Insulation wire sheath stripping device

CN116260081BActive Publication Date: 2026-09-29EAST CHINA ELECTRIC POWER TEST & RES INST +1
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Patent Information

Application Number
CN202211684473.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-27
Publication Date
2026-09-29
Estimated Expiration
2042-12-27

AI Technical Summary

Technical Problem

而现有的外皮剥离装置在剥离导线外皮时往往无法完全清除绝缘层,需维护人员多次反复操作后才可能达到完全清理的效果,施工难度巨大,若操作不当可能会对导线的导电层造成损害

Benefits of technology

[0017]本发明提供了一种绝缘导线外皮剥离装置,在使用时通过厚度检测单元实时检测绝缘导线的外皮厚度,并且剥刀机构与厚度检测单元的位置相对设置,即使厚度检测单元所检测到与绝缘导线的导电层之间的距离转换为剥刀机构的出刀量,从而调整剥刀机构对绝缘导线外皮的切割深度,保证剥刀机构可完全将外皮剥离干净,并防止剥刀机构在剥离外皮时对导电层造成损害;此外,通过夹持机构对绝缘导线保持夹紧状态,以使剥刀机构在对绝缘导线进行旋转切割时可保证切割的稳定性,防止绝缘导线应外力的影响出现位置偏移、晃动等问题。

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Abstract

The application discloses an insulating wire sheath stripping device, which comprises a rotating disc mechanism, a driving mechanism, a control box and a clamping mechanism, the clamping mechanism is provided with a first clamping plate and a second clamping plate which can slide relative to each other, one side of the first clamping plate is provided with a thickness detection unit for detecting the thickness of the sheath, and one side of the second clamping plate is provided with a stripping cutter mechanism; in use, the thickness of the sheath of the insulating wire is detected in real time through the thickness detection unit, and the stripping cutter mechanism is arranged opposite to the position of the thickness detection unit, that is, the distance between the thickness detection unit and the conductive layer of the insulating wire is converted into the cutting amount of the stripping cutter mechanism, so that the cutting depth of the stripping cutter mechanism on the sheath of the insulating wire is adjusted, it is ensured that the stripping cutter mechanism can completely strip the sheath clean, and damage to the conductive layer caused by the stripping cutter mechanism when stripping the sheath is prevented; in addition, the stripping cutter mechanism can ensure the stability of cutting when rotatingly cutting the insulating wire through the clamping mechanism.
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Description

Technical Field

[0001] This invention relates to the field of power maintenance equipment technology, and in particular to a device for stripping the outer sheath of insulated wires. Background Technology

[0002] Emergency power restoration of distribution network lines typically requires the use of a stripping device to remove the insulation layer from the insulated conductors before connecting them to external power supply equipment. However, existing stripping devices often fail to completely remove the insulation layer when stripping the conductor's outer sheath, requiring maintenance personnel to perform repeated operations to achieve a complete clean. This process is extremely difficult, and improper operation may damage the conductive layer of the conductor.

[0003] It is evident that existing technologies still need improvement and enhancement. Summary of the Invention

[0004] In view of the shortcomings of the prior art, the purpose of the present invention is to provide an insulated wire sheath stripping device that can automatically adjust the stripping depth according to the insulation layer thickness of the insulated wire, thereby reducing the difficulty of the sheath stripping process and avoiding damage to the conductive layer of the insulated wire.

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

[0006] An insulated wire sheath stripping device includes a turntable mechanism, a drive mechanism, a control box, and a clamping mechanism. The drive mechanism is mounted on the turntable mechanism and is pulsatorically connected to it. The control box and the clamping mechanism are respectively mounted on opposite sides of the turntable mechanism and are rotatably connected to it. The clamping mechanism has a first clamping plate and a second clamping plate that can slide relative to each other. A thickness detection unit for detecting the sheath thickness is provided on one side of the first clamping plate, and a stripping mechanism is provided on one side of the second clamping plate. The stripping mechanism is positioned opposite to the thickness detection unit so that it can move back and forth toward the thickness detection unit. The control box is electrically connected to the drive mechanism, the clamping mechanism, the thickness detection unit, and the stripping mechanism. The control box is used to control the working state of the drive mechanism, the clamping mechanism, the thickness detection unit, and the stripping mechanism.

[0007] The insulation stripping device further includes a slide rail frame, with the bottom of the turntable mechanism slidably connected to the slide rail frame; the stripping blade mechanism is inclined toward the second clamping plate; both the first clamping plate and the second clamping plate have grooves on their opposite sides, and multiple protrusions are provided on the two side walls of the groove of the second clamping plate, so that the stripping blade mechanism can drive the turntable mechanism to slide linearly along the slide rail frame when rotating to strip the insulation.

[0008] In the aforementioned insulated wire sheath stripping device, the turntable mechanism includes a gearbox, a turntable, and a gear set. Both the turntable and the gear set are housed within the gearbox, and the turntable is pulsatorically connected to the gear set. The drive mechanism is located on one side of the gearbox and is pulsatorically connected to the gear set. Both the gearbox and the turntable have upward-opening first grooves. The control box and the clamping mechanism are respectively located on both sides of the turntable. The control box has an upward-opening second groove communicating with the first groove. Slider blocks are respectively located on both sides of the bottom of the gearbox, and a slide rail is provided on the slide rail frame to cooperate with and connect to the sliders.

[0009] In the aforementioned insulated wire sheath stripping device, multiple positioning detection units are arranged along the length of the slide rail frame, and a triggering part is provided on any of the sliders; the positioning detection unit is used to detect the positioning status of the triggering part.

[0010] In the aforementioned insulated wire sheath stripping device, the clamping mechanism further includes a frame and a first motor. The first motor is located at the bottom of the frame, and the first clamping plate and the second clamping plate are both located at the top of the frame via a transmission assembly. The first motor is connected to the transmission assembly so that the first clamping plate and the second clamping plate can perform relative opening and closing actions on the frame.

[0011] In the aforementioned insulated wire sheath stripping device, the transmission assembly includes a first lead screw and first guide rods respectively disposed on both sides of the first lead screw. Both ends of the first lead screw are rotatably connected to the frame, and both ends of the first guide rods are connected to the frame. A driven wheel is disposed at one end of the first lead screw, and a driving wheel is disposed on the output shaft of the first motor. The driving wheel is drively connected to the driven wheel. The first clamping plate and the second clamping plate are drively connected to the first lead screw via first lead screw nuts, and the first clamping plate and the second clamping plate are slidably connected to the two first guide rods. The threads of the first lead screw nuts on the first clamping plate and the second clamping plate are reversed.

[0012] In the aforementioned insulated wire sheath stripping device, a mounting frame is provided on one side of the second clamping plate, the mounting frame is inclined toward the second clamping plate, and the mounting frame is provided with an insert groove; the stripping mechanism is disposed in the insert groove.

[0013] In the aforementioned insulated wire sheath stripping device, the stripping mechanism includes a sliding box, a second motor, and a cutting head. The sliding box is provided with a sliding groove, and the cutting head is slidably connected to the sliding groove through a sliding part. The second motor is located on one side of the sliding box, and the second motor is drivenly connected to the sliding part.

[0014] In the aforementioned insulated wire sheath stripping device, a second lead screw and second guide rods respectively disposed at both ends of the second lead screw are provided in the sliding groove. The sliding part is connected to the second lead screw through a second lead screw nut, and the sliding part is slidably connected to the two second guide rods respectively.

[0015] In the aforementioned insulated wire sheath stripping device, a baffle is provided on one side of the mounting frame, and the baffle is located outside the stripping mechanism.

[0016] Beneficial effects:

[0017] This invention provides an insulated wire sheath stripping device. During use, a thickness detection unit monitors the thickness of the insulated wire sheath in real time. The stripping mechanism is positioned relative to the thickness detection unit, allowing the distance detected by the thickness detection unit between the wire sheath and the conductive layer of the insulated wire to be converted into the cutting depth of the stripping mechanism. This adjusts the cutting depth of the stripping mechanism, ensuring complete and thorough stripping of the sheath and preventing damage to the conductive layer during the stripping process. Furthermore, a clamping mechanism keeps the insulated wire firmly in place, ensuring cutting stability during the rotational cutting process and preventing positional shifts or wobbling caused by external forces. Attached Figure Description

[0018] Figure 1 A schematic diagram of the overall structure of the insulated wire sheath stripping device provided by the present invention. Figure 1 ;

[0019] Figure 2 A schematic diagram of the overall structure of the insulated wire sheath stripping device provided by the present invention. Figure 2 ;

[0020] Figure 3 A schematic diagram of the overall structure of the insulated wire sheath stripping device provided by the present invention. Figure 3 ;

[0021] Figure 4 A schematic diagram illustrating the usage state of the insulated wire sheath stripping device provided by the present invention;

[0022] Figure 5 This is a schematic diagram of the turntable mechanism in the insulated wire sheath stripping device provided by the present invention.

[0023] Figure 6 A disassembly diagram of the turntable mechanism in the insulated wire sheath stripping device provided by the present invention. Figure 1 ;

[0024] Figure 7A disassembly diagram of the turntable mechanism in the insulated wire sheath stripping device provided by the present invention. Figure 2 ;

[0025] Figure 8 This is a schematic diagram showing the installation state of the clamping mechanism and the stripping mechanism in the insulated wire sheath stripping device provided by the present invention.

[0026] Figure 9 A schematic diagram of the disassembled state of the clamping mechanism and the stripping mechanism in the insulated wire sheath stripping device provided by the present invention;

[0027] Figure 10 A schematic diagram of the disassembly structure of the clamping mechanism in the insulated wire sheath stripping device provided by the present invention. Figure 1 ;

[0028] Figure 11 A schematic diagram of the disassembly structure of the clamping mechanism in the insulated wire sheath stripping device provided by the present invention. Figure 2 ;

[0029] Figure 12 A schematic diagram of the disassembly structure of the stripping mechanism in the insulated wire sheath stripping device provided by the present invention. Figure 1 ;

[0030] Figure 13 A schematic diagram of the disassembly structure of the stripping mechanism in the insulated wire sheath stripping device provided by the present invention. Figure 2 .

[0031] Key component symbols: 1-Turntable mechanism, 11-Gearbox, 12-Turntable, 13-Gear set, 14-First groove, 15-Slider, 16-Trigger part, 121-Mounting plate, 122-Rotation clearance, 2-Drive mechanism, 3-Control box, 31-Second groove, 4-Clamping mechanism, 41-First clamping plate, 42-Second clamping plate, 43-Groove, 44-Protrusion, 45-Frame, 46-First motor, 47-Transmission assembly, 421-Mounting bracket 422-Insertion groove, 423-Baffle, 461-Driving wheel, 471-First lead screw, 472-First guide rod, 473-Driven wheel, 5-Thickness detection unit, 6-Stripping mechanism, 61-Sliding box, 62-Second motor, 63-Cutter head, 64-Sliding part, 65-Second lead screw, 66-Second guide rod, 611-Slide groove, 641-Card slot, 7-Slide rail frame, 71-Position detection unit, 72-Limit end, 73-Anti-collision pad, 8-Insulated wire. Detailed Implementation

[0032] This invention provides a device for stripping the outer sheath of insulated wires. To make the objectives, technical solutions, and effects of this invention clearer and more explicit, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only for explaining the invention and are not intended to limit the invention.

[0033] In the description of this invention, it should be understood that the terms "middle," "inner side," "outer side," etc., indicate the orientation or positional relationship of this invention based on the accompanying drawings, and are only for the convenience of describing the invention and simplifying the description. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features.

[0034] Please see Figures 1 to 10 This invention provides an insulated wire sheath stripping device, comprising a turntable mechanism 1, a drive mechanism 2, a control box 3, and a clamping mechanism 4. The drive mechanism 2 is mounted on the turntable mechanism 1 and is pulsatorically connected to it. The control box 3 and the clamping mechanism 4 are respectively mounted on opposite sides of the turntable mechanism 1 and are rotatably connected to it. The clamping mechanism 4 is provided with a first clamping plate 41 and a second clamping plate 42 that can slide relative to each other. A thickness detection unit 5 for detecting the sheath thickness is provided on one side of the first clamping plate 41, and a stripping mechanism 6 is provided on one side of the second clamping plate 42. The stripping mechanism 6 is positioned opposite to the thickness detection unit 5 so that it can move back and forth toward the thickness detection unit 5. The control box 3 is electrically connected to the drive mechanism 2, the clamping mechanism 4, the thickness detection unit 5, and the stripping mechanism 6. The control box 3 is used to control the working state of the drive mechanism 2, the clamping mechanism 4, the thickness detection unit 5, and the stripping mechanism 6.

[0035] In use, this invention uses a thickness detection unit 5 to detect the thickness of the outer sheath of the insulated wire 8 in real time. The stripping mechanism 6 is positioned relative to the thickness detection unit 5, so the distance between the thickness detection unit 5 and the conductive layer of the insulated wire 8 is converted into the cutting depth of the stripping mechanism 6. This adjusts the cutting depth of the stripping mechanism 6 on the outer sheath of the insulated wire 8, ensuring that the stripping mechanism 6 can completely peel off the outer sheath and preventing damage to the conductive layer during the stripping process. In addition, the clamping mechanism 4 keeps the insulated wire 8 clamped, ensuring the stability of the cutting when the stripping mechanism 6 rotates and cuts the insulated wire 8, and preventing the insulated wire 8 from shifting or shaking due to external forces.

[0036] In practical use, workers use a winch device in conjunction with a cable routing device or an insulating rod to transport the invention to the insulated conductor 8. When the invention approaches the insulated conductor 8, the control box 3 controls the clamping mechanism 4 to clamp the insulated conductor 8, ensuring the invention is securely attached to it. When the first clamping plate 41 and the second clamping plate 42 approach the insulated conductor 8, the thickness detection unit 5 and the stripping mechanism 6 move closer to the insulated conductor 8 until both the first clamping plate 41 and the second clamping plate 42 are in contact with both sides of the insulated conductor 8. At this point, the thickness detection unit 5 detects the outer sheath of the insulated conductor 8. The thickness is detected, and the outer sheath thickness data is sent to the control box 3. The control box 3 then adjusts the cutting amount of the stripping mechanism 6 according to the outer sheath thickness data, that is, the extension amount of the stripping mechanism 6 towards the insulated wire 8. After the cutting amount of the stripping mechanism 6 is adjusted, the control box 3 controls the drive mechanism 2 to drive the turntable mechanism 1 to rotate. The turntable mechanism 1 drives the stripping mechanism 6 to rotate around the insulated wire 8, so that the stripping mechanism 6 can cut around the outer sheath of the insulated wire 8, thereby stripping the outer sheath of the insulated wire 8 cleanly, making it convenient for workers to connect the exposed conductive layer.

[0037] It should be noted that the control box 3 is remotely connected to the operator's control terminal to enable the operator to remotely control the present invention.

[0038] In this embodiment, the thickness detection unit 5 is a photoelectric sensor. The photoelectric sensor emits penetrating light sources such as infrared light or laser light to the insulated wire 8, thereby detecting the thickness of the outer sheath of the insulated wire 8.

[0039] It should be noted that the control box 3 is equipped with a controller and a power supply battery; the controller can be an existing PLC controller, which controls the operation of the drive mechanism 2, the clamping mechanism 4, the thickness detection unit 5 and the peeling mechanism 6; in addition, the power supply battery provides the necessary power for the present invention.

[0040] like Figures 1 to 10As shown, the insulation stripping device further includes a slide rail frame 7, with the bottom of the turntable mechanism 1 slidably connected to the slide rail frame 7; the stripping blade mechanism 6 is inclined towards the second clamping plate 42; the opposite sides of the first clamping plate 41 and the second clamping plate 42 are each provided with a groove 43, and multiple protrusions 44 are respectively provided on the two side walls of the groove 43 of the second clamping plate 42, so that the stripping blade mechanism 6 can drive the turntable mechanism 1 to slide linearly along the slide rail frame 7 when rotating to strip the insulation; during operation, the stripping blade mechanism 6 is inclined towards the second clamping plate 42, so that the stripping blade mechanism 6 and the insulation wire 8 form a certain angle. When the stripping blade mechanism 6 contacts the insulation wire 8, the stripping blade mechanism 6 will be subjected to the damping effect of the insulation during the cutting process, and this damping effect will generate a reverse thrust on the stripping blade mechanism 6, and through Multiple protrusions 44 are provided on the second clamping plate 42 to create a damping difference between the second clamping plate 42 and the first clamping plate 41, that is, the vibration frequencies of the two are different due to damping. As a result, the turntable mechanism 1 slides away from the starting cutting position of the insulated wire 8 under the damping action of the stripping mechanism 6, thereby driving the stripping mechanism 6 to perform a circumferential cut along the length of the insulated wire 8, increasing the stripping range of the outer sheath. The entire process can complete the large-area stripping of the outer sheath without the need for manual adjustment of the position of the stripping mechanism 6, which is convenient for the staff to perform subsequent electrical connection work. The slide rail frame 7 and the slider 15 can facilitate the displacement of the turntable mechanism 1. In addition, by providing grooves 43 on the opposite sides of the first clamping plate 41 and the second clamping plate 42 respectively to increase the contact area with the insulated wire 8, the clamping effect of the clamping mechanism 4 on the insulated wire 8 is effectively improved.

[0041] like Figures 1 to 10As shown, the turntable mechanism 1 further includes a gearbox 11, a turntable 12, and a gear set 13. Both the turntable 12 and the gear set 13 are disposed within the gearbox 11, and the turntable 12 is drive-connected to the gear set 13. The drive mechanism 2 is disposed on one side of the gearbox 11 and is drive-connected to the gear set 13. Both the gearbox 11 and the turntable 12 are provided with a first groove 14 opening upwards. The control box 3 and the clamping mechanism 4 are respectively disposed on both sides of the turntable 12. The control box 3 has a second groove 31 that opens upwards and communicates with the first groove 14; sliders 15 are respectively provided on both sides of the bottom of the gearbox 11, and a slide rail is provided on the slide rail frame 7 to cooperate with the sliders 15; the first groove 14 and the second groove 31 avoid interference between the gearbox 11 and the control box 3 and the insulated wire 8; in use, the drive mechanism 2 drives the turntable 12 to rotate through the gear set 13, thereby realizing the rotation of the control box 3 and the clamping mechanism 4. It should be noted that the drive mechanism 2 is a motor, and the motor is connected to the gear set 13 through its output shaft.

[0042] In this embodiment, the gear set 13 includes three gears arranged in an inverted triangle. The turntable 12 is also a gear. The gear in the middle is connected to the drive mechanism 2. The gears on both sides mesh with the gear in the middle and the turntable 12, respectively. This method ensures the stability of the turntable 12 when it rotates and reduces the damping force generated when cutting the outer skin on the drive mechanism 2.

[0043] In one embodiment, mounting plates 121 are respectively provided on both sides of the turntable 12, and a rotation gap 122 is formed between the mounting plates 121 and the turntable 12. The gearbox 11 is located on both sides of the groove wall of the first groove 14 and is connected to the rotation gap 122. The above arrangement further improves the stability of the turntable 12 when rotating, making the turntable 12 more stable when rotating.

[0044] like Figures 1 to 10 As shown, further, multiple positioning detection units 71 are arranged on the slide rail frame 7 along its length direction, and a trigger part 16 is provided on any of the sliders 15; the positioning detection unit 71 is used to detect the positioning status of the trigger part 16; by setting multiple positioning detection units 71 on the slide rail frame 7 to detect the positioning status of the turntable mechanism 1, that is, to obtain the cutting length of the insulated wire 8, the working state of the stripping mechanism 6 is controlled by the control box 3.

[0045] In this embodiment, the positioning detection unit 71 includes two units, which are located at both ends of the slide rail frame 7 respectively. The distance between the two positioning detection units 71 is set according to the preset cutting length. In use, the turntable mechanism 1 is slid to one end of the slide rail frame 7 in advance so that the positioning detection unit 71 can detect the trigger part 16. When the positioning detection unit 71 at the other end of the slide rail frame 7 detects the trigger part 16, it sends a stop signal to the control box 3, so that the control box 3 controls the stripping mechanism 6 to stop the stripping action, that is, the insulated wire 8 has completed the preset stripping length.

[0046] In this embodiment, the positioning detection unit 71 is a photoelectric gate, and the triggering part 16 is in the shape of a sheet. When the triggering part 16 passes through the triggering area of ​​the photoelectric gate, the photoelectric gate immediately receives the positioning signal.

[0047] In this embodiment, the slide rail frame 7 is provided with limit ends 72 at both ends, and anti-collision pads 73 are provided on the limit ends 72; the limit ends 72 prevent the slider 15 from derailing from the slide rail frame 7, and the anti-collision pads 73 prevent the slider 15 from having a hard collision with the limit ends 72.

[0048] like Figures 1 to 10 As shown, the clamping mechanism 4 further includes a frame 45 and a first motor 46. The first motor 46 is disposed at the bottom of the frame 45, and the first clamping plate 41 and the second clamping plate 42 are disposed at the top of the frame 45 through a transmission assembly 47. The first motor 46 is connected to the transmission assembly 47 so that the first clamping plate 41 and the second clamping plate 42 perform relative opening and closing actions on the frame 45. During operation, the first motor 46 controls the relative opening and closing actions between the first clamping plate 41 and the second clamping plate 42 through the transmission assembly 47 to achieve the clamping action of the insulated wire 8.

[0049] like Figures 1 to 10As shown, further, the transmission assembly 47 includes a first lead screw 471 and first guide rods 472 respectively disposed on both sides of the first lead screw 471. Both ends of the first lead screw 471 are rotatably connected to the frame 45, and both ends of the first guide rods 472 are connected to the frame 45. A driven wheel 473 is disposed at one end of the first lead screw 471, and a driving wheel 461 is disposed on the output shaft of the first motor 46. The driving wheel 461 is drively connected to the driven wheel 473. The first clamping plate 41 and the second clamping plate 42 are... The first lead screw 471 is connected to the first lead screw 471 via a nut, and the first clamping plate 41 and the second clamping plate 42 are slidably connected to the two first guide rods 472 respectively; the threads of the first lead screw 471 nuts of the first clamping plate 41 and the second clamping plate 42 are opposite; with the above settings, the first clamping plate 41 and the second clamping plate 42 can be controlled by a single drive source, and the relative opening and closing action of the first clamping plate 41 and the second clamping plate 42 can be realized by setting two first lead screw 471 nuts with opposite threads to cooperate with the first lead screw 471.

[0050] In one embodiment, both the driven wheel 473 and the driving wheel 461 are synchronous pulleys, and the two synchronous pulleys are connected by a belt drive. It should be noted that the driven wheel 473 and the driving wheel 461 can also be a sprocket structure, a gear structure, etc., which will not be elaborated here.

[0051] like Figures 1 to 10 As shown, further, a mounting bracket 421 is provided on one side of the second clamping plate 42. The mounting bracket 421 is inclined toward the second clamping plate 42, and an insert groove 422 is provided on the mounting bracket 421. The stripping mechanism 6 is disposed in the insert groove 422. By tilting the mounting bracket 421, a certain angle is formed between the stripping mechanism 6 and the insulated wire 8 to ensure the sliding operation of the turntable mechanism 1. In addition, the stripping mechanism 6 is fitted into the second clamping plate 42 through the insert groove 422, so that the stripping mechanism 6 can move closer to the insulated wire 8 with the second clamping plate 42.

[0052] like Figures 1 to 10As shown, the stripping mechanism 6 further includes a sliding box 61, a second motor 62, and a cutter head 63. The sliding box 61 has a sliding groove 611. The cutter head 63 is slidably connected to the sliding groove 611 via a sliding part 64. The second motor 62 is located on one side of the sliding box 61 and is drively connected to the sliding part 64. The second motor 62 is electrically connected to the control box 3. In use, the second motor 62 drives the sliding part 64 to slide within the sliding groove 611, thereby adjusting the distance between the cutter head 63 and the insulated wire 8, i.e., adjusting the cutting depth of the cutter head 63 on the insulated wire 8. The length of the sliding groove 611 can be set according to the actual degrees of freedom; the longer the sliding groove 611, the greater the adjustable range of the cutter head 63.

[0053] In this embodiment, the top of the sliding part 64 is provided with a slot 641, and the bottom of the blade head 63 is at least partially disposed in the slot 641; the blade head 63 is connected to the slot 641 by screws, pins and other connecting parts, and the blade head 63 can adjust the installation angle in the slot 641 according to the cutting effect to improve the flexibility of the peeling mechanism 6 during use.

[0054] like Figures 1 to 10 As shown, further, the slide groove 611 is provided with a second lead screw 65 and second guide rods 66 respectively provided at both ends of the second lead screw 65. The sliding part 64 is connected to the second lead screw 65 through the second lead screw 65 nut, and the sliding part 64 is slidably connected to the two second guide rods 66 respectively. The sliding part 64 achieves sliding movement through the second lead screw 65 nut and the second lead screw 65, so that the cutting head 63 can adjust the cutting position relative to the insulated wire 8.

[0055] like Figures 1 to 10 As shown, a baffle 423 is further provided on one side of the mounting bracket 421, and the baffle 423 is located outside the peeling mechanism 6; by providing the baffle 423, the outer skin debris is blocked, preventing the outer skin debris from falling into the peeling mechanism 6 and causing damage to the peeling mechanism 6.

[0056] In summary, during use, the thickness detection unit 5 detects the outer sheath thickness of the insulated wire 8 in real time, and the stripping mechanism 6 is positioned relative to the thickness detection unit 5. This allows the distance detected by the thickness detection unit 5 between the insulated wire 8 and the conductive layer to be converted into the cutting depth of the stripping mechanism 6, thereby adjusting the cutting depth of the stripping mechanism 6 on the outer sheath of the insulated wire 8. This ensures that the stripping mechanism 6 can completely peel off the outer sheath and prevents damage to the conductive layer during the stripping process. Furthermore, the clamping mechanism 4 keeps the insulated wire 8 clamped, ensuring the stability of the cutting process when the stripping mechanism 6 performs rotary cutting on the insulated wire 8, preventing positional shifts and shaking caused by external forces.

[0057] It is understood that those skilled in the art can make equivalent substitutions or modifications to the technical solution and inventive concept of the present invention, and all such substitutions or modifications should fall within the protection scope of the appended claims.

Claims

1. A device for stripping the outer sheath of an insulated wire, characterized in that, The device includes a turntable mechanism, a drive mechanism, a control box, and a clamping mechanism. The drive mechanism is mounted on the turntable mechanism and is drively connected to it. The control box and the clamping mechanism are respectively located on both sides of the turntable mechanism and are rotatably connected to it. The clamping mechanism has a first clamping plate and a second clamping plate that can slide relative to each other. A thickness detection unit for detecting the thickness of the outer skin is provided on one side of the first clamping plate, and a peeling mechanism is provided on one side of the second clamping plate. The peeling mechanism is positioned opposite to the thickness detection unit so that it can move back and forth toward the thickness detection unit. The control box is connected to the drive mechanism. The clamping mechanism, the thickness detection unit, and the stripping mechanism are electrically connected; the control box is used to control the working state of the driving mechanism, the clamping mechanism, the thickness detection unit, and the stripping mechanism; the insulated wire sheath stripping device also includes a slide rail frame, and the bottom of the turntable mechanism is slidably connected to the slide rail frame; the stripping mechanism is inclined towards the second clamping plate; the first clamping plate and the second clamping plate are both provided with grooves on their opposite sides, and multiple protrusions are respectively provided on the two side walls of the groove of the second clamping plate, so that when the stripping mechanism rotates to strip the sheath, it can drive the turntable mechanism to slide linearly along the slide rail frame.

2. The insulating wire sheath stripping device according to claim 1, characterized in that, The turntable mechanism includes a gearbox, a turntable, and a gear set. The turntable and the gear set are both disposed in the gearbox, and the turntable is pulsatorically connected to the gear set. The drive mechanism is disposed on one side of the gearbox and is pulsatorically connected to the gear set. Both the gearbox and the turntable are provided with a first groove that opens upwards. The control box and the clamping mechanism are respectively disposed on two sides of the turntable. The control box is provided with a second groove that opens upwards and communicates with the first groove. Slider blocks are respectively disposed on both sides of the bottom of the gearbox, and a slide rail is provided on the slide rail frame to cooperate with and connect to the slider blocks.

3. The insulating wire sheath stripping device according to claim 2, characterized in that, The slide rail frame is provided with multiple positioning detection units along its length, and each of the sliders is provided with a trigger part; the positioning detection unit is used to detect the positioning status of the trigger part.

4. The insulated wire sheath stripping device according to claim 1, characterized in that, The clamping mechanism further includes a frame and a first motor. The first motor is located at the bottom of the frame, and the first clamping plate and the second clamping plate are both located at the top of the frame via a transmission assembly. The first motor is connected to the transmission assembly so that the first clamping plate and the second clamping plate can perform relative opening and closing actions on the frame.

5. The insulating wire sheath stripping device according to claim 4, characterized in that, The transmission assembly includes a first lead screw and first guide rods respectively disposed on both sides of the first lead screw. The two ends of the first lead screw are rotatably connected to the frame, and the two ends of the first guide rods are respectively connected to the frame. A driven wheel is disposed at one end of the first lead screw, and a driving wheel is disposed on the output shaft of the first motor. The driving wheel is drivingly connected to the driven wheel. The first clamping plate and the second clamping plate are drivingly connected to the first lead screw through a first lead screw nut, and the first clamping plate and the second clamping plate are slidably connected to the two first guide rods respectively. The threads of the first lead screw nuts of the first clamping plate and the second clamping plate are opposite.

6. The insulating wire sheath stripping device according to claim 1, characterized in that, A mounting bracket is provided on one side of the second clamping plate. The mounting bracket is inclined toward the second clamping plate and has an insert groove. The peeling mechanism is disposed in the insert groove.

7. The insulating wire sheath stripping device according to claim 6, characterized in that, The peeling mechanism includes a sliding box, a second motor, and a cutter head. The sliding box is provided with a sliding groove, and the cutter head is slidably connected to the sliding groove through a sliding part. The second motor is located on one side of the sliding box and is drivenly connected to the sliding part.

8. The insulating wire sheath stripping device according to claim 7, characterized in that, The groove is provided with a second lead screw and second guide rods respectively provided at both ends of the second lead screw. The sliding part is connected to the second lead screw through the second lead screw nut, and the sliding part is slidably connected to the two second guide rods respectively.

9. The insulating wire sheath stripping device according to claim 6, characterized in that, A baffle is provided on one side of the mounting bracket, and the baffle is located outside the peeling mechanism.

Citation Information

Patent Citations

  • Self-adaptive peeler and use method thereof

    CN113964739A