and the transfer assembly 90 passes through the wire feeding assembly 20, the tube threading assembly 30, the wire stripping assembly 40, the end-breaking assembly 50, the tube pulling assembly 60, the baking tube assembly 70 and the plug shell assembly 80 in sequence, and the wire output from the wire feeding assembly 20 passes through the tube threading assembly 30, the wire stripping assembly 40, the end-breaking assembly 50, the tube pulling assembly 60, the baking tube assembly 70 and the plug shell assembly 80 in sequence, so that the transfer assembly 90 can realize the transfer of the wire output from the wire feeding assembly 20, avoid the transfer of the wire under human influence, and improve the working efficiency of the number tube plug shell machine 100.

[0106] In the description of this application, the terms "first" and "second" are used for descriptive purposes only and should not be understood to indicate or imply relative importance or implicitly specify the number of technical features indicated. Therefore, features limited to "first" and "second" may explicitly or implicitly include one or more features.

[0107] This document uses specific examples to illustrate the principles and implementation methods of this application. The description of the above embodiments is only used to help understand the method and core ideas of this application. At the same time, for technical personnel in this field, based on the ideas of this application, there will be changes in the specific implementation methods and application scope. In summary, the content of this specification should not be understood as a limitation on this application.

Claims

1. A number tube shell inserting machine, characterized in that: include: frame; A wire feeding assembly is installed on the frame; The wire feeding assembly is used to feed the wire; A pipe threading assembly is provided on one side of the wire feeding assembly; the pipe threading assembly is used to thread the wires through the number tube; A wire stripping assembly is provided on one side of the tube threading assembly; the wire stripping assembly is used to strip the wires covered with number tubes; A terminal assembly is provided on one side of the wire stripping assembly, and is used to terminate the wires sleeved on the number tube; A tube drawing assembly is provided on one side of the end-punching assembly, and is used to draw the wire after the end-punching to output a wire assembly in a formed state; A tube drying assembly is provided on one side of the tube drawing assembly and is used to dry the wire after the wire has been terminated, so that the number tube shrinks to the wire under the action of heat; The plug-in shell assembly is arranged on one side of the drying tube assembly and is used to plug the wires after passing through the drying tube; A transfer assembly is installed on the frame, and the transfer assembly passes through the wire feeding assembly, the tube threading assembly, the wire stripping assembly, the end-bending assembly, the tube pulling assembly, the drying tube assembly and the plug-in shell assembly in sequence, and passes the wire output from the wire feeding assembly through the tube threading assembly, the wire stripping assembly, the end-bending assembly, the tube pulling assembly, the drying tube assembly and the plug-in shell assembly in sequence.

2. The number tube shell inserting machine according to claim 1, characterized in that: The wire feeding assembly, the tube threading assembly, the wire stripping assembly, the end-piercing assembly, the tube pulling assembly, the tube drying assembly and the plug shell assembly are arranged in sequence along the length direction of the rack; 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 used to clamp the wire and is installed on the transfer seat.

3. The number tube shell inserting machine according to claim 2, characterized in that: 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 the frame; The plurality of 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 first bracket and arranged alternately, and are used to calibrate the conveyed wire; The wire feeding assembly further includes a transfer member configured to transfer the calibrated wire to the first clamping member.

4. The number tube shell inserting machine according to claim 3, characterized in that: The pipe threading assembly includes a third bracket, a number pipe conveying component, and a number pipe cutting component; The number tube conveying member and the number tube cutting member are both installed on the third bracket. The number tube conveying member is used to convey number tubes. The number tube cutting member is used to cut the number tubes conveyed by the number tube conveying member to form number tubes to be inserted. When the transfer assembly is arranged relative to the number tube conveying member, the number tube to be inserted and the wire clamped by the first clamping member are inserted into each other.

5. The number tube shell inserting machine according to claim 2, characterized in that: The wire stripping assembly includes a fourth bracket and a plurality of stripping pieces; When the transfer assembly is arranged relative to the wire stripping assembly, the plurality of stripping members are telescopically connected to the fourth bracket and strip the outer skin of the wire clamped by the transfer assembly.

6. The number tube shell inserting machine according to claim 2, characterized in that: The end-breaking assembly includes a fifth bracket and an end-breaking piece; The fifth bracket is mounted on the frame; When the transfer assembly is arranged relative to the terminal-piercing assembly, the terminal-piercing piece can be telescopically mounted on the fifth bracket and is used to perform terminal piercing on the wires that are sleeved with number tubes.

7. The number tube shell inserting machine according to claim 2, characterized in that: The tube pulling assembly includes a sixth bracket and a tube pulling member; The sixth bracket is mounted on the frame; The tube-drawing member is movably mounted on the sixth bracket and is used to draw the tube of the wire after being terminated.

8. The number tube shell inserting machine according to claim 2, characterized in that: The drying tube assembly includes a seventh bracket and a drying tube member; The seventh bracket is telescopically mounted on the frame; The tube-baking member is mounted on the seventh bracket and is used to shape and bake the wire after the tube is drawn.

9. The number tube shell inserting machine according to claim 2, characterized in that: The plug-in shell assembly includes an eighth bracket and a plug-in shell component; The eighth bracket is mounted on the frame; The shell insert is installed on the eighth bracket and is used to insert the shell of the wire after being dried in the tube to form a finished wire product.

10. The number tube shell inserting machine according to claim 1, characterized in that: The number tube shell inserting machine also includes a discharging component; The discharging assembly is arranged between the plug housing assembly and the transfer assembly, and is used to output the finished wire.