Electrical engineering pipeline wiring device

The adjustable positioning and clamping components solve the problem of fixed cable spacing in electrical engineering, enabling stable operation of electrical systems and improving construction efficiency, while adapting to diverse wiring needs.

CN223665942UActive Publication Date: 2025-12-12TAIZHOU ZHONGZHOU ELECTRIC POWER TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202423022176.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-12-12
Estimated Expiration
2034-12-09

AI Technical Summary

Technical Problem

In existing electrical engineering wiring systems, the fixed spacing between conduits makes it impossible to meet the optimal design requirements when there are complex wiring needs, affecting system performance. Furthermore, the mismatch between the actual wiring space and the fixed spacing increases the difficulty of construction.

Method used

Adjustable positioning and clamping components, including positioning posts, return springs, moving seats, and guide wheels, are used to avoid electromagnetic interference and physical collisions by adjusting the pipeline spacing and fixing method, thus ensuring the stable operation of the electrical system.

Benefits of technology

It enables flexible adjustment of pipeline spacing, optimizes the spatial layout of the electrical system, improves construction efficiency and system stability, and adapts to the needs of pipelines with different diameters.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223665942U_ABST
    Figure CN223665942U_ABST
Patent Text Reader

Abstract

The utility model discloses an electrical engineering pipeline wiring device, which relates to the technical field of electrical engineering and comprises a mounting plate, moving seats are symmetrically and slidably connected to the upper end of the mounting plate, a first fixing seat is fixedly connected to the upper ends of the moving seats, a second fixing seat is movably connected to the upper end of the first fixing seat, and fixing blocks are symmetrically and fixedly connected to the bottom end of the second fixing seat. A fixing assembly is mounted in the fixing block, positioning assemblies are symmetrically mounted at the upper end of the moving seat, a first mounting seat and a second mounting seat are mounted in the first fixing seat and the second fixing seat through clamping assemblies correspondingly, and guide wheels are rotationally connected into the first mounting seat and the second mounting seat correspondingly. By adopting the structure, electromagnetic interference and physical collision among different pipelines can be effectively avoided, so that normal operation of an electrical system is ensured, and the space layout of the electrical system can be optimized by adjusting the distance between the pipelines, so that the pipelines are arranged more tidily and orderly.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model belongs to the field of electrical engineering technology, and specifically relates to an electrical engineering pipeline wiring device. Background Technology

[0002] The traditional definition of electrical engineering refers to the sum of disciplines related to the creation of electrical and electronic systems. However, with the rapid development of science and technology, the scope of electrical engineering has far exceeded the traditional definition. Today, electrical engineering encompasses almost all engineering activities related to electronics and photonics, including the design and manufacture of power equipment, the development of automatic control technologies, and the maintenance of power systems. Among these aspects, wiring and cabling systems are a crucial part of electrical engineering, as they relate to the stability and safety of the entire electrical system.

[0003] Announcement No. "CN214590297U" discloses an electrical engineering wiring device, relating to the field of electrical engineering technology. It includes a fixing plate with a cooling mechanism inside. The front surface of the cooling mechanism has a clamping mechanism, which includes an auxiliary housing and a protruding block. A sliding rod is slidably embedded on the left side of the auxiliary housing near its rear surface. In this invention, a wire is placed in two semi-circular grooves, with one side of the wire adhering to the front surface of one of the semi-circular clamping blocks. The semi-circular plates are then rotated via hinges, causing the clamping vertical plate on the rear surface of the protruding block to move and embed itself inside the auxiliary housing. Simultaneously, the operator slides the sliding rod into the fixing plate using a circular button. Once the clamping vertical plate is inside the auxiliary housing, releasing the circular button causes a compression spring to move the limiting block and the sliding rod to the left, thus facilitating wire clamping, disassembly, and subsequent inspection and maintenance.

[0004] Although the aforementioned utility model uses a circular button to slide the sliding rod into the interior of the fixed plate, and after the clamping vertical plate enters the interior of the auxiliary box, releasing the circular button causes the compression spring to move the limiting block and sliding rod to the left, thereby facilitating the clamping of wires and making them easier to disassemble and inspect and maintain later, the spacing between the pipes is fixed when fixing them. During construction, when faced with complex wiring requirements, the fixed spacing may not meet the optimal design scheme, thus affecting the overall performance of the system. Moreover, if the actual wiring space does not match the fixed pipe spacing, construction personnel may need to take additional measures to adapt to this spacing, such as changing the wiring path, increasing or decreasing the number of pipes, which undoubtedly increases the complexity and difficulty of construction. Utility Model Content

[0005] In view of the problems mentioned in the background art, the purpose of this utility model is to provide an electrical engineering pipeline wiring device to solve the problem that when the pipeline is fixed, the spacing between the pipelines is fixed. During the construction process, when faced with complex wiring requirements, the fixed spacing may not meet the optimal design scheme, thereby affecting the overall performance of the system. Moreover, if the actual wiring space does not match the fixed pipeline spacing, the construction personnel may need to take additional measures to adapt to this spacing problem.

[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution:

[0007] An electrical engineering wiring device includes a mounting plate, a movable seat symmetrically slidably connected to the upper end of the mounting plate, a first fixed seat fixedly connected to the upper end of the movable seat, a second fixed seat movably connected to the upper end of the first fixed seat, a fixed block symmetrically fixedly connected to the bottom end of the second fixed seat, a fixing component installed inside the fixed block, a positioning component symmetrically installed on the upper end of the movable seat, a first mounting seat and a second mounting seat respectively installed inside the first fixed seat and the second fixed seat via clamping components, and guide wheels rotatably connected inside both the first mounting seat and the second mounting seat;

[0008] The positioning assembly includes a fixed tube, a first return spring, a movable plate, a connecting post, a handle, and a positioning post. A fixed tube is symmetrically fixedly connected to the upper end of the movable base. A first return spring is fixedly connected to the upper end inside the fixed tube. A movable plate is fixedly connected to the other end of the first return spring. The movable plate is slidably connected to the inside of the fixed tube. A connecting post is fixedly connected to the end of the movable plate near the first return spring. The other end of the connecting post extends out of the upper end of the fixed tube and is fixedly connected to a handle. The first return spring is sleeved on the outside of the connecting post. A positioning post is fixedly connected to the end of the movable plate away from the first return spring. The other end of the positioning post extends out of the bottom end of the movable base. Positioning holes are symmetrically opened on the upper end of the mounting plate. The positioning post penetrates the movable base and is inserted into the positioning hole. This effectively avoids electromagnetic interference and physical collisions between different pipelines, thereby ensuring the normal operation of the electrical system. Furthermore, by adjusting the pipeline spacing, the spatial layout of the electrical system can be optimized, making the pipeline arrangement more neat and orderly.

[0009] As a preferred technical solution, the upper end of the mounting plate is symmetrically provided with T-shaped grooves, and the bottom end of the movable seat is symmetrically fixedly connected with T-shaped blocks. The T-shaped blocks and T-shaped grooves are slidably connected, which improves the stability of the movable seat during movement and helps to prevent the T-shaped blocks from being displaced or deformed due to external forces, thereby ensuring the reliability and safety of the assembly.

[0010] As a preferred technical solution, the fixing component includes a cavity, a second return spring, a push plate, a push block, and a locking block. The fixing block has a cavity inside, and the second return spring is symmetrically fixedly connected to one end of the cavity. The push plate is fixedly connected to the other end of the second return spring. The push plate is slidably connected to the cavity. The push block and the locking block are symmetrically fixedly connected to the end of the push plate away from the second return spring. The end of the push block away from the push plate extends to the side end of the second fixing seat, and the end of the locking block away from the push plate extends to the side end of the fixing block. The upper end of the first fixing seat has symmetrical fixing grooves, which are engaged with the fixing block. One end of the fixing groove has a locking slot, which is engaged with the locking block. This allows for easy maintenance and inspection of the pipeline without a complicated disassembly process, thereby improving maintenance efficiency.

[0011] As a preferred technical solution, the clamping assembly includes an adjusting bolt, a threaded hole, a torsion block, an internal hole, a third return spring, and a moving column. The upper end of the second fixed seat has a threaded hole, and the upper end of the second mounting seat is rotatably connected to the adjusting bolt. The adjusting bolt and the threaded hole are threadedly connected. The end of the adjusting bolt away from the second mounting seat is fixedly connected to the torsion block. One end of the first fixed seat has an internal hole, and the bottom end of the internal hole is fixedly connected to the third return spring. The other end of the third return spring is fixedly connected to the moving column, which is slidably connected to the internal hole. The other end of the moving column is fixedly connected to the bottom end of the first mounting seat. This assembly can firmly fix the pipeline and prevent the pipeline from loosening or falling off due to vibration or external force during operation, thereby ensuring the stable operation of the electrical system. Moreover, it can adapt to pipelines of different diameters and meet the diverse needs of electrical engineering.

[0012] As a preferred technical solution, an anti-slip pad is fixedly connected to the outer wall of the guide wheel. The surface of the anti-slip pad is provided with anti-slip protrusions, which can increase the friction between the guide wheel and the pipeline, and will not damage the surface of the pipeline when clamping it.

[0013] In summary, the present invention has the following main advantages:

[0014] First, in this utility model, pulling the handle upward causes the connecting column to move the moving plate and the positioning column. The moving plate presses against the first return spring, which is compressed. At the same time, the positioning column retracts into the fixed tube, and the positioning column is finally inserted into the positioning hole. Then, the moving seat is pushed, causing the T-shaped block at the bottom of the moving seat to slide inside the T-shaped groove on the mounting plate. This causes the moving seat to move the first fixed seat and the second fixed seat, thus adjusting the spacing when fixing the pipeline. By adjusting the spacing, electromagnetic interference and physical collisions between different pipelines can be effectively avoided, thereby ensuring the normal operation of the electrical system. Moreover, by adjusting the pipeline spacing, the spatial layout of the electrical system can be optimized, making the pipeline arrangement more neat and orderly.

[0015] Secondly, in this utility model, the pipeline is placed inside the first fixed seat, and then the second fixed seat is merged with the first fixed seat through the fixing assembly. Rotating the torsion block causes the torsion block to drive the adjusting bolt to rotate. The adjusting bolt rotates with the threaded hole, thereby controlling the adjusting bolt to drive the second mounting seat and the guide wheel to descend. The guide wheel drives the pipeline to press against the first mounting seat, and the first mounting seat drives the moving column to press against the third return spring. The third return spring is compressed, thus completing the fixing of the pipeline. This can firmly fix the pipeline and prevent the pipeline from loosening or falling off due to vibration or external force during operation, thereby ensuring the stable operation of the electrical system. Moreover, it can adapt to pipelines of different diameters and meet the diverse needs of electrical engineering. Attached Figure Description

[0016] Figure 1 This is a three-dimensional structural schematic diagram of the present invention;

[0017] Figure 2 This is a three-dimensional structural diagram of the first and second fixing seats of this utility model;

[0018] Figure 3 This is a cross-sectional perspective view of the first fixing seat of this utility model;

[0019] Figure 4 This is a cross-sectional three-dimensional structural diagram of the positioning component of this utility model;

[0020] Figure 5 This is a cross-sectional three-dimensional structural diagram of the fixing component of this utility model.

[0021] Reference numerals: 1. Mounting plate; 2. Movable seat; 3. First fixed seat; 4. Second fixed seat; 5. Fixed block; 6. Fixed groove; 7. T-block; 8. T-groove; 9. First mounting seat; 10. Second mounting seat; 11. Guide wheel; 12. Positioning assembly; 121. Fixed tube; 122. First return spring; 123. Movable plate; 124. Connecting post; 125. Pull handle; 126. Positioning post; 13. Positioning hole; 14. Fixed assembly; 141. Cavity; 142. Second return spring; 143. Press plate; 144. Press block; 145. Locking block; 15. Locking groove; 16. Clamping assembly; 161. Adjusting bolt; 162. Threaded hole; 163. Torsion block; 164. Internal hole; 165. Third return spring; 166. Movable post; 17. Anti-slip pad. Detailed Implementation

[0022] Example

[0023] refer to Figures 1 to 5The electrical engineering pipeline wiring device described in this embodiment includes a mounting plate 1. A movable seat 2 is symmetrically slidably connected to the upper end of the mounting plate 1. A first fixed seat 3 is fixedly connected to the upper end of the movable seat 2. A second fixed seat 4 is movably connected to the upper end of the first fixed seat 3. A fixed block 5 is symmetrically fixedly connected to the bottom end of the second fixed seat 4. A fixing component 14 is installed inside the fixed block 5. A positioning component 12 is symmetrically installed on the upper end of the movable seat 2. A first mounting seat 9 and a second mounting seat 10 are respectively installed inside the first fixed seat 3 and the second fixed seat 4 through a clamping component 16. Guide wheels 11 are rotatably connected inside both the first mounting seat 9 and the second mounting seat 10.

[0024] Positioning assembly 12 includes a fixed tube 121, a first return spring 122, a movable plate 123, a connecting post 124, a handle 125, and a positioning post 126. The upper end of the movable base 2 is symmetrically fixedly connected to the fixed tube 121. The upper end of the fixed tube 121 is fixedly connected to the first return spring 122. The other end of the first return spring 122 is fixedly connected to the movable plate 123, which is slidably connected to the inside of the fixed tube 121. The end of the movable plate 123 closest to the first return spring 122 is fixedly connected to the connecting post 124. The other end of the connecting post 124 extends out of the upper end of the fixed tube 121 and is fixedly connected to the handle 125. The first return spring 122 is sleeved on the outside of the connecting post 124. The movable plate 123 is located away from the first return spring 122. One end of the return spring 122 is fixedly connected to a positioning post 126, and the other end of the positioning post 126 extends out of the bottom of the movable seat 2. The upper end of the mounting plate 1 is symmetrically provided with positioning holes 13. The positioning post 126 passes through the movable seat 2 and is inserted into the positioning hole 13. Pulling the handle 125 upward causes the connecting post 124 to drive the movable plate 123 and the positioning post 126 to move. The movable plate 123 presses against the first return spring 122, and the first return spring 122 is compressed. At the same time, the positioning post 126 retracts into the direction of the fixed tube 121. The positioning post 126 and the positioning hole 13 are no longer inserted. Then, the movable seat 2 is pushed, causing the movable seat 2 to drive the first fixed seat 3 and the second fixed seat 4 to move, thus completing the adjustment of the spacing when fixing the pipeline.

[0025] refer to Figure 1 The upper end of the mounting plate 1 is symmetrically provided with T-shaped grooves 8, and the bottom end of the movable seat 2 is symmetrically fixedly connected with T-shaped blocks 7. The T-shaped blocks 7 and the T-shaped grooves 8 are slidably connected. When the movable seat 2 is pushed, causing the movable seat 2 to drive the first fixed seat 3 and the second fixed seat 4 to move, the T-shaped blocks 7 at the bottom end of the movable seat 2 slide inside the T-shaped grooves 8 on the mounting plate 1.

[0026] refer to Figure 5The fixing component 14 includes a cavity 141, a second return spring 142, a pressing plate 143, a pressing block 144, and a locking block 145. The fixing block 5 has a cavity 141 inside. The second return spring 142 is symmetrically fixedly connected to one end of the cavity 141, and the pressing plate 143 is fixedly connected to the other end of the second return spring 142. The pressing plate 143 is slidably connected to the cavity 141. The pressing block 144 and the locking block 145 are symmetrically fixedly connected to the end of the pressing plate 143 away from the second return spring 142. The end of the pressing block 144 away from the pressing plate 143 extends out to the side of the second fixing seat 4, and the end of the locking block 145 away from the pressing plate 143 extends out to the side of the fixing block 5. The upper end of the first fixing seat 3 has symmetrical openings... There is a fixing groove 6, which is engaged with the fixing block 5. One end of the fixing groove 6 has a slot 15, which is engaged with the locking block 145. Pressing the button 144 causes the button plate 143 to move the locking block 145. The button plate 143 presses against the second return spring 142, which is compressed. At the same time, the locking block 145 retracts into the cavity 141. Then the second fixing seat 4 and the first fixing seat 3 are combined, so that the fixing block 5 is inserted into the fixing groove 6. Then the button 144 is released, the second return spring 142 is reset, and the button plate 143 rebounds, causing the locking block 145 to pop out. The locking block 145 is engaged with the slot 15, thus completing the installation of the first fixing seat 3 and the second fixing seat 4.

[0027] refer to Figures 2 to 3 The clamping assembly 16 includes an adjusting bolt 161, a threaded hole 162, a torsion block 163, an internal hole 164, a third return spring 165, and a moving post 166. The second fixed base 4 has a threaded hole 162 at its upper end. The second mounting base 10 is rotatably connected to the adjusting bolt 161, which is threadedly connected to the threaded hole 162. A torsion block 163 is fixedly connected to the end of the adjusting bolt 161 away from the second mounting base 10. The first fixed base 3 has an internal hole 164 at one end. A third return spring 165 is fixedly connected to the bottom end of the internal hole 164. A moving post 166 is fixedly connected to the other end of the third return spring 165. The moving post 166 is connected to the internal hole 164. The hole 164 has a sliding connection inside. The other end of the moving column 166 is fixedly connected to the bottom end of the first mounting base 9. The pipeline is placed inside the first fixed base 3. Then, the second fixed base 4 is merged with the first fixed base 3 through the fixing component 14. The torsion block 163 is rotated, which causes the torsion block 163 to drive the adjusting bolt 161 to rotate. The adjusting bolt 161 rotates with the threaded hole 162, thereby controlling the adjusting bolt 161 to drive the second mounting base 10 and the guide wheel 11 to descend. The guide wheel 11 drives the pipeline to press against the first mounting base 9. The first mounting base 9 drives the moving column 166 to press against the third return spring 165. The third return spring 165 is compressed, completing the fixing of the pipeline.

[0028] refer to Figure 2An anti-slip pad 17 is fixedly connected to the outer wall of the guide wheel 11. The surface of the anti-slip pad 17 is provided with anti-slip protrusions. At the same time, the anti-slip pad 17 can increase the friction between the guide wheel 11 and the pipeline, and will not damage the surface of the pipeline when clamping the pipeline.

[0029] Operating principle and advantages: First, pull the handle 125 upwards, causing the connecting post 124 to move the moving plate 123 and the positioning post 126. The moving plate 123 presses against the first return spring 122, compressing the first return spring 122. At the same time, the positioning post 126 retracts towards the inside of the fixed tube 121, and the positioning post 126 is finally inserted into the positioning hole 13. Then, push the moving seat 2, causing the T-shaped block 7 at the bottom of the moving seat 2 to slide inside the T-shaped groove 8 on the mounting plate 1. This causes the moving seat 2 to move the first fixed seat 3 and the second fixed seat 4. Adjust the first fixed seat 3 and the second fixed seat 4 to the appropriate positions. Then, place the pipeline inside the first fixed seat 3 and press the button 144, causing the button plate 143 to move the locking block 145. The button plate 143 presses against the second return spring 142, compressing the second return spring 142. Simultaneously, the locking block 145 retracts into the cavity 141, and then the second fixing seat 4 and the first fixing seat 3 are merged, so that the fixing block 5 is inserted into the fixing groove 6. Then, the pressing block 144 is released, the second return spring 142 is reset, the pressing plate 143 rebounds and drives the locking block 145 to pop out, and the locking block 145 is locked and fixed with the locking groove 15, completing the installation of the first fixing seat 3 and the second fixing seat 4. Finally, the torsion block 163 is rotated, so that the torsion block 163 drives the adjusting bolt 161 to rotate, and the adjusting bolt 161 rotates with the threaded hole 162, thereby controlling the adjusting bolt 161 to drive the second mounting seat 10 and the guide wheel 11 to descend. The guide wheel 11 drives the pipeline to press against the first mounting seat 9, and the first mounting seat 9 drives the moving column 166 to press against the third return spring 165. The third return spring 165 is compressed, completing the fixing of the pipeline.

[0030] This invention can effectively avoid electromagnetic interference and physical collisions between different pipelines by adjusting the spacing, thereby ensuring the normal operation of the electrical system. Moreover, by adjusting the pipeline spacing, the spatial layout of the electrical system can be optimized, making the pipeline arrangement more neat and orderly. It can also firmly fix the pipelines, preventing them from loosening or falling off due to vibration or external force during operation, thereby ensuring the stable operation of the electrical system.

Claims

1. An electrical engineering pipelaying device comprising a mounting plate (1), characterised in that: The upper end of the mounting plate (1) is symmetrically connected with a moving seat (2) through sliding connection, the upper end of the moving seat (2) is fixedly connected with a first fixing seat (3), the upper end of the first fixing seat (3) is movably connected with a second fixing seat (4), the bottom end of the second fixing seat (4) is fixedly connected with a fixing block (5) in a symmetrical manner, the fixing block (5) is internally provided with a fixing assembly (14), the upper end of the moving seat (2) is symmetrically provided with a positioning assembly (12), the first fixing seat (3) and the second fixing seat (4) are respectively provided with a first mounting seat (9) and a second mounting seat (10) through clamping assemblies (16), and the first mounting seat (9) and the second mounting seat (10) are internally rotatably connected with guide wheels (11). The positioning assembly (12) comprises a fixed tube (121), a first reset spring (122), a moving plate (123), a connecting column (124), a pull handle (125) and a positioning column (126), the upper end of the moving seat (2) is fixedly connected with the fixed tube (121) in a symmetrical manner, the upper end of the fixed tube (121) is fixedly connected with the first reset spring (122) internally, the other end of the first reset spring (122) is fixedly connected with the moving plate (123), the moving plate (123) is slidably connected with the fixed tube (121) internally, one end of the moving plate (123) close to the first reset spring (122) is fixedly connected with the connecting column (124), the other end of the connecting column (124) extends out of the upper end of the fixed tube (121) and is fixedly connected with the pull handle (125), the first reset spring (122) is sleeved outside the connecting column (124), and one end of the moving plate (123) away from the first reset spring (122) is fixedly connected with the positioning column (126), and the other end of the positioning column (126) extends out of the bottom end of the moving seat (2).

2. An electrical engineering wiring device according to claim 1, wherein: The upper end of the mounting plate (1) is symmetrically provided with a positioning hole (13), and the positioning column (126) penetrates through the moving seat (2) and the positioning hole (13) in a plug-in manner.

3. An electrical engineering wiring device according to claim 1, wherein: The upper end of the mounting plate (1) is symmetrically provided with a T-shaped groove (8), the bottom end of the moving seat (2) is fixedly connected with a T-shaped block (7) in a symmetrical manner, and the T-shaped block (7) is slidably connected with the T-shaped groove (8).

4. An electrical engineering wiring device according to claim 1, wherein: The fixing assembly (14) comprises a cavity (141), a second reset spring (142), a pressing plate (143), a pressing block (144) and a clamping block (145), the fixing block (5) is internally provided with the cavity (141), the cavity (141) is fixedly connected with the second reset spring (142) at one end in a symmetrical manner, the other end of the second reset spring (142) is fixedly connected with the pressing plate (143), the pressing plate (143) is slidably connected with the cavity (141) internally, the other end of the pressing plate (143) away from the second reset spring (142) is fixedly connected with the pressing block (144) and the clamping block (145) in a symmetrical manner, the other end of the pressing block (144) away from the pressing plate (143) extends out of the side end of the second fixing seat (4), and the other end of the clamping block (145) away from the pressing plate (143) extends out of the side end of the fixing block (5).

5. An electrical engineering wiring device according to claim 1, wherein: The first fixed seat (3) upper end is symmetrically provided with a fixed groove (6), the fixed groove (6) is clamped with the fixed block (5), one end of the fixed groove (6) is provided with a clamping groove (15), and the clamping groove (15) is clamped with the clamping block (145).

6. An electrical engineering wiring device according to claim 1, wherein: The clamping assembly (16) comprises an adjusting bolt (161), a threaded hole (162), a torsion block (163), an embedded hole (164), a third reset spring (165) and a moving column (166), the second fixed seat (4) upper end is provided with a threaded hole (162), the second mounting seat (10) upper end is rotatably connected with an adjusting bolt (161), the adjusting bolt (161) is screw connected with the threaded hole (162), the adjusting bolt (161) is fixedly connected with a torsion block (163) away from the second mounting seat (10), one end of the first fixed seat (3) is provided with an embedded hole (164), the embedded hole (164) is fixedly connected with a third reset spring (165) at the bottom, the other end of the third reset spring (165) is fixedly connected with a moving column (166), the moving column (166) is slidably connected with the embedded hole (164), and the other end of the moving column (166) is fixedly connected with the first mounting seat (9).

7. An electrical engineering wiring device according to claim 1, wherein: The outer side wall of the guide wheel (11) is fixedly connected with a non-slip pad (17), and the surface of the non-slip pad (17) is provided with non-slip convex points.

Citation Information

Patent Citations

  • Electrical engineering wiring device

    CN214590297U