Visual remote cable cutting equipment

The cable is fixed at the same time by combining the metal material and ground column design, independent battery power and storage state, the stability and operability problems of remote cable cutting equipment are solved, and the effectiveness of the equipment in narrow environments is improved.

CN120341747APending Publication Date: 2025-07-18GUO WANG ZHE JIANG SHENG DIAN LI YOU XIAN GONG SI YI WU SHI GONG DIAN GONG SI
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202311714452.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-13
Publication Date
2025-07-18

AI Technical Summary

Technical Problem

Existing remote cable cutting equipment has poor stability during the cutting process, the camera's back-transmission image is not clear, and it is inconvenient to operate in narrow environments.

Method used

The cable is fixed and the support frame are fixed at the same time. The camera assembly and the cutting assembly are connected through a connecting rod. The support frame and the fixture are made of metal and are equipped with grounding columns. The battery is divided into a fixture and support frame for power supply. The equipment can be deployed and stored. The remote control device independently controls the camera and linear driving mechanism.

Benefits of technology

It improves the stability of the cable cutting equipment and the camera picture clarity, enhances the operability and practicality of the equipment in narrow environments, protects the equipment from current damage, and simplifies the equipment storage and use process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120341747A_ABST
    Figure CN120341747A_ABST
Patent Text Reader

Abstract

The invention belongs to the technical field of power equipment maintenance tools, and discloses a visual remote cable cutting device and cutting assembly.The visual remote cable cutting device comprises a supporting frame, a blade and a linear driving mechanism installed on the supporting frame, a cable cutting groove is formed in the supporting frame, and the cutting edge of the blade faces the cable cutting groove; the telescopic end of the linear driving mechanism is connected with the blade and drives the blade to slide relative to the supporting frame. The camera shooting assembly comprises a fixing frame used for clamping the cable, a connecting rod and a camera installed on the cable fixing frame, one end of the connecting rod is hinged to the fixing frame, the other end of the connecting rod is hinged to the supporting frame, and the camera faces the blade; and the remote control device is used for remotely controlling the linear driving mechanism and the camera. When the cable cutting equipment cuts a cable, the cable is fixed through the fixing frame and the supporting frame at the same time, and the cable cutting equipment is fixed more stably.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of power equipment maintenance tools, and particularly to a visual remote cable cutting device. Background Art

[0002] During the construction of cable lines, it is necessary to cut and reconnect the original cable lines and adjust the wiring mode to continuously improve the cable line network structure. Especially for cables in pipelines or wells, there are some situations where it is inconvenient for manual operation to cut the cables. In this case, a remote cable cutting device is used for assistance, and the cable is cut by remotely controlling the cutting device. For example, a remote cable cutting device disclosed in the prior art CN201910979294.X includes: a support frame for supporting other components; a blade slidably connected to the support frame for cutting the cable; a driving device for driving the blade to move, the driving device being fixed to the support frame; a battery for providing power to electric components such as the driving device; a camera for monitoring the cutting situation of the blade, the camera being fixed to the support frame and aligned with the blade; and a remote control device for remotely controlling the driving device and the camera. However, during the cable cutting process of this device, it is only fixed to the cable through the support frame, and it is prone to shaking during use, resulting in an unclear picture transmitted back by the camera. Summary of the Invention

[0003] In order to overcome the deficiencies in the prior art that the cable cutting device has poor stability and is prone to shaking during use, the present invention provides a visual remote cable cutting device, which can fix the cable more stably through a fixing frame and a support frame.

[0004] To achieve the above object, the present invention adopts the following technical solutions: A visual remote cable cutting device, comprising a cutting assembly, which includes a support frame, a blade, and a linear driving mechanism installed on the support frame. A cable cutting groove is provided on the support frame, the cutting edge of the blade faces the cable cutting groove, and the telescopic end of the linear driving mechanism is connected to the blade and drives the blade to slide relative to the support frame; a camera assembly, which includes a fixing frame for clamping the cable, a connecting rod, and a camera installed on the cable fixing frame. One end of the connecting rod is hinged to the fixing frame, the other end of the connecting rod is hinged to the support frame, and the camera faces the blade; a remote control device for remotely controlling the linear driving mechanism and the camera.

[0005] In the above technical solution, the user remotely controls the camera through the remote control device and observes the cable cutting process. Then, the user remotely controls the linear drive mechanism through the remote control device to drive the blade to cut the cable, and the cable can be cut through remote control. When cutting the cable, the cable is fixed by the fixing frame and the support frame at the same time, and the cable cutting device is fixed more stably, which can reduce the shaking of the camera, is beneficial to the camera to transmit a clear picture, and further enables the user to better understand the cutting site conditions, which is beneficial to improving the practicability of the device. In addition, the camera assembly and the cutting assembly are connected by a connecting rod, and both the camera assembly and the cutting assembly are hinged to the connecting rod. The camera assembly can adjust its position relative to the cutting assembly, so that the angle of the camera is better and it is easy to observe the cable cutting.

[0006] The present invention is further configured as follows: the support frame, the blade, the fixing frame and the connecting rod are all made of metal, and a grounding post is provided on the support frame and / or the fixing frame, and the grounding post is used to connect the grounding wire.

[0007] In the above technical solution, when the cable being cut is not powered off, the support frame, the blade, the fixing frame and the connecting rod are all made of metal, and a grounding post is provided on the support frame and / or the fixing frame. The electricity in the cable can be released to the ground through the grounding post connecting the grounding wire to protect the device from being damaged by the current.

[0008] The present invention is further configured as follows: the fixing frame includes a mounting frame, a first clamping plate, a second clamping plate, a sliding frame and a locking assembly. The sliding frame is slidably connected to the mounting frame. The first clamping plate is fixed to the mounting frame, the second clamping plate is fixed to the sliding frame, and the locking assembly is installed on the mounting frame for locking or loosening the sliding frame. One end of the connecting rod is hinged to the mounting frame, and the camera is installed on the mounting frame.

[0009] In the above technical solution, when the fixing frame clamps the cable, the sliding frame moves to drive the second clamping plate to slide, and the second clamping plate moves closer to the first clamping plate fixed to the mounting frame. After the second clamping plate and the first clamping plate contact the cable, stop moving the sliding frame, and then lock the sliding frame through the locking assembly to complete the clamping of the cable by the fixing frame.

[0010] The present invention is further configured as follows: the support frame includes a support seat and a movable seat. The support seat and the movable seat enclose to form the cable cutting groove, and the blade is slidably connected to the support seat; the linear drive mechanism is installed on the support seat, one end of the movable seat is hinged to the support seat, and the other end of the movable seat is detachably connected to the support seat by a bolt.

[0011] In the above technical solution, one end of the movable seat is hinged to the support seat. When placing the cable into the cable cutting groove, the enclosure of the movable seat and the support seat can be released by rotating the movable seat. The cable can be directly placed between the movable seat and the support seat, and then the movable seat is rotated to form the enclosure of the movable seat and the support seat. There is no need to find the head of the cable to penetrate into the cable cutting groove, which is convenient for placing the cable. Furthermore, it is convenient for the operation of the cable cutting device, which is beneficial to improving the operability of the cable cutting device. In addition, by installing both the blade and the linear drive mechanism on the support seat, the weight of the movable part can be reduced, which is convenient for rotating the movable seat to release the enclosure of the movable seat and the support seat, and is beneficial to improving the operability of the cable cutting device.

[0012] The present invention is further configured as: the remote control device includes a first control unit, a second control unit, a first antenna, a second antenna, and a remote controller with a display screen. The first antenna is electrically connected to the first control unit, the first control unit is electrically connected to the camera, the second antenna is electrically connected to the second control unit, the second control unit is electrically connected to the linear drive mechanism, and the remote controller is electrically connected to the first control unit and the second control unit through the first antenna and the second antenna respectively for electrical signals.

[0013] In the above technical solution, by electrically connecting the first antenna and the second antenna to the first control unit and the second control unit respectively for electrical signals and controlling the camera and the linear drive mechanism respectively, it is possible to avoid the electrical connection between the camera and the linear drive mechanism, which affects the movement of the cutting assembly and the imaging assembly. At the same time, there is no electrical connection between the camera and the linear drive mechanism. The electrical connections on the cutting assembly and the imaging assembly are relatively independent and will not pull each other during the process of affecting the movement of the cutting assembly and the imaging assembly. The electrical connections on the cutting assembly and the imaging assembly can be more stable and not easily loosened.

[0014] The present invention is further configured as: a first battery for supplying power to the camera and the remote control device is provided on the fixing frame, and a second battery for supplying power to the linear drive mechanism and the remote control device is provided on the support frame.

[0015] In the above technical solution, under the requirement of the same capacitance, by supplying power through the first battery box and the second battery respectively, the volume of a single battery can be reduced, the space occupied by a single battery can be decreased, and the single battery is divided into the first battery box and the second battery and separately arranged on the fixing frame and the supporting frame, which can also reduce the volume of the cutting assembly and the imaging assembly monomers, avoid the influence of the battery on the movement of the cable cutting device in a narrow environment, enable the cable cutting device to work in a narrow environment, and is beneficial to the practicability of the cable cutting device. At the same time, dividing the single battery into the first battery box and the second battery and separately arranging them on the fixing frame and the supporting frame reduces the weight of the cutting assembly and the imaging assembly monomers, facilitates the operation of the cutting assembly and the imaging assembly, and is beneficial to improving the operability of the cable cutting device. In addition, dividing the single battery into the first battery box and the second battery and separately arranging them on the fixing frame and the supporting frame can avoid electrical connection between the cutting assembly and the imaging assembly. The electrical connection on the cutting assembly and the electrical connection on the imaging assembly are relatively independent and will not pull each other during the movement affecting the cutting assembly and the imaging assembly, and the electrical connections on the cutting assembly and the imaging assembly can be more stable and not easily loosened.

[0016] The present invention is further configured as: the cable cutting device has an unfolded state and a stored state. When the cable cutting device is in the stored state, the fixing frame clamps the supporting frame so that the fixing frame is fixed to the supporting frame.

[0017] In the above technical solution, when the cable cutting device is not in use, the cable cutting device can be set to the stored state for placement. There is no need to disassemble the device for placement, and there is no need to worry about the complexity or loss problems that may be caused by multiple small parts after the device is disassembled. And when in use, the device can be directly unfolded from the stored state to the unfolded state, which is convenient for the use of the cable cutting device. Specifically, the fixing frame and the supporting frame are fixed by the fixing frame clamping the supporting frame. Among them, the fixing frame, the supporting frame, and the connecting rod form a triangular structure, and the triangular structure has stability, which can make the storage of the cable cutting device more stable.

[0018] The present invention is further configured as: when the cable cutting device is in the stored state, the camera is arranged on the side facing the supporting frame.

[0019] In the above technical solution, when the cable cutting device is in the stored state, the camera is arranged on the side facing the supporting frame, so that when an external object hits the camera, it first hits the supporting frame, and the supporting frame can play a protective role to prevent the external object from hitting and damaging the camera.

[0020] The present invention is further configured as: a rotating frame is installed on the fixing frame, the camera is fixed to the rotating frame, and when the cable cutting device is in the stored state, rotating the rotating frame can make the camera extend into the cable cutting groove.

[0021] In the above technical solution, when the cable cutting device is in the storage state, the camera is extended into the cable cutting groove by rotating the rotating frame. When the cable cutting device is being transported or idle, the camera is located in the cable cutting groove, and the cable cutting groove plays a protective role around the camera, which can prevent foreign objects from hitting the camera and causing damage to the camera. In addition, the angle of the camera can be adjusted by rotating the rotating frame to adapt to the changing working conditions during the actual use of the cable cutting device, which is beneficial to improving the practicability of the cable cutting device.

[0022] The present invention is further configured as: a power switch for controlling whether the linear drive mechanism is powered on is provided on the support frame. When the cable cutting device is in the storage state, the connecting rod presses the power switch and keeps the power switch in the off state.

[0023] In the above technical solution, when the cable cutting device is in the storage state, the camera is located in the cable cutting groove. The connecting rod presses the power switch and keeps the power switch in the off state, and the linear drive mechanism is in the power-off state. To start the linear drive mechanism, the storage state must be released and the camera must be taken out of the cable cutting groove, which can prevent the linear drive mechanism in the storage state from being accidentally started, causing the linear drive mechanism to drive the blade to move and damage the camera in the cable cutting groove.

[0024] The beneficial effect of the present invention is that when cutting a cable, the cable is fixed by the fixing frame and the support frame at the same time, and the cable cutting device is fixed more stably. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a schematic diagram of the storage state of the present invention Figure 1 ; Figure 3 is a schematic diagram of the storage state of the present invention Figure 2 ; Figure 4 is a top view of the present invention; Figure 5 is a schematic perspective structural diagram of the present invention.

[0026] In the figure: cutting assembly 1; support frame 10; blade 11; linear drive mechanism 12; power switch 121; cable cutting groove 13; grounding post 14; support seat 15; movable seat 16; bolt 17; camera assembly 2; fixing frame 21; mounting frame 211; first clamping plate 212; second clamping plate 213; sliding frame 214; locking assembly 215; connecting rod 22; camera 23; rotating frame 24. DETAILED DESCRIPTION OF THE INVENTION

[0027] In the description of this embodiment, it should be noted that when terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", "front", "rear", etc. appear, the orientation or positional relationship indicated is based on the orientation or positional relationship shown in the drawings. This is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present invention. In addition, when terms such as "first", "second", "third" appear, they are only for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0028] The present invention will be further described below with reference to the drawings and specific embodiments.

[0029] Embodiment 1: As Figures 1 to 5 shown, a visual remote cable cutting device includes a cutting assembly 1, a camera assembly 2 and a remote control device. The cutting assembly 1 includes a support frame 10, a blade 11, and a linear drive mechanism 12 installed on the support frame 10. A cable cutting groove 13 is provided on the support frame 10. The cutting edge of the blade 11 faces the cable cutting groove 13. The telescopic end of the linear drive mechanism 12 is connected to the blade 11 and drives the blade 11 to slide relative to the support frame 10. The camera assembly 2 includes a fixing frame 21 for clamping the cable, a connecting rod 22, and a camera 23 installed on the cable fixing frame 21. One end of the connecting rod 22 is hinged to the fixing frame 21, and the other end of the connecting rod 22 is hinged to the support frame 10. The camera 23 faces the blade 11. The remote control device is used to remotely control the linear drive mechanism 12 and the camera 23.

[0030] In this embodiment, the user remotely controls the camera 23 through the remote control device and observes the cable cutting process, and then remotely controls the linear drive mechanism 12 through the remote control device to drive the blade 11 to cut the cable. The cable can be cut through remote control. When cutting the cable, the cable is fixed by the fixing frame 21 and the support frame 10 at the same time. The cable cutting device is fixed more stably, which can reduce the jitter of the camera 23, is beneficial to the camera 23 to transmit a clear picture, and further enables the user to better understand the cutting site conditions, which is beneficial to improving the practicality of the device. In addition, the camera assembly 2 and the cutting assembly 1 are connected by the connecting rod 22, and both the camera assembly 2 and the cutting assembly 1 are hinged to the connecting rod 22. The position of the camera assembly 2 relative to the cutting assembly 1 can be adjusted, so that the angle of the camera 23 is better and it is easy to observe the cable cutting.

[0031] In this embodiment, the linear drive mechanism 12 is an electric cylinder. Of course, it can be understood that in other embodiments, the linear drive mechanism 12 can also be an oil cylinder or a pneumatic cylinder.

[0032] Specifically, as Figure 5As shown in the figure, the fixing bracket 21 includes a mounting bracket 211, a first clamping plate 212, a second clamping plate 213, a sliding bracket 214 and a locking assembly 215. The sliding bracket 214 is slidably connected to the mounting bracket 211. The first clamping plate 212 is fixed to the mounting bracket 211. The second clamping plate 213 is fixed to the sliding bracket 214. The locking assembly 215 is installed on the mounting bracket 211 and is used to lock or release the sliding bracket 214. One end of the connecting rod 22 is hinged to the mounting bracket 211, and the camera 23 is installed on the mounting bracket 211. When the fixing bracket 21 clamps the cable, the movement of the sliding bracket 214 drives the second clamping plate 213 to slide, and makes the second clamping plate 213 approach the first clamping plate 212 fixed on the mounting bracket 211. After the second clamping plate 213 and the first clamping plate 212 contact the cable, stop moving the sliding bracket 214, and then lock the sliding bracket 214 through the locking assembly 215, and the clamping of the cable by the fixing bracket 21 ends.

[0033] Among them, the locking assembly includes a fastener. A chute is provided on the mounting bracket 211. The fastener passes through the chute and is threadedly connected to the sliding bracket 214 to lock or release the sliding bracket.

[0034] Specifically, as Figure 1 and Figure 5 shown, the support frame 10 includes a support base 15 and a movable base 16. The support base 15 and the movable base 16 enclose a cable cutting groove 13. The blade 11 is slidably connected to the support base 15. The linear drive mechanism 12 is installed on the support base 15. One end of the movable base 16 is hinged to the support base 15, and the other end of the movable base 16 is detachably connected to the support base 15 through a bolt 17. One end of the movable base 16 is hinged to the support base 15. When placing the cable into the cable cutting groove 13, the enclosure of the movable base 16 and the support base 15 can be released by rotating the movable base 16, and the cable can be directly placed between the movable base 16 and the support base 15, and then rotate the movable base 16 to make the enclosure of the movable base 16 and the support base 15. There is no need to find the head of the cable to penetrate into the cable cutting groove 13, which is convenient for placing the cable, and thus convenient for operating the cable cutting device, which is beneficial to improving the operability of the cable cutting device. In addition, installing both the blade 11 and the linear drive mechanism 12 on the support base 15 can reduce the weight of the movable part, facilitate rotating the movable base 16 to release the enclosure of the movable base 16 and the support base 15, and is beneficial to improving the operability of the cable cutting device.

[0035] Specifically, the remote control device includes a first control unit, a second control unit, a first antenna, a second antenna, and a remote controller with a display screen. The first antenna is electrically connected to the first control unit, the first control unit is electrically connected to the camera 23, the second antenna is electrically connected to the second control unit, and the second control unit is electrically connected to the linear driving mechanism 12. The remote controller is electrically connected to the first control unit and the second control unit through the first antenna and the second antenna respectively. By electrically connecting to the first control unit and the second control unit through the first antenna and the second antenna respectively and controlling the camera 23 and the linear driving mechanism 12 respectively, it is possible to avoid the electrical connection between the camera 23 and the linear driving mechanism 12, which affects the movement of the cutting assembly 1 and the imaging assembly 2. At the same time, there is no electrical connection between the camera 23 and the linear driving mechanism 12, and the electrical connections on the cutting assembly 1 and the imaging assembly 2 are relatively independent. During the process of affecting the movement of the cutting assembly 1 and the imaging assembly 2, they will not pull each other, and the electrical connections on the cutting assembly 1 and the imaging assembly 2 can be more stable and not easily loosened.

[0036] To protect the equipment, as Figure 5 shown, the support frame 10, the blade 11, the fixing frame 21, and the connecting rod 22 are all made of metal. A grounding post 14 is provided on the support frame 10, and the grounding post 14 is used to connect the grounding wire. When the cable being cut is not powered off, the support frame 10, the blade 11, the fixing frame 21, and the connecting rod 22 are all made of metal, and the grounding post 14 is provided on the support frame 10. The electrical current in the cable can be released to the ground through the grounding post 14 connecting the grounding wire to protect the equipment from being damaged by the electric current. It can be understood that in another embodiment, the grounding post 14 is provided on the fixing frame 21.

[0037] Specifically, the grounding post 14 includes a connecting portion, a pressing portion, and an operating portion connected in sequence. The connecting portion is provided with an external thread and is threadedly connected to the support frame 10 or the fixing frame 21. The pressing portion presses the grounding wire against the support frame 10 or the fixing frame 21, and the operating portion facilitates the operation.

[0038] For ease of operation, a first battery for powering the camera 23 and the remote control device is provided on the fixing frame 21, and a second battery for powering the linear drive mechanism 12 and the remote control device is provided on the support frame 10. With the same power capacity requirement, by separately powering with the first battery and the second battery, the volume of a single battery can be reduced, the space occupied by a single battery can be decreased. Dividing a single battery into the first battery and the second battery and separately arranging them on the fixing frame 21 and the support frame 10 can also reduce the volume of the cutting assembly 1 and the imaging assembly 2 per unit, avoiding the influence of the battery on the movement of the cable cutting device in a narrow environment, enabling the cable cutting device to work in a narrow environment, which is beneficial to the practicality of the cable cutting device; at the same time, dividing a single battery into the first battery and the second battery and separately arranging them on the fixing frame 21 and the support frame 10 reduces the weight of the cutting assembly 1 and the imaging assembly 2 per unit, facilitating the operation of the cutting assembly 1 and the imaging assembly 2, which is beneficial to improving the operability of the cable cutting device. In addition, dividing a single battery into the first battery and the second battery and separately arranging them on the fixing frame 21 and the support frame 10 can avoid electrical connection between the cutting assembly 1 and the imaging assembly 2. The electrical connections on the cutting assembly 1 and the imaging assembly 2 are relatively independent, and will not pull on each other during the movement processes affecting the cutting assembly 1 and the imaging assembly 2, and the electrical connections on the cutting assembly 1 and the imaging assembly 2 can be more stable and not prone to loosening.

[0039] For ease of placing the device, as Figures 1 to 3 shown, the cable cutting device has a deployed state and a stored state. When the cable cutting device is in the stored state, the fixing frame 21 clamps the support frame 10 to fix the fixing frame 21 and the support frame 10. When the cable cutting device is not in use, the cable cutting device can be set to the stored state for placement, without having to disassemble the device for placement, without worrying about the complexity or loss problems that may be caused by multiple small parts after the device is disassembled, and when in use, the device can be directly expanded from the stored state to the deployed state, which is convenient for the use of the cable cutting device. Specifically, the fixing of the fixing frame 21 and the support frame 10 is achieved by the fixing frame 21 clamping the support frame 10. Among them, the fixing frame 21, the support frame 10, and the connecting rod 22 form a triangular structure, and the triangular structure has stability, which can make the storage of the cable cutting device more stable.

[0040] Specifically, as Figure 2 shown, when the cable cutting device is in the stored state, the camera 23 is arranged on the side facing the support frame 10. When the cable cutting device is in the stored state, the camera 23 is arranged on the side facing the support frame 10, so that for an external object to impact the camera 23, it first has to impact the support frame 10, and the support frame 10 can play a protective role to prevent the external object from damaging the camera 23.

[0041] Preferably, as Figure 3As shown, a rotating frame 24 is installed on the fixed frame 21, and the camera 23 is fixed to the rotating frame 24. When the cable cutting device is in the storage state, the rotating frame 24 can be rotated to allow the camera 23 to extend into the cable cutting groove 13. When the cable cutting device is in the storage state, the camera 23 is extended into the cable cutting groove 13 by rotating the rotating frame 24. When the cable cutting device is transported or idle, the camera 23 is located in the cable cutting groove 13, and the cable cutting groove 13 plays a protective role around the camera 23, which can prevent foreign objects from hitting the camera 23 and causing damage to the camera 23. In addition, the angle of the camera 23 can be adjusted by rotating the rotating frame 24 to adapt to the variable working conditions when the cable cutting device is actually used, which is conducive to improving the practicality of the cable cutting device.

[0042] The rotating frame 24 itself can rotate multiple times and is fixed by fasteners at the rotating positions.

[0043] In order to increase the safety, the support frame 10 is provided with a power switch 121 for controlling whether the linear drive mechanism 12 is powered on. When the cable cutting device is in the storage state, the connecting rod 22 presses the power switch 121 and turns the power switch 121 into the off state. When the cable cutting device is in the storage state, the camera 23 is located in the cable cutting groove 13. The connecting rod 22 presses the power switch 121 and turns the power switch 121 into the off state, and the linear drive mechanism 12 is in the power-off state. To start the linear drive mechanism 12, the storage state must be released and the camera 23 must be taken out of the cable cutting groove 13. This can prevent the linear drive mechanism 12 in the storage state from being accidentally started, causing the linear drive mechanism 12 to drive the blade 11 to move and damage the camera 23 in the cable cutting groove 13.

[0044] The specific description of the present invention in the above embodiments is only used to further illustrate the present invention and cannot be understood as limiting the scope of protection of the present invention. Technical engineers in this field may make some non-essential improvements and adjustments to the present invention based on the contents of the above invention, which fall within the scope of protection of the present invention.

Claims

1. A visual remote cable cutting device, characterized in that, Comprising: A cutting assembly, which includes a support frame, a blade, and a linear drive mechanism installed on the support frame. A cable cutting groove is provided on the support frame. The cutting edge of the blade faces the cable cutting groove. The telescopic end of the linear drive mechanism is connected to the blade and drives the blade to slide relative to the support frame; A camera assembly, which includes a fixing frame for clamping the cable, a connecting rod, and a camera installed on the cable fixing frame. One end of the connecting rod is hinged to the fixing frame, and the other end of the connecting rod is hinged to the support frame. The camera faces the blade; A remote control device, which is used to remotely control the linear drive mechanism and the camera.

2. The visual remote cable cutting device according to claim 1, characterized in that, The support frame, blade, fixing frame, and connecting rod are all made of metal. A grounding post is provided on the support frame and / or the fixing frame, and the grounding post is used to connect the grounding wire.

3. The visual remote cable cutting device according to claim 1, characterized in that, The fixing frame includes a mounting frame, a first clamping plate, a second clamping plate, a sliding frame, and a locking assembly. The sliding frame is slidably connected to the mounting frame. The first clamping plate is fixed to the mounting frame, the second clamping plate is fixed to the sliding frame, and the locking assembly is installed on the mounting frame to lock or release the sliding frame. One end of the connecting rod is hinged to the mounting frame, and the camera is installed on the mounting frame.

4. A visual remote cable cutting device according to claim 1, characterized in that, The support frame includes a support base and a movable seat. The support base and the movable seat enclose to form the cable cutting groove. The blade is slidably connected to the support base; the linear drive mechanism is installed on the support base. One end of the movable seat is hinged to the support base, and the other end of the movable seat is detachably connected to the support base by a bolt.

5. The visual remote cable cutting device according to claim 1, characterized in that, The remote control device includes a first control unit, a second control unit, a first antenna, a second antenna, and a remote controller with a display screen. The first antenna is electrically connected to the first control unit, the first control unit is electrically connected to the camera, the second antenna is electrically connected to the second control unit, the second control unit is electrically connected to the linear drive mechanism, and the remote controller is electrically connected to the first control unit and the second control unit through the first antenna and the second antenna respectively by electrical signals.

6. The visual remote cable cutting device according to claim 1, characterized in that, A first battery for powering the camera and the remote control device is provided on the fixing frame, and a second battery for powering the linear drive mechanism and the remote control device is provided on the support frame.

7. The visual remote cable cutting device according to claim 1, characterized in that, The cable cutting device has a deployed state and a stored state. When the cable cutting device is in the stored state, the fixing frame clamps the support frame so that the fixing frame and the support frame are fixed.

8. A visual remote cable cutting device according to claim 7, characterized in that, When the cable cutting device is in the stored state, the camera is arranged on the side facing the support frame.

9. The visual remote cable cutting device according to claim 7, characterized in that, A rotating frame is installed on the fixing frame, and the camera is fixed to the rotating frame. When the cable cutting device is in the stored state, rotating the rotating frame can make the camera extend into the cable cutting groove.

10. A visual remote cable cutting device according to claim 9, characterized in that, A power switch for controlling whether the linear drive mechanism is powered on is provided on the support frame. When the cable cutting device is in the stored state, the connecting rod presses the power switch and makes the power switch in the off state.

Citation Information

Patent Citations

  • A remote-controlled visual cable cutting device

    CN110943401B