A synergistic control cable cutter

CN122532780APending Publication Date: 2026-08-07江苏诸成电缆有限公司 +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
江苏诸成电缆有限公司
Filing Date
2026-05-29
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0002]随着城市建设的快速发展,市政改造工程不断增多,其中,供电用的电力电缆的改造工程更为常见,电缆在使用过程中,由于电缆都是成捆包装的,在实际使用中不需要那么长,因此需要通过切割机对电力电缆进行割接,为此现在需要对电缆进行切割常规加工的工序,并且加工频率和需求较高;现有的切割机在使用时,往往需要将电缆进行固定于装置上,然后通过切割盘进行切割,但是这种结构在使用时,无法便利的调节切割盘和对应的切割支撑座的位置,如此使得使用较为不便,为此需要对现有的结构进行升级改造,提高使用的灵活性和便利性,实现切割调节的可行性,同时需要提高结构的一体化协同性

Benefits of technology

本发明的切割盘和切割支撑座上下正对分布,本发明可以通过协同控制组件和联动组件实现切割盘和切割支撑座的协同移动,如此使得切割盘向下切割时可以一直正对切割支撑座的切割预留开口,本发明通过动力电机驱动下驱动杆旋转,下驱动杆带动下移动块移动,下移动块带动切割支撑座移动,同时下驱动轮和上驱动轮通过穿接带传动,如此使得下驱动杆带动上驱动杆同步旋转,如此上驱动杆带动上移动块移动,通过上移动块带动伸缩机构、切割电机、切割盘移动,如此实现了切割盘和切割支撑座的协同同步移动,使用灵活便利。

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Abstract

The application discloses a kind of synergic control type cable cutters, including bottom positioning frame, top positioning frame, telescopic mechanism, cutting motor, cutting disc, cutting support seat, synergic control component;The cutting disc and cutting support seat of the present application are distributed up and down, the present application can realize the synergic movement of cutting disc and cutting support seat by synergic control component and linkage component, so that cutting disc can be always opposite the cutting reserved opening of cutting support seat when cutting down, the present application is rotated by driving the lower drive rod under the driving of power motor, the lower drive rod moves the lower moving block, the lower moving block drives cutting support seat to move, while lower drive wheel and upper drive wheel are driven by through belt, so that the lower drive rod drives the synchronous rotation of upper drive rod, so that the upper drive rod drives the movement of upper moving block, the telescopic mechanism, cutting motor, cutting disc are moved by upper moving block, so that the synergic synchronous movement of cutting disc and cutting support seat is realized, and it is flexible and convenient to use.
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Description

Technical Field

[0001] This invention belongs to the field of cable cutting technology, and in particular relates to a collaborative control cable cutter. Background Technology

[0002] With the rapid development of urban construction, municipal renovation projects are increasing, among which the renovation of power cables for power supply is particularly common. Since cables are usually bundled and packaged, and the actual length is not required, they need to be cut using a cutting machine. This necessitates a routine cable cutting process with high frequency and demand. Existing cutting machines often require the cable to be fixed to the device before cutting with the cutting disc. However, this structure makes it difficult to easily adjust the position of the cutting disc and the corresponding cutting support, making it inconvenient to use. Therefore, it is necessary to upgrade the existing structure to improve its flexibility and convenience, make cutting adjustments feasible, and enhance the overall integration and coordination of the structure. Summary of the Invention

[0003] To address the shortcomings of the prior art, the present invention provides a coordinated control cable cutter that integrates and coordinates the positions of the cutting disc and the cutting support.

[0004] To solve the above problems, the technical solution adopted by the present invention is as follows: A collaborative control cable cutter includes a bottom positioning frame, a top positioning frame, a telescopic mechanism, a cutting motor, a cutting disc, a cutting support base, and a collaborative control component. The top positioning frame is mounted above the bottom positioning frame. The telescopic mechanism is mounted below the top positioning frame. The cutting motor is connected to the lower side of the telescopic mechanism. The cutting disc is rotatably mounted on one side of the cutting motor. The cutting support base is mounted above the bottom positioning frame. The cutting disc and the cutting support base are vertically aligned. The collaborative control component includes an upper moving block, a lower moving block, an upper drive rod, a lower drive rod, and a power motor. The upper moving block is slidably mounted... Mounted on the top positioning frame, the lower side of the upper moving block is connected to the upper side of the telescopic mechanism; the lower moving block is slidably mounted on the bottom positioning frame, and its upper side is connected to the lower side of the cutting support base; the upper drive rod is rotatably mounted on the top positioning frame and rotates to control the horizontal movement of the upper moving block; the lower drive rod is rotatably mounted on the bottom positioning frame and rotates to control the horizontal movement of the lower moving block; the power motor is mounted on one side of the bottom positioning frame, and drives the upper and lower drive rods to rotate synchronously, controlling the upper and lower moving blocks to move horizontally synchronously, thereby causing the cutting disc and the cutting support base to move horizontally synchronously.

[0005] Furthermore, positioning posts are provided on both sides between the bottom positioning frame and the top positioning frame; limiting sliding posts are provided on both sides of the telescopic mechanism; limiting cylinders are provided on the inner side of the positioning posts; and the limiting sliding posts are horizontally slidably inserted into the limiting cylinders.

[0006] Furthermore, the bottom positioning frame has a bottom slide rail inside; the top positioning frame has a top slide rail on its lower side; the lower moving block is slidably engaged with the bottom slide rail, and the lower drive rod is rotatably inserted into the bottom slide rail and threadedly connected to the lower moving block; the upper moving block is slidably engaged with the top slide rail, and the upper drive rod is rotatably inserted into the top slide rail and threadedly connected to the upper moving block; one end of the lower drive rod is connected to a power motor.

[0007] Furthermore, it also includes a linkage assembly; the linkage assembly includes a lower drive wheel, an upper drive wheel, and a connecting belt; the other end of the lower drive rod extends to the outside of the bottom positioning frame, and the other end of the lower drive rod is connected to the lower drive wheel; one end of the upper drive rod extends to the outside of the top positioning frame and is connected to the upper drive wheel; the lower drive wheel and the upper drive wheel are connected by a connecting belt.

[0008] Furthermore, the upper and lower gears of the connecting belt mesh with the lower drive wheel and the upper drive wheel.

[0009] Furthermore, the upper side of the bottom positioning frame is provided with a limiting groove; the cutting support seat is horizontally slidably installed on the limiting groove.

[0010] Furthermore, the upper end of the cutting support is provided with a pre-cutting opening.

[0011] Furthermore, the telescopic mechanism has a telescopic shaft on its lower side; an upper connecting plate is provided around the lower end of the telescopic shaft; a lower connecting plate is provided at the upper end of the cutting motor; the upper and lower connecting plates are fixedly connected by screws and nuts around their perimeters.

[0012] Furthermore, the telescopic mechanism is a power cylinder or a power hydraulic cylinder.

[0013] The beneficial effects of this invention are as follows: In this invention, the cutting disc and the cutting support are arranged vertically opposite each other. The invention can achieve coordinated movement of the cutting disc and the cutting support through a coordinated control component and a linkage component. This ensures that the cutting disc always faces the pre-cutting opening of the cutting support when cutting downwards. The invention uses a power motor to drive the lower drive rod to rotate, which in turn drives the lower moving block to move. The lower moving block then drives the cutting support to move. Simultaneously, the lower drive wheel and the upper drive wheel are driven by a connecting belt, which causes the lower drive rod to drive the upper drive rod to rotate synchronously. This causes the upper drive rod to drive the upper moving block to move, which in turn drives the telescopic mechanism, the cutting motor, and the cutting disc to move. This achieves coordinated and synchronous movement of the cutting disc and the cutting support, making it flexible and convenient to use. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of the present invention.

[0015] Figure 2 For the present invention Figure 1 A schematic diagram of the structure after the cutting disc and the cutting support seat move together.

[0016] Figure 3 This is a schematic diagram of the cutting support base of the present invention.

[0017] Figure 4 This is a schematic diagram of the connection structure of the cutting disc of the present invention. Detailed Implementation

[0018] The invention will now be described in further detail with reference to the accompanying drawings.

[0019] like Figures 1 to 4As shown, a collaborative control cable cutter includes a bottom positioning frame 1, a top positioning frame 2, a telescopic mechanism 3, a cutting motor 4, a cutting disc 5, a cutting support base 6, and a collaborative control component 7. The top positioning frame 2 is mounted above the bottom positioning frame 1. The telescopic mechanism 3 is mounted below the top positioning frame 2. The cutting motor 4 is connected to the lower side of the telescopic mechanism 3. The cutting disc 5 is rotatably mounted on one side of the cutting motor 4. The cutting support base 6 is mounted above the bottom positioning frame 1. The cutting disc 5 and the cutting support base 6 are vertically aligned. The collaborative control component 7 includes an upper moving block 71, a lower moving block 72, an upper drive rod 73, a lower drive rod 74, and a power motor 75. The upper moving block 71 is slidably mounted... The upper moving block 71 is mounted on the top positioning frame 2, and its lower side is connected to the upper side of the telescopic mechanism 3. The lower moving block 72 is slidably mounted on the bottom positioning frame 1, and its upper side is connected to the lower side of the cutting support seat 6. The upper driving rod 73 is rotatably mounted on the top positioning frame 2 and rotates to control the horizontal movement of the upper moving block 71. The lower driving rod 74 is rotatably mounted on the bottom positioning frame 1 and rotates to control the horizontal movement of the lower moving block 72. The power motor 75 is mounted on one side of the bottom positioning frame 1. The power motor 75 drives the upper driving rod 73 and the lower driving rod 74 to rotate synchronously and controls the upper moving block 71 and the lower moving block 72 to move horizontally synchronously, thereby causing the cutting disc 5 and the cutting support seat 6 to move horizontally synchronously.

[0020] like Figures 1 to 4 As shown, in order to facilitate the connection between the bottom positioning frame 1 and the top positioning frame 2, and to improve the stability of the telescopic mechanism 3 in lateral movement, positioning posts 8 are provided on both sides between the bottom positioning frame 1 and the top positioning frame 2; limiting sliding posts 81 are provided on both sides of the telescopic mechanism 3; limiting cylinders 82 are provided on the inner side of the positioning posts 8; and the limiting sliding posts 81 are horizontally slidably inserted into the limiting cylinders 82.

[0021] like Figures 1 to 4 As shown, to facilitate the movement of the lower moving block 72 and the upper moving block 71, the bottom positioning frame 1 is further provided with a bottom slide rail 11 inside; the lower side of the top positioning frame 2 is provided with a top slide rail 21; the lower moving block 72 is slidably engaged with the bottom slide rail 11, and the lower drive rod 74 is rotatably inserted into the bottom slide rail 11 and threadedly connected to the lower moving block 72; the upper moving block 71 is slidably engaged with the top slide rail 21, and the upper drive rod 73 is rotatably inserted into the top slide rail 21 and threadedly connected to the upper moving block 71; one end of the lower drive rod 74 is connected to the power motor 75.

[0022] like Figures 1 to 4As shown, to facilitate synchronous rotation of the upper drive rod 73 and the lower drive rod 74, a linkage assembly 9 is further included. The linkage assembly 9 includes a lower drive wheel 91, an upper drive wheel 92, and a connecting belt 93. One end of the lower drive rod 74 extends to the outside of the bottom positioning frame 1 and is connected to the lower drive wheel 91. One end of the upper drive rod 73 extends to the outside of the top positioning frame 2 and is connected to the upper drive wheel 92. The lower drive wheel 91 and the upper drive wheel 92 are connected by the connecting belt 93. Furthermore, the connecting belt 93 engages with the lower drive wheel 91 and the upper drive wheel 92 via upper and lower gear transmission.

[0023] like Figures 1 to 4 As shown, to facilitate the sliding of the cutting support 6, a limiting groove 12 is further provided on the upper side of the bottom positioning frame 1; the cutting support 6 is horizontally slidably installed on the limiting groove 12. To facilitate cutting, a cutting pre-reserved opening 61 is further provided at the upper end of the cutting support 6. To facilitate the installation of the cutting motor 4, a telescopic shaft 31 is further provided on the lower side of the telescopic mechanism 3; an upper connecting plate 32 is provided around the lower end of the telescopic shaft 31; a lower connecting plate 41 is provided at the upper end of the cutting motor 4; the upper connecting plate 32 and the lower connecting plate 41 are fixedly connected around their perimeter by screws 42 and nuts 43. Furthermore, the telescopic mechanism 3 is a power cylinder or a power hydraulic cylinder.

[0024] In this invention, the cutting disc 5 and the cutting support base 6 are arranged vertically opposite each other. The invention can achieve coordinated movement of the cutting disc 5 and the cutting support base 6 through the coordinated control component 7 and the linkage component 9. This ensures that when the cutting disc 5 cuts downwards, it is always directly opposite the cutting pre-reserved opening 61 of the cutting support base 6. The invention drives the lower drive rod 74 to rotate through the power motor 75. The lower drive rod 74 drives the lower moving block 72 to move. The lower moving block 72 drives the cutting support base 6 to move. At the same time, the lower drive wheel 91 and the upper drive wheel 92 are driven by the connecting belt 93. This allows the lower drive rod 74 to drive the upper drive rod 73 to rotate synchronously. In turn, the upper drive rod 73 drives the upper moving block 71 to move. The upper moving block 71 drives the telescopic mechanism 3, the cutting motor 4, and the cutting disc 5 to move. This achieves coordinated and synchronous movement of the cutting disc 5 and the cutting support base 6, making it flexible and convenient to use.

[0025] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A collaborative control type cable cutter, characterized in that, It includes a bottom positioning frame, a top positioning frame, a telescopic mechanism, a cutting motor, a cutting disc, a cutting support base, and a collaborative control component; the top positioning frame is installed above the bottom positioning frame; the telescopic mechanism is installed on the lower side of the top positioning frame; The lower side of the telescopic mechanism is connected to a cutting motor; a cutting disc is rotatably mounted on one side of the cutting motor; a cutting support seat is mounted on the upper side of the bottom positioning frame; the cutting disc and the cutting support seat are arranged vertically opposite each other; the collaborative control component includes an upper moving block, a lower moving block, an upper drive rod, a lower drive rod, and a power motor; the upper moving block is slidably mounted on the top positioning frame, and its lower side is connected to the upper side of the telescopic mechanism; the lower moving block is slidably mounted on the bottom positioning frame, and its upper side is connected to the lower side of the cutting support seat; the upper drive rod is rotatably mounted on the top positioning frame and rotates to control the horizontal movement of the upper moving block; the lower drive rod is rotatably mounted on the bottom positioning frame and rotates to control the horizontal movement of the lower moving block; the power motor is mounted on one side of the bottom positioning frame, and drives the upper drive rod and the lower drive rod to rotate synchronously, controlling the upper moving block and the lower moving block to move horizontally synchronously, thereby causing the cutting disc and the cutting support seat to move horizontally synchronously.

2. The collaborative control cable cutter according to claim 1, characterized in that, Positioning posts are provided on both sides between the bottom positioning frame and the top positioning frame; limiting sliding posts are provided on both sides of the telescopic mechanism; limiting cylinders are provided on the inner side of the positioning posts; the limiting sliding posts are horizontally slidably inserted into the limiting cylinders.

3. The collaborative control cable cutter according to claim 1, characterized in that, The bottom positioning frame has a bottom slide rail inside; the top positioning frame has a top slide rail on its lower side; the lower moving block is slidably engaged with the bottom slide rail, and the lower drive rod rotates through the bottom slide rail and is threadedly connected to the lower moving block; the upper moving block is slidably engaged with the top slide rail, and the upper drive rod rotates through the top slide rail and is threadedly connected to the upper moving block; one end of the lower drive rod is connected to a power motor.

4. The collaborative control cable cutter according to claim 3, characterized in that, It also includes a linkage assembly; the linkage assembly includes a lower drive wheel, an upper drive wheel, and a connecting belt; the other end of the lower drive rod extends to the outside of the bottom positioning frame, and the other end of the lower drive rod is connected to the lower drive wheel; one end of the upper drive rod extends to the outside of the top positioning frame and is connected to the upper drive wheel; the lower drive wheel and the upper drive wheel are connected by a connecting belt.

5. The collaborative control cable cutter according to claim 4, characterized in that, The connecting belt's upper and lower gears mesh with the lower and upper drive wheels.

6. The collaborative control cable cutter according to claim 1, characterized in that, The upper side of the bottom positioning frame is provided with a limiting groove; the cutting support seat is horizontally slidably installed on the limiting groove.

7. The collaborative control cable cutter according to claim 1, characterized in that, The upper end of the cutting support is provided with a pre-cutting opening.

8. The collaborative control cable cutter according to claim 1, characterized in that, The telescopic mechanism has a telescopic shaft on its lower side; the lower end of the telescopic shaft has an upper connecting plate around its perimeter; the upper end of the cutting motor has a lower connecting plate; the upper and lower connecting plates are fixedly connected by screws and nuts around their perimeters.

9. The collaborative control cable cutter according to claim 1, characterized in that, The telescopic mechanism is a power cylinder or a power hydraulic cylinder.