感应剥线机

The induction wire stripping machine achieves efficient stripping of cable insulation through automated drive components and transmission systems, solving the problem of low efficiency of manual wire stripping and improving production efficiency and equipment adaptability.

CN224520531UActive Publication Date: 2026-07-17SHENZHEN MODERN INTELLIGENT EQUIP CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN MODERN INTELLIGENT EQUIP CO LTD
Filing Date
2025-06-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing cable processing methods, manual wire stripping is inefficient and cannot meet the needs of large-scale production.

Method used

Design an induction wire stripping machine that uses a drive component to drive a transmission component, which in turn fixes the cable in place, and a cutting component to strip the insulation. The machine employs a pneumatic system and a transmission component to achieve automated wire stripping.

Benefits of technology

It increases wire stripping speed, reduces manual operation, improves production efficiency, lowers labor costs, ensures wire stripping quality, reduces mechanical damage and human error, and improves equipment versatility and reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型提供一种感应剥线机,用于剥去线缆上的绝缘体;所述感应剥线机包括机架、安装于所述机架上的固定组件、安装于所述机架上的剥线组件;所述固定组件包括转动安装于所述机架上的转动杆、安装于所述转动杆一端的固定件;所述剥线组件包括套设于所述转动杆上的活动套管、安装于所述活动套管上的裁剪件;所述感应剥线机还包括安装于所述转动杆上的第一传动组件、安装于所述活动套管上的第二传动组件、及安装于所述机架上用于驱动所述第一传动组件和所述第二传动组件运动的驱动组件;本实用新型的感应剥线机,可以有效提高剥线速度,减少人工操作,从而提高生产效率。
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Claims

1. An induction cable stripping machine for stripping insulation from a cable; characterised in that, The induction wire stripping machine includes a frame, a fixing assembly mounted on the frame, and a wire stripping assembly mounted on the frame. The fixing assembly includes a rotating rod rotatably mounted on the frame and a fixing member mounted on one end of the rotating rod. The wire stripping assembly includes a movable sleeve sleeved on the rotating rod and a cutting member mounted on the movable sleeve. The induction wire stripping machine also includes a first transmission assembly mounted on the rotating rod, a second transmission assembly mounted on the movable sleeve, and a drive assembly mounted on the frame for driving the first transmission assembly and the second transmission assembly to move. The drive assembly drives the first transmission assembly and the second transmission assembly to move the rotating rod and the movable sleeve, so that the fixing member fixes the cable, and the cutting member cuts into the insulation of the cable and strips the insulation from the cable.

2. The inductive wire stripper of claim 1, wherein, There are two rotating rods, which are mounted side by side on the frame; there are also two movable sleeves, which are respectively fitted onto the two rotating rods.

3. The inductive wire stripper of claim 2, wherein, The drive assembly includes a sensor mounted on the frame, a push rod mounted on the frame, a first push cone mounted on the push rod, a second push cone mounted on the push rod, a wire ejection tube mounted on the push rod, and a connecting plate mounted on the wire ejection tube; the movement direction of the wire ejection tube is set opposite to the movement direction of the push rod.

4. The inductive wire stripper of claim 3, wherein, The movable sleeve is rotatably mounted on the connecting plate; the driving assembly also includes a first air pipe; the push rod is connected to the retraction tube through the first air pipe; the sensing element is configured to be inductively connected to the push rod.

5. The inductive wire stripper of claim 3, wherein, The sensing element includes a sensing tube mounted on the connecting plate and a second air pipe connected to the sensing tube and the push rod respectively; the sensing tube is configured to communicate with the push rod through the second air pipe; the free end of the sensing tube is configured at the same level as the fixing member and the cutting member.

6. The induction wire stripping machine according to claim 1, characterized in that, The induction wire stripping machine further includes a buffer assembly mounted on the frame; the buffer assembly includes a positioning rod mounted on the frame, a limiting plate mounted on the positioning rod, a limiting groove disposed on the limiting plate, and a buffer block slidably disposed on the limiting groove; the buffer block is mounted on the drive assembly.

7. The inductive wire stripper of claim 1, wherein, The induction wire stripping machine also includes a power source assembly; the power source assembly includes an air inflator mounted on the frame, a third air pipe, an induction hole mounted on the air inflator, and a stop block mounted on the drive assembly; the air inflator and the drive assembly are connected through the third air pipe.

8. The inductive wire stripper of claim 1, wherein, The first transmission assembly includes a first swing arm and a second swing arm mounted on the rotating rod, a first connecting spring mounted between the first swing arm and the second swing arm, a first push ring mounted on the first swing arm, and a second push ring mounted on the second swing arm.

9. The inductive wire stripper of claim 1, wherein, The second transmission assembly includes a fixed bracket mounted on the frame, a first swing plate and a second swing plate rotatably mounted on the fixed bracket, a second connecting spring mounted between the first swing plate and the second swing plate, a first swing ring mounted on the first swing plate, a second swing ring mounted on the second swing plate, a third swing arm and a fourth swing arm mounted on the movable sleeve, a third connecting spring mounted between the third swing arm and the fourth swing arm, a third push ring mounted on the third swing arm, and a fourth push ring mounted on the fourth swing arm.

10. The inductive wire stripper of claim 9, wherein, The first and second swing rings are positioned to abut against the drive assembly; the third and fourth push rings are positioned to abut against the free ends of the first and second swing plates.