A jacketed wire stripping device

CN224733361UActive Publication Date: 2026-09-08DONGGUAN MINGZHAN WIRING HARNESS EQUIPMENT CO LTD
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Patent Information

Application Number
CN202522153690.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-11
Publication Date
2026-09-08
Estimated Expiration
2035-10-11

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于:针对现有技术的不足,提供一种穿护套剥线装置,能够解决现有技术的操作精准性和效率低的技术问题

Benefits of technology

[0023] The beneficial effects of this utility model are as follows: This technical solution uses a feeding rack and its feeding channel to transport a preset quantity of sheathing material. The sheathing material is then corrected in its orientation by a sheathing correction component and its correction channel to achieve a preset angle. The transfer drive component then moves the material through space, combined with the position adjustment of the threading drive component, to allow the clamping component to thread the clamped wire material into the sheathing. After threading, the material is transferred to the stripping blade component for stripping. This effectively reduces manual labor, improves the smoothness and orderliness of the operation, increases operational efficiency, and enhances the precision of the processing.

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Abstract

This utility model belongs to the technical field of wire stripping and sheathing devices, specifically relating to a sheathing and sheathing device, including a frame and a feeding rack, a sheath conveying mechanism, a sheath clamping and transferring mechanism, and a wire stripping operation mechanism connected to the frame. The feeding rack has at least one feeding channel. The sheath conveying mechanism includes a sheath correction component; the sheath correction component has a correction channel; the correction channel is connected to the feeding channel. The sheath clamping and transferring mechanism includes a transfer drive component, a clamping component, and a wire threading drive component; the transfer drive component is connected to the wire threading drive component; the wire threading drive component is connected to the clamping component; the clamping component is connected to the correction channel. The wire stripping operation mechanism includes a stripping cutter component; the stripping cutter component has a wire stripping cutting cavity; the clamping component is connected to the wire stripping cutting cavity. This utility model can effectively reduce manual labor input and improve operational smoothness, thereby improving operational efficiency and processing accuracy.
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Description

Technical Field

[0001] This utility model belongs to the field of wire manufacturing technology, and in particular relates to a wire stripping device for inserting sheaths. Background Technology

[0002] Electric wires and cables consist of conductors (for conducting current) and various layers of metallic or non-metallic sheaths (for protecting insulation). When using cables in the field, they are cut to the required length, the sheaths are stripped, and the conductors are connected to various electrical equipment.

[0003] Currently, stripping the insulation sheath, especially the outer sheath, is often done with an electrician's knife. However, this operation is manual, which is inefficient and lacks precision. Furthermore, if the cut is too deep, it can damage the internal insulation layer, leading to subsequent breakdown or damage, posing a certain safety hazard. Utility Model Content

[0004] The purpose of this utility model is to provide a sheath stripping device that addresses the shortcomings of existing technologies, thereby solving the technical problems of low operational accuracy and efficiency in existing technologies.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] A sheath stripping device includes a frame and a feeding rack, a sheath conveying mechanism, a sheath clamping and transferring mechanism and a stripping operation mechanism connected to the frame.

[0007] The feeding rack is provided with at least one feeding channel;

[0008] The sheath conveying mechanism includes a sheath correction component; the sheath correction component has a correction channel; the correction channel is connected to the feeding channel.

[0009] The sheath clamping and transfer mechanism includes a transfer drive component, a clamping component, and a threading drive component; the transfer drive component is connected to the threading drive component; the threading drive component is connected to the clamping component; the clamping component is configured to communicate with the correction channel;

[0010] The wire stripping mechanism includes a stripping blade component; the stripping blade component is provided with a wire stripping cutting cavity; the clamping component is connected to the wire stripping cutting cavity.

[0011] Preferably, the transfer drive component includes a first transverse slide rail, a first slide block, a transfer drive cylinder, a second slide block, and a second slide rail; the first transverse slide rail is connected to the frame; the first slide block is slidably connected to the first transverse slide rail; a transverse drive cylinder is connected to one side end of the first slide block; the second slide rail and the transfer drive cylinder are connected to the top of the first slide block; and the transfer drive cylinder is drively connected to the second slide block; the second slide block is slidably connected to the second slide rail.

[0012] Preferably, the threading drive component includes a horizontal drive source and a vertical drive source; the vertical drive source is connected to the transfer drive component and is connected to the horizontal drive source; the horizontal drive source is connected to the clamping component.

[0013] Preferably, the height pushing source includes a height pushing cylinder, a height pushing support, a positioning support, and a supporting support; the positioning support is connected to the transfer drive component; the height pushing cylinder is connected to the positioning support and is drivenly connected to the height pushing support; the supporting support is connected to the top surface of the height pushing support away from the height pushing cylinder; the horizontal pushing source is disposed through the supporting support; the horizontal pushing source is connected to the positioning support.

[0014] And / or, the horizontal pushing source includes a horizontal pushing support and a horizontal pushing cylinder; the horizontal pushing cylinder is connected to the height pushing source and is connected to one end of the horizontal pushing support; the other end of the horizontal pushing support passes through the height pushing source and is connected to the clamping component.

[0015] Preferably, the clamping component includes a first limiting bracket, a second limiting bracket, and a pressing limiting component; the second limiting bracket is connected to the threading drive component; the second limiting bracket has a second limiting channel; the first limiting bracket is connected to the threading drive component; and the first limiting bracket has a first limiting channel; the two ends of the first limiting channel are respectively connected to the second limiting channel and the correction channel; the pressing limiting component is connected to the threading drive component; and the pressing limiting component extends into the first limiting channel.

[0016] Preferably, the pressing and limiting assembly includes a pressing drive cylinder, a connecting plate, and a pressing column; the pressing drive cylinder is connected to the threading drive component and to one end of the connecting plate; the other end of the connecting plate is connected to one end of the pressing column; the other end of the pressing column extends into the first limiting channel.

[0017] Preferably, the wire stripping mechanism further includes a positioning frame, a wire stripping push cylinder, and an assembly frame; the positioning frame is connected to the machine frame; the wire stripping push cylinder is connected to the positioning frame and is movably connected to the assembly frame; the stripping blade component is connected to the assembly frame.

[0018] Preferably, the stripping blade component includes an upper stripping blade, a lower stripping blade, and a double-headed cylinder; the double-headed cylinder is disposed on the frame; the two movable ends of the double-headed cylinder are respectively connected to the upper stripping blade and the lower stripping blade; and the stripping cutting cavity is formed between the upper stripping blade and the lower stripping blade.

[0019] Preferably, the upper stripping cutter and / or the lower stripping cutter includes an abutment plate, a cutter body, and a connecting plate; the abutment plate and the cutter body are stacked side by side; and the abutment plate extends into the wire stripping cutting cavity; the cutter body extends into the wire stripping cutting cavity; the end of the cutter body away from the wire stripping cutting cavity is connected to the connecting plate; the connecting plate is connected to the double-headed cylinder;

[0020] The upper peeling cutter's cutter body and the lower peeling cutter's cutter body are offset in the height direction; the upper peeling cutter's abutment plate and the lower peeling cutter's abutment plate are overlapped in the height direction.

[0021] Preferably, the sheath correction component includes an upper correction plate and a lower correction plate; the upper correction plate and the lower correction plate are arranged side by side along the height direction; and at least one correction channel is formed between the upper correction plate and the lower correction plate;

[0022] And / or, the sheath conveying mechanism further includes a sheath propulsion drive component; the sheath propulsion drive component is connected to the frame; the sheath propulsion drive component is connected to the sheath correction component so that the sheath correction component moves toward or away from the clamping component.

[0023] The beneficial effects of this utility model are as follows: This technical solution uses a feeding rack and its feeding channel to transport a preset quantity of sheathing material. The sheathing material is then corrected in its orientation by a sheathing correction component and its correction channel to achieve a preset angle. The transfer drive component then moves the material through space, combined with the position adjustment of the threading drive component, to allow the clamping component to thread the clamped wire material into the sheathing. After threading, the material is transferred to the stripping blade component for stripping. This effectively reduces manual labor, improves the smoothness and orderliness of the operation, increases operational efficiency, and enhances the precision of the processing. Attached Figure Description

[0024] The following will refer to the appendix. Figures 1-6 This section describes the features, advantages, and technical effects of exemplary embodiments of the present invention.

[0025] Figure 1 This is a schematic diagram of the structure of a sheath-peeling and stripping device according to an embodiment of the present invention;

[0026] Figure 2 This is a schematic diagram of the sheath clamping and transferring mechanism of a sheath stripping device according to an embodiment of the present invention;

[0027] Figure 3 This is a schematic diagram of the sheath clamping and transferring mechanism of a sheath stripping device according to an embodiment of the present invention;

[0028] Figure 4 This is a schematic diagram of the stripping operation mechanism of a sheath-peeling wire stripping device according to an embodiment of the present invention;

[0029] Figure 5 This is a schematic diagram of the stripping operation mechanism of a sheath-peeling wire stripping device according to an embodiment of the present invention;

[0030] Figure 6 This is a schematic diagram of the sheath conveying mechanism of a sheath stripping device according to an embodiment of the present invention.

[0031] In the diagram: 100 - rack;

[0032] 200 - Loading rack; 201 - Loading channel;

[0033] 300 - Sheath conveying mechanism; 310 - Sheath propulsion drive component; 311 - Sheath propulsion drive screw; 312 - Third slide rail; 313 - Third slide block; 320 - Sheath correction component; 321 - Upper correction plate; 322 - Lower correction plate; 323 - Correction channel; 324 - First correction lifting cylinder; 325 - Second correction lifting cylinder;

[0034] 400 - Sheath clamping and transferring mechanism; 410 - Transfer driving component; 411 - First transverse slide rail; 412 - First slide block; 413 - Transfer driving cylinder; 414 - Second slide block; 4141 - Mounting groove; 415 - Second slide rail; 420 - Clamping component; 421 - First limiting bracket; 4211 - First limiting channel; 4212 - Limiting hole; 422 - Second limiting bracket; 4221 - First limiting plate; 4222 - Second limiting plate Position plate; 4223-Second limiting channel; 423-Press limiting component; 4231-Press driving cylinder; 4232-Connecting plate; 4233-Pressing column; 430-Wire threading driving component; 431-Horizontal pushing source; 4311-Horizontal pushing support; 4312-Horizontal pushing cylinder; 432-Height pushing source; 4321-Height pushing cylinder; 4322-Height pushing support; 4323-Positioning support; 4324-Supporting support;

[0035] 500 - Wire stripping operating mechanism; 510 - Wire stripping and cutting blade assembly; 511 - Upper wire stripping and cutting blade; 512 - Lower wire stripping and cutting blade; 513 - Double-headed cylinder; 501 - Wire stripping and cutting cavity; 502 - Abutment plate; 503 - Cutting blade body; 504 - Angled blade groove; 505 - Connecting plate; 506 - Discharge channel; 520 - Positioning frame; 530 - Wire stripping push cylinder; 540 - Assembly frame. Detailed Implementation

[0036] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application pertains; the terminology used herein is intended to particularly describe embodiments and not to limit the scope of this application; the terms “comprising” and “having”, and any variations thereof, in the specification, claims, and foregoing description of the drawings are intended to cover non-exclusive inclusion.

[0037] In the description of the embodiments of this application, technical terms such as "first" and "second" are used only to distinguish different objects and should not be construed as indicating or implying relative importance or implicitly specifying the number, specific order, or primary and secondary relationship of the indicated technical features. In the embodiment description, "multiple" refers to two or more, unless otherwise specifically defined.

[0038] The term 'embodiment' means that a particular feature, structure, or characteristic described exists in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0039] In the description of the embodiments in this application, the term "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or multiple situations existing alone. In addition, the character " / " in this document generally indicates that the related objects before and after are in an "or" relationship.

[0040] In the description of the embodiments of this application, unless otherwise expressly specified and limited, technical terms such as "installation," "connection," "joining," and "fixing" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can also refer to a mechanical connection or an electrical connection. They can be directly connected or indirectly connected through an intermediate medium, manifesting as internal communication between two components or an interaction between two components. For those skilled in the art, the specific meaning of the above terms in the embodiments of this application can be understood according to the specific circumstances.

[0041] The following is in conjunction with the appendix Figures 1-6 The present invention will be described in further detail, but this is not intended to limit the scope of the present invention.

[0042] like Figure 1 and 6 As shown, in one embodiment of the present invention, the sheath stripping device includes a frame 100 and a feeding rack 200, a sheath conveying mechanism 300, a sheath clamping and transferring mechanism 400 and a stripping operation mechanism 500 connected to the frame 100.

[0043] The feeding rack 200 is provided with at least one feeding channel 201; the feeding channel 201 is used to convey at least one sheath material;

[0044] The sheath conveying mechanism 300 includes a sheath correction component 320; the sheath correction component 320 is disposed on the frame 100; and the sheath correction component 320 is provided with a correction channel 323; the correction channel 323 is connected to the feeding channel 201.

[0045] The sheath clamping and transfer mechanism 400 includes a transfer drive component 410, a clamping component 420, and a threading drive component 430; the mounting end of the transfer drive component 410 is connected to the frame 100; the movable end of the transfer drive component 410 is connected to the mounting end of the threading drive component 430, so that the threading drive component 430 moves along a first direction (Y-axis) and a second direction (X-axis); the movable end of the threading drive component 430 is connected to the mounting end of the clamping component 420; the clamping component 420 is connected to the correction channel 323.

[0046] The wire stripping mechanism 500 includes a stripping blade component 510; the stripping blade component 510 is mounted on the frame 100; and the stripping blade component 510 is provided with a wire stripping cutting cavity 501; the clamping component 420 is connected to the wire stripping cutting cavity 501.

[0047] The technical solution of this utility model utilizes a feeding rack and its feeding channel to transport a preset quantity of sheathing material. The sheathing material is then corrected in its orientation by a sheathing correction component and its correction channel to achieve a preset angle. Next, the transfer drive component, combined with the position adjustment function of the threading drive component, enables the clamping component to thread the clamped wire material into the sheathing. After threading, the material is transferred to the stripping blade component for stripping. This effectively reduces manual labor, improves the smoothness and orderliness of the operation, increases operational efficiency, and enhances the precision of the processing.

[0048] In some implementation methods, such as Figure 1 As shown, the feeding channel 201 and the correction channel 323 are arranged in a straight line; the direction of the wire stripping and cutting cavity 501 is parallel to the direction of the correction channel 323. That is, the sheath conveying mechanism 300 and the feeding rack 200 are arranged in a straight line; the sheath conveying mechanism 300 and the wire stripping operation mechanism 500 are arranged side by side; the sheath clamping and transfer mechanism 400 is connected to the side end of the sheath conveying mechanism 300 and the wire stripping operation mechanism 500; in order to improve the utilization of space, improve the smoothness and orderliness of operation, thereby improving the operating efficiency and the accuracy of processing operation.

[0049] Specifically, in some implementations, such as Figure 1 and 2As shown, the transfer drive component 410 includes a first transverse slide rail 411, a first slide block 412, a transfer drive cylinder 413, a second slide block 414, and a second slide rail 415. The first transverse slide rail 411 is connected to the frame 100. The bottom of the first slide block 412 is slidably connected to the first transverse slide rail 411. A transverse drive cylinder is connected to one side of the first slide block 412. The second slide rail 415 and the transfer drive cylinder 413 are connected to the top of the first slide block 412. The transfer drive cylinder 413 is drivenly connected to the second slide block 414. The second slide block 414 is slidably connected to the second slide rail 415. In other words, during use, the lateral movement drive cylinder and the transfer drive cylinder 413 are driven to move the clamping component 420 to the wire material loading position, clamp and transfer it to the opening of the correction channel 323; and the wire threading drive component 430 is driven to thread the wire into the inside of the sheath to form the required assembly; then the wire threading drive component 430 and the clamping component 420 are driven to pull the required assembly out of the correction channel 323; finally, driven by the lateral movement drive cylinder and the transfer drive cylinder 413, it is transferred to the stripping blade component for wire stripping operation; thus effectively reducing manual input and improving the smoothness and orderliness of operation; thereby improving operating efficiency; and improving the accuracy of processing operation.

[0050] Specifically, in some implementations, such as Figure 1 and 2 As shown, the threading drive component 430 includes a horizontal push source 431 and a height push source 432; the mounting end of the height push source 432 is connected to the transfer drive component 410 (the second slide 414), and the movable end of the height push source 432 is connected to the mounting end of the horizontal push source 431; the movable end of the horizontal push source 431 is connected to the clamping component 420. In some embodiments, such as... Figure 2 and 3 As shown, the height-driven source 432 includes a height-driven cylinder 4321, a height-driven support 4322, a positioning support 4323, and a support support 4324. The positioning support 4323 is connected to the transfer drive component 410 (the second slide 414). The height-driven cylinder 4321 is connected to the positioning support 4323 and is drivenly connected to the height-driven support 4322. The support support 4324 is connected to the top surface of the height-driven support 4322 away from the height-driven cylinder 4321. The movable end of the horizontal drive source 431 passes through the support support 4324. The mounting end of the horizontal drive source 431 is connected to the positioning support 4323. Further, the support support 4324 includes an upper support plate and a lower support plate arranged side by side. A support cavity is provided between the upper support plate and the lower support plate. The movable end of the horizontal drive source 431 passes through the support cavity to ensure the compactness of the assembly and the orderliness and smoothness of the operation. In some embodiments, such as... Figure 2 and3 As shown, the horizontal pushing source 431 includes a horizontal pushing support 4311 and a horizontal pushing cylinder 4312; the horizontal pushing cylinder 4312 is connected to the height pushing source 432 (middle positioning support 4323) and is connected to one end of the horizontal pushing support 4311; the other end of the horizontal pushing support 4311 passes through the height pushing source 432 (middle support support 4324) and is connected to the clamping member 420. Further, as... Figure 2 and 3 As shown, the second slide block 414 is provided with a mounting groove 4141; the horizontal push cylinder 4312 is movably arranged along the height direction of the mounting groove 4141 to ensure the compactness of the assembly and the orderliness and smoothness of the operation. That is, in use, the height push cylinder 4321 and the horizontal push cylinder 4312 are driven so that the clamping component 420 reaches the preset position to facilitate clamping the wire; at the same time, it is convenient for the wire to pass into the sheath; and it is convenient for the required assembly to be pulled out from the correction channel 323; thereby effectively reducing manual input and improving the smoothness and orderliness of the operation; thus improving the operating efficiency; and improving the accuracy of the processing operation.

[0051] Specifically, in some implementations, such as Figure 1 and 2 As shown in Figure 3, the clamping component 420 includes a first limiting bracket 421, a second limiting bracket 422, and a pressing limiting component 423; the second limiting bracket 422 is connected to the height pushing source 432 (middle support 4324) of the threading drive component 430; the second limiting bracket 422 is provided with a second limiting channel 4223; the first limiting bracket 421 is connected to the high horizontal pushing source 431 (middle horizontal pushing support 4311) of the threading drive component 430; and the first limiting bracket 421 is provided with a first limiting channel 4223. A limiting channel 4211 is provided; the two ends of the first limiting channel 4211 are respectively connected to the second limiting channel 4223 and the correction channel 323; the top of the first limiting bracket 421 is provided with a limiting hole 4212 connected to the first limiting channel 4211; the pressing limiting component 423 is connected to the height pushing source 432 (middle support 4324) of the wire threading drive component 430; and the pressing end of the pressing limiting component 423 passes through the limiting hole 4212 and extends into the first limiting channel 4211. In some embodiments, such as Figure 2 and 3 As shown, the second limiting bracket 422 includes a first limiting plate 4221 and a second limiting plate 4222 stacked together (by bolt assembly); and at least one second limiting channel 4223 is formed between the first limiting plate 4221 and the second limiting plate 4222. In some embodiments, such as... Figure 2 and 3As shown, the pressing and limiting assembly 423 includes a pressing drive cylinder 4231, a connecting plate 4232, and a pressing column 4233; the pressing drive cylinder 4231 is connected to the height pushing source 432 (middle support 4324) of the wire threading drive component 430, and is connected to one side of the connecting plate 4232; the other side of the connecting plate 4232 is connected to one side of the pressing column 4233; the other side of the pressing column 4233 passes through the limiting hole 4212 and extends into the first limiting channel 4211. In other words, during use, after the wire or the required assembly is sequentially inserted into the first limiting channel 4211 and the second limiting channel 4223, the pressing drive cylinder 4231 and the pressing column 4233 are driven, so that the pressing column 4233 passes through the first limiting channel 4211 and presses the wire or the required assembly; thereby effectively reducing manual input and improving the smoothness and orderliness of operation; thus improving operating efficiency; and improving the accuracy of processing operation.

[0052] Specifically, in some implementations, such as Figure 1 and 4 As shown, the wire stripping mechanism 500 also includes a positioning frame 520, a wire stripping push cylinder 530, and an assembly frame 540. The positioning frame 520 is connected to the frame 100; the wire stripping push cylinder 530 is connected to the positioning frame 520 and is drivenly connected to the assembly frame 540; the stripping blade component 510 is connected to the assembly frame 540. In use, when the stripping blade component 510 and its wire stripping cutting cavity 501 clamp and strip the required assembly, the wire stripping push cylinder 530 is driven to move the stripping blade component 510 away from the sheath clamping and transferring mechanism 400, thereby stripping the rubber. This effectively reduces manual labor and improves the smoothness and orderliness of the operation.

[0053] Specifically, in some implementations, such as Figure 1 and 4 As shown, the stripping blade component 510 includes an upper stripping blade 511, a lower stripping blade 512, and a double-headed cylinder 513; the mounting end of the double-headed cylinder 513 is connected to the mounting frame 540; the two movable ends of the double-headed cylinder 513 are respectively connected to the upper stripping blade 511 and the lower stripping blade 512; and the stripping cutting cavity 501 is formed between the upper stripping blade 511 and the lower stripping blade 512. In some embodiments, such as... Figure 4 and 5As shown, the upper stripping cutter 511 and / or the lower stripping cutter 512 include an abutment plate 502, a cutter body 503, and a connecting plate 505; the abutment plate 502 and the cutter body 503 are stacked side by side; and the abutment plate 502 extends into the wire stripping cutting cavity 501; the cutter body 503 extends into the wire stripping cutting cavity 501; the side of the cutter body 503 away from the wire stripping cutting cavity 501 is connected to the connecting plate 505; the connecting plate 505 is connected to the double-headed cylinder 513; and the cutter body 503 of the upper stripping cutter 511 and the cutter body 503 of the lower stripping cutter 512 are offset in the height direction; the abutment plate 502 of the upper stripping cutter 511 and the abutment plate 502 of the lower stripping cutter 512 are overlapped in the height direction. Further, as Figure 5 As shown, the cutter body 503 has at least one V-shaped oblique groove 504 on one side facing the wire stripping cutting cavity 501. In use, the double-headed cylinder 513 is driven, causing the cutter body 503 and its V-shaped oblique groove 504, which are staggered on the upper and lower sides, to abut against the outer surface of the sheath. Combined with the pressing and clamping action of the abutment plates 502 at the upper and lower inner sides, this prevents the sheath from shaking. Then, under the pushing action of the wire stripping push cylinder 530, the upper stripping cutter 511 and the lower stripping cutter 512 peel off the rubber. This effectively reduces manual labor and improves the smoothness and orderliness of the operation. Furthermore, in some embodiments, such as... Figure 5 As shown, the connecting plate 505 of the upper stripper 511 and the connecting plate 505 of the lower stripper 512 are provided with a discharge channel 506; the discharge channel 506 is arranged through the thickness direction of the connecting plate 505 and is connected to the wire stripping cutting cavity 501; so as to achieve rapid material discharge and ensure the orderly operation of wire stripping and the cleanliness of the equipment.

[0054] Specifically, in some implementations, such as Figure 1 and 6 As shown, the sheath conveying mechanism 300 further includes a sheath propulsion drive component 310; the mounting end of the sheath propulsion drive component 310 is connected to the frame 100; the movable end of the sheath propulsion drive component 310 is connected to the sheath correction component 320, so that the sheath correction component 320 moves toward or away from the clamping component 420. In some embodiments, such as... Figure 6As shown, the sheath propulsion drive component 310 includes a sheath propulsion drive screw 311, a third slide rail 312, and a third slide block 313. The third slide rail 312 is connected to the frame 100; the third slide block 313 is slidably connected to the third slide rail 312; the sheath propulsion drive screw 311 is movably connected to the third slide block 313, and one end of the sheath propulsion drive screw 311 is connected to a sheath propulsion drive motor; the sheath propulsion drive motor is connected to the third slide rail 312. In use, the sheath propulsion drive motor is driven, causing the third slide block 313 and the sheath correction component 320 to move towards the clamping component 420, thereby accelerating the assembly between the sheath and the wire; thus effectively reducing manual input and improving the smoothness and orderliness of operation.

[0055] Specifically, in some implementations, such as Figure 1 and 6 As shown, the sheath correction component 320 includes an upper correction plate 321 and a lower correction plate 322; the upper correction plate 321 and the lower correction plate 322 are arranged side by side along the height direction; and at least one correction channel 323 is formed between the upper correction plate 321 and the lower correction plate 322; the shape of the correction channel 323 corresponds to the shape of the sheath. Further, as Figure 6 As shown, a first correction lifting cylinder 324 is provided on the side of the upper correction plate 321 away from the lower correction plate 322; the first correction lifting cylinder 324 is connected to the third slide 313; a second correction lifting cylinder 325 is provided on the side of the lower correction plate 322 away from the upper correction plate 321; the second correction lifting cylinder 325 is connected to the third slide 313.

[0056] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style of the specification is merely for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

[0057] Based on the disclosure and teachings of the above specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments described above, and any obvious improvements, substitutions, or modifications made by those skilled in the art based on this utility model are within the protection scope of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model.

Claims

1. A jacketed wire stripping device characterized by: It includes a frame and a feeding rack, a sheath conveying mechanism, a sheath clamping and transferring mechanism and a wire stripping operation mechanism connected to the frame; The feeding rack is provided with at least one feeding channel; The sheath conveying mechanism includes a sheath correction component; the sheath correction component has a correction channel; the correction channel is connected to the feeding channel. The sheath clamping and transfer mechanism includes a transfer drive component, a clamping component, and a threading drive component; the transfer drive component is connected to the threading drive component; the threading drive component is connected to the clamping component; the clamping component is configured to communicate with the correction channel; The wire stripping mechanism includes a stripping blade component; the stripping blade component is provided with a wire stripping cutting cavity; the clamping component is connected to the wire stripping cutting cavity.

2. The jacket stripping device of claim 1, wherein: The transfer drive component includes a first transverse slide rail, a first slide block, a transfer drive cylinder, a second slide block, and a second slide rail; the first transverse slide rail is connected to the frame; the first slide block is slidably connected to the first transverse slide rail; a transverse drive cylinder is connected to one side end of the first slide block; the second slide rail and the transfer drive cylinder are connected to the top of the first slide block; and the transfer drive cylinder is drively connected to the second slide block; the second slide block is slidably connected to the second slide rail.

3. A jacket stripping device according to claim 1 or 2, wherein: The threading drive component includes a horizontal drive source and a vertical drive source; the vertical drive source is connected to the transfer drive component and is connected to the horizontal drive source; the horizontal drive source is connected to the clamping component.

4. The jacket stripping device of claim 3, wherein: The height-driven source includes a height-driven cylinder, a height-driven support, a positioning support, and a supporting support; the positioning support is connected to the transfer drive component; the height-driven cylinder is connected to the positioning support and is driven by the height-driven support; the supporting support is connected to the top surface of the height-driven support away from the height-driven cylinder; the horizontal-driven source is disposed through the supporting support; the horizontal-driven source is connected to the positioning support. And / or, the horizontal pushing source includes a horizontal pushing support and a horizontal pushing cylinder; the horizontal pushing cylinder is connected to the height pushing source and is connected to one end of the horizontal pushing support; the other end of the horizontal pushing support passes through the height pushing source and is connected to the clamping component.

5. The jacket stripping device of claim 3, wherein: The clamping component includes a first limiting bracket, a second limiting bracket, and a pressing limiting component; the second limiting bracket is connected to the threading drive component; the second limiting bracket has a second limiting channel; the first limiting bracket is connected to the threading drive component; and the first limiting bracket has a first limiting channel; the two ends of the first limiting channel are respectively connected to the second limiting channel and the correction channel; the pressing limiting component is connected to the threading drive component; and the pressing limiting component extends into the first limiting channel.

6. The jacket stripping device of claim 5, wherein: The pressing and limiting assembly includes a pressing drive cylinder, a connecting plate, and a pressing column; the pressing drive cylinder is connected to the threading drive component and to one end of the connecting plate; the other end of the connecting plate is connected to one end of the pressing column; the other end of the pressing column extends into the first limiting channel.

7. The jacket stripping device of claim 1, wherein: The wire stripping mechanism further includes a positioning frame, a wire stripping push cylinder, and an assembly frame; the positioning frame is connected to the machine frame; the wire stripping push cylinder is connected to the positioning frame and is movably connected to the assembly frame; the stripping blade component is connected to the assembly frame.

8. The jacket stripping device of claim 1 or 7, wherein: The stripping blade component includes an upper stripping blade, a lower stripping blade, and a double-headed cylinder; the double-headed cylinder is mounted on the frame; the two movable ends of the double-headed cylinder are respectively connected to the upper stripping blade and the lower stripping blade; and the stripping cutting cavity is formed between the upper stripping blade and the lower stripping blade.

9. The jacket stripping device of claim 8, wherein: The upper stripping cutter and / or the lower stripping cutter includes an abutment plate, a cutter body, and a connecting plate; the abutment plate and the cutter body are stacked side by side; and the abutment plate extends to the wire stripping cutting cavity; the cutter body extends to the wire stripping cutting cavity; the end of the cutter body away from the wire stripping cutting cavity is connected to the connecting plate; the connecting plate is connected to the double-headed cylinder; The upper peeling cutter's cutter body and the lower peeling cutter's cutter body are offset in the height direction; the upper peeling cutter's abutment plate and the lower peeling cutter's abutment plate are overlapped in the height direction.

10. The jacket stripping device of claim 1, wherein: The sheath correction component includes an upper correction plate and a lower correction plate; the upper correction plate and the lower correction plate are arranged side by side along the height direction; and at least one correction channel is formed between the upper correction plate and the lower correction plate; And / or, the sheath conveying mechanism further includes a sheath propulsion drive component; the sheath propulsion drive component is connected to the frame; The sheath propulsion drive component is connected to the sheath correction component so that the sheath correction component moves toward or away from the clamping component.