Movable support for wire harness conduction equipment
By designing a movable support including base frame A, base frame B, fixed frame A, fixed frame B and fixed components, the problems of existing wire harness conduction equipment movable supports being unable to be used separately and inconvenient to move are solved. It realizes the flexible use and position adjustment of the conduction plate and conduction machine, and is suitable for the flexible movement of wire harness conduction equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2026-03-31
AI Technical Summary
Existing mobile brackets for wire harness connection equipment cannot separate the connection plate and the connection machine, and are inconvenient to move and cannot be flexibly adjusted according to the site conditions.
A movable support frame is designed, comprising a base frame A, a base frame B, a fixed frame A, a fixed frame B, and a fixing component. Through a combination of sliding connection and threaded sleeve, the guide plate and the guide machine can be separated and moved flexibly. The support frame can be assembled and disassembled through the cooperation of a limit rod and a drive rod.
It enables the synchronous or independent use of the conduction plate and the conduction machine, is easy to move, has a wider range of applications, and is more flexible in use. It can adjust the position of the support rod and the fixing plate according to the needs, and is suitable for the flexible movement of wire harness conduction equipment.
Smart Images

Figure CN224065099U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wire harness conduction equipment technology, and specifically to a movable bracket for wire harness conduction equipment. Background Technology
[0002] Wire harness continuity testing equipment is used to detect various electrical connection problems in wire harnesses. It is mainly used to detect problems such as continuity, short circuit, open circuit, and misalignment of wire harnesses. It can also detect the airtightness of the sheath, the presence and position of the secondary lock, the function of the airbag, and accessories such as wire resistance and diodes. It is widely used in various fields that require high-reliability connections, such as automotive manufacturing, aerospace and industrial control.
[0003] However, when using the existing mobile bracket for wire harness connection equipment, the connection plate and the connection machine in the wire harness connection equipment share a set of brackets, and the bracket is fixed and cannot be moved. When connection is needed, the operator needs to carry the wire harness to the front of the equipment. The equipment cannot be moved according to the site conditions, and the connection plate and the connection machine cannot be used separately. Therefore, a mobile bracket for wire harness connection equipment is designed. Utility Model Content
[0004] The main purpose of this utility model is to provide a mobile bracket for wire harness conduction equipment. This utility model solves the problems of existing mobile brackets for wire harness conduction equipment, such as the inability to separate the conduction plate and conduction machine in the wire harness conduction equipment and the inconvenience of moving the wire harness conduction equipment, by setting up a support rod, a fixing plate, a base frame A, a base frame B, a fixing frame A, a fixing frame B, and fixing components.
[0005] The technical solution adopted by this utility model to solve its technical problem is a movable bracket for a wire harness conduction device, including a base frame A and a base frame B. An outer rod A is welded to the top of the base frame A, and an inner rod A is slidably connected to the inner side of the outer rod A. A fixing frame A is screwed to the end of the inner rod A away from the outer rod A. A support rod for supporting the conduction plate is welded to the top of the fixing frame A. An outer rod B is welded to the top of the base frame B, and an inner rod B is slidably connected to the inner side of the outer rod B. A fixing frame B is screwed to the top of the inner rod B. A fixing plate for supporting the conduction device is bolted to one side of the fixing frame B. A drive rod is inserted into one side of the base frame A, and a double-ended lead screw is fixed to one side of the drive rod. The double-ended lead screw is externally threaded to a threaded sleeve A and a threaded sleeve B, with threaded sleeve A located to the right of threaded sleeve B. A limit rod A is welded to the outside of threaded sleeve A, and a limit rod B is welded to the outside of threaded sleeve B. Support blocks are symmetrically welded to the outside of the base frame B, and limit holes are opened on the surface of the support blocks. Grooves are symmetrically opened on the surface of the base frame A to allow the support blocks to enter the base frame A. Wheels are fixed to the bottom of both the base frame A and the base frame B. A fixing component is provided inside the inner rod A to fix the inner rod A.
[0006] By adopting the above technical solution, when the wire harness conduction device needs to be moved, the conduction plate is placed in the fixed frame A, the support rod on the fixed frame A limits the conduction plate, and then the fixed frame A is pushed to move. Subsequently, the inner rod A below the fixed frame A drives the base frame A on the outer rod A to move, and then the wheels below the base frame A roll. Then the conduction machine is placed on the fixed plate on one side of the fixed frame B, the fixed plate supports the conduction machine, and then the fixed frame B is pushed to move. The inner rod B below the fixed frame B drives the base frame B on the outer rod B to move, and then the wheels below the base frame B roll, thereby facilitating the movement of the wire harness conduction device.
[0007] When the wire harness conduction device moves to the designated position, the symmetrically installed support blocks on the base frame B enter the symmetrically opened grooves on the base frame A. Then, the drive rod on the base frame A is rotated, which in turn drives the bidirectional lead screw to rotate. The threaded sleeves A and B outside the bidirectional lead screw are both limited by the external structure, causing the threaded sleeves A and B to move laterally in opposite directions outside the bidirectional lead screw. Then, the threaded sleeve A drives the limit rod A to move, and the threaded sleeve B drives the limit rod B to move, so that the limit rods A and B respectively enter the limit holes opened on the two sets of support blocks, thereby connecting the base frame A and the base frame B. This facilitates the assembly and disassembly of the support for moving the wire harness conduction device.
[0008] Specifically, the fixing component includes a connecting block, a connecting groove, a fixing hole, a fixing block, and a spring. The inner rod A has springs symmetrically welded inside, and a fixing block is welded to one side of the spring. The outer rod A has fixing holes symmetrically opened on its surface to allow the fixing blocks to enter the outer rod A.
[0009] By adopting the above technical solution, when the position of the support rod and the fixing plate needs to be adjusted, the fixing block in the fixing hole on the outer rod A is pressed, and then the spring on one side of the fixing block is compressed, causing the fixing block to move out of the fixing hole. Then the fixing block enters the inner rod A, and then the inner rod A is pulled to move. Then the inner rod A slides inside the outer rod A, and then the inner rod A drives the support rod on the fixing frame A to move. Then the spring in the inner rod A drives the fixing block to pop outward, so that the fixing block enters another fixing hole opened on the outer rod A, thereby fixing the inner rod A. At the same time, the internal structure of the outer rod B is the same as the internal structure of the outer rod A, and the internal structure of the inner rod B is the same as the internal structure of the inner rod A. This allows the inner rod B to drive the fixing plate on the fixing frame B to move, thereby facilitating the adjustment of the position of the support rod and the fixing plate as needed.
[0010] Specifically, the inner rod A has a connecting block integrally formed symmetrically on its outer side, and the outer rod A has a connecting groove symmetrically formed on its inner side to allow the connecting block to slide.
[0011] By adopting the above technical solution, when the inner rod A moves inside the outer rod A, the integrally formed connecting block outside the inner rod A slides in the connecting groove opened inside the outer rod A, thereby improving the stability of the inner rod A moving inside the outer rod A.
[0012] Specifically, both the limiting rod A and the limiting rod B are welded with sliders, and the base frame A has a groove for the sliders to slide.
[0013] By adopting the above technical solution, when limit rod A and limit rod B move, the sliders welded to the outside of limit rod A and limit rod B slide in the groove opened in the base frame A, thereby improving the stability of the movement of limit rod A and limit rod B.
[0014] Specifically, the inner dimensions of the groove match the outer dimensions of the support block.
[0015] By adopting the above technical solution, when the base frame B is connected to the base frame A, the symmetrically installed support blocks on the base frame B enter the symmetrically opened grooves on the surface of the base frame A, and the inner side of the groove matches the support block, thus facilitating the support block to enter the groove.
[0016] The beneficial effects of this utility model are:
[0017] (1) The present invention describes a movable bracket for a wire harness conduction device. When the wire harness conduction device is moved to a designated position, the symmetrically installed support blocks on the base frame B enter the symmetrically opened grooves on the base frame A. Then, the drive rod on the base frame A is rotated, and the drive rod drives the bidirectional lead screw to rotate. The threaded sleeves A and B outside the bidirectional lead screw are limited by the external structure, so that the threaded sleeves A and B move laterally in opposite directions outside the bidirectional lead screw. Then, the threaded sleeve A drives the limit rod A to move, and the threaded sleeve B drives the limit rod B to move, so that the limit rods A and B respectively enter the limit holes opened on the two sets of support blocks, so that the base frame A and the base frame B are connected. This facilitates the assembly and disassembly of the bracket for moving the wire harness conduction device. It can be used synchronously or separately for the conduction plate and the conduction machine. It is easy to move, has a wider range of applications, and is more flexible in use.
[0018] (2) The movable bracket for wire harness conduction equipment described in this utility model, when the position of the support rod and the fixing plate needs to be adjusted, press the fixing block in the fixing hole on the outer rod A, then the spring on one side of the fixing block is compressed, so that the fixing block moves out of the fixing hole, and then the fixing block enters the inner rod A. Then the inner rod A is pulled to move, and then the inner rod A slides in the outer rod A. Then the inner rod A drives the support rod on the fixing frame A to move, and then the spring in the inner rod A drives the fixing block to pop out, so that the fixing block enters another fixing hole opened on the outer rod A, so that the inner rod A is fixed. At the same time, the internal structure of the outer rod B is the same as the internal structure of the outer rod A, and the internal structure of the inner rod B is the same as the internal structure of the inner rod A, so that the inner rod B drives the fixing plate on the fixing frame B to move, thereby facilitating the adjustment of the position of the support rod and the fixing plate according to the needs of the wire harness conduction equipment. Attached Figure Description
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0020] Figure 1 This is a schematic diagram of the overall structure of a movable support for a wire harness conduction device according to the present invention.
[0021] Figure 2 This is a schematic diagram of the external structure of the base frame B of a movable support for a wire harness conduction device according to the present invention;
[0022] Figure 3 This is a schematic diagram of the internal structure of the base frame A of a movable support for a wire harness conduction device according to the present invention;
[0023] Figure 4 This is a top view of the internal structure of the outer rod A and inner rod A of a movable bracket for a wire harness conduction device according to the present invention;
[0024] In the diagram: 1. Base frame A; 2. Wheel; 3. Outer rod A; 4. Inner rod A; 5. Outer rod B; 6. Inner rod B; 7. Fixing frame A; 8. Fixing frame B; 9. Base frame B; 10. Support rod; 11. Fixing plate; 12. Support block; 13. Limiting hole; 14. Two-way lead screw; 15. Limiting rod A; 16. Groove; 17. Drive rod; 18. Slide groove; 19. Slider; 20. Limiting rod B; 21. Threaded sleeve B; 22. Threaded sleeve A; 23. Fixing hole; 24. Fixing block; 25. Spring; 26. Connecting groove; 27. Connecting block; 28. Fixing assembly. Detailed Implementation
[0025] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0026] As an embodiment of this utility model, for assembling and disassembling the bracket for moving the wire harness conduction device, such as... Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the movable support for a wire harness conduction device according to this utility model includes a base frame A1 and a base frame B9. An outer rod A3 is welded to the top of the base frame A1. An inner rod A4 is slidably connected to the inner side of the outer rod A3, and a fixing frame A7 is screwed to the end of the inner rod A4 away from the outer rod A3. A support rod 10 for supporting the conduction plate is welded to the top of the fixing frame A7. An outer rod B5 is welded to the top of the base frame B9, and an inner rod B6 is slidably connected to the inner side of the outer rod B5. A fixing frame B8 is screwed to the top of the inner rod B6. A fixing plate 11 for supporting the conduction mechanism is bolted to one side of the fixing frame B8. A drive rod 17 is inserted into one side of the base frame A1. A double-acting lead screw 14 is screwed to one side of the drive rod 17. The double-acting lead screw 14 is externally threaded to a threaded sleeve A22 and a threaded sleeve B21, with the threaded sleeve A22 located to the right of the threaded sleeve B21. A limit rod A15 is welded to the outside of the threaded sleeve A22, and a limit rod B20 is welded to the outside of the threaded sleeve B21. Support blocks 12 are symmetrically welded to the outside of the base frame B9, and limit holes 13 are opened on the surface of the support blocks 12. Grooves 16 are symmetrically opened on the surface of the base frame A1 to allow the support blocks 12 to enter the base frame A1. Wheels 2 are screwed to the bottom of both the base frame A1 and the base frame B9. A fixing component 28 is provided inside the inner rod A4 to fix the inner rod A4.
[0027] When the wire harness conduction device needs to be moved during use, the conduction plate is placed inside the fixed frame A7. The support rod 10 on the fixed frame A7 limits the conduction plate. Then, the fixed frame A7 is pushed to move. Subsequently, the inner rod A4 below the fixed frame A7 drives the base frame A1 on the outer rod A3 to move. Then, the wheels 2 below the base frame A1 roll. Then, the conduction device is placed on the fixed plate 11 on one side of the fixed frame B8. The fixed plate 11 supports the conduction device. Then, the fixed frame B8 is pushed to move. The inner rod B6 below the fixed frame B8 drives the base frame B9 on the outer rod B5 to move. Then, the wheels 2 below the base frame B9 roll, which facilitates the movement of the wire harness conduction device.
[0028] When the wire harness conduction device moves to the designated position, the symmetrically installed support blocks 12 on the base frame B9 enter the symmetrically opened grooves 16 on the base frame A1. Then, the drive rod 17 on the base frame A1 is rotated, and the drive rod 17 drives the bidirectional lead screw 14 to rotate. The threaded sleeves A22 and B21 outside the bidirectional lead screw 14 are both limited by the external structure, so that the threaded sleeves A22 and B21 move laterally in opposite directions outside the bidirectional lead screw 14. Then, the threaded sleeve A22 drives the limiting rod A15 to move, and the threaded sleeve B21 drives the limiting rod B20 to move, so that the limiting rods A15 and B20 respectively enter the limiting holes 13 opened on the two sets of support blocks 12, so that the base frame A1 and the base frame B9 are connected, thereby facilitating the connection of the support for the movement of the wire harness conduction device.
[0029] To adjust the position of the support rod 10 and the fixing plate 11, for example, such as Figure 4 As shown, the present invention also includes the fixing component 28, which includes a connecting block 27, a connecting groove 26, a fixing hole 23, a fixing block 24, and a spring 25. The inner rod A4 has springs 25 symmetrically welded inside, and a fixing block 24 is welded to one side of the spring 25. The outer rod A3 has fixing holes 23 symmetrically opened on its surface, allowing the fixing block 24 to enter the outer rod A3.
[0030] In use, when the positions of the support rod 10 and the fixing plate 11 need to be adjusted, the fixing block 24 in the fixing hole 23 on the outer rod A3 is pressed, and then the spring 25 on one side of the fixing block 24 is compressed, causing the fixing block 24 to move out of the fixing hole 23. Then the fixing block 24 enters the inner rod A4, and then the inner rod A4 is pulled to move. Then the inner rod A4 slides in the outer rod A3, and then the inner rod A4 drives the support rod 10 on the fixing frame A7 to move. Then the spring 25 in the inner rod A4 drives the fixing block 24 to pop outward, so that the fixing block 24 enters another fixing hole 23 opened on the outer rod A3, thereby fixing the inner rod A4. At the same time, the internal structure of the outer rod B5 is the same as the internal structure of the outer rod A3, and the internal structure of the inner rod B6 is the same as the internal structure of the inner rod A4. This causes the inner rod B6 to drive the fixing plate 11 on the fixing frame B8 to move, thereby facilitating the adjustment of the positions of the support rod 10 and the fixing plate 11 as needed.
[0031] To improve the stability of the inner rod A4 moving within the outer rod A3, for example, such as... Figure 4 As shown, the present invention also includes a connecting block 27 integrally formed symmetrically on the outside of the inner rod A4, and a connecting groove 26 symmetrically formed on the inner side of the outer rod A3 to allow the connecting block 27 to slide.
[0032] When in use, as the inner rod A4 moves within the outer rod A3, the integrally formed connecting block 27 of the inner rod A4 slides within the connecting groove 26 opened in the outer rod A3, thereby improving the stability of the inner rod A4 moving within the outer rod A3.
[0033] To improve the stability of the movement of limit rods A15 and B20, for example, as follows: Figure 3 As shown, the present invention also includes sliders 19 welded to the outside of both the limiting rod A15 and the limiting rod B20, and a groove 18 for sliding the sliders 19 is provided inside the base frame A1.
[0034] When in use, as the limiting rods A15 and B20 move, the sliders 19 welded to the outside of the limiting rods A15 and B20 slide within the grooves 18 opened inside the base frame A1, improving the stability of the movement of the limiting rods A15 and B20.
[0035] To facilitate the insertion of the support block 12 into the recess 16, for example, as shown... Figure 2 and Figure 3 As shown, the present invention also includes a groove 16 whose inner dimensions match the outer dimensions of the support block 12.
[0036] When in use, when the base frame B9 is connected to the base frame A1, the symmetrically installed support blocks 12 on the base frame B9 enter the symmetrically opened grooves 16 on the surface of the base frame A1. The inner side of the groove 16 matches the support block 12, thus facilitating the support block 12 to enter the groove 16.
[0037] When using this utility model, to move the wire harness conduction device, the conduction plate is placed inside the fixed frame A7, the support rod 10 on the fixed frame A7 limits the conduction plate, and then the fixed frame A7 is pushed to move. Subsequently, the inner rod A4 below the fixed frame A7 drives the base frame A1 on the outer rod A3 to move, and then the wheels 2 below the base frame A1 roll. Then the conduction machine is placed on the fixed plate 11 on one side of the fixed frame B8, the fixed plate 11 supports the conduction machine, and then the fixed frame B8 is pushed to move. The inner rod B6 below the fixed frame B8 drives the base frame B9 on the outer rod B5 to move, and then the wheels 2 below the base frame B9 roll, thereby facilitating the movement of the wire harness conduction device.
[0038] When the wire harness conduction device moves to the designated position, the support blocks 12 symmetrically installed on the base frame B9 enter the grooves 16 symmetrically opened on the base frame A1. Then, the drive rod 17 on the base frame A1 is rotated, and the drive rod 17 drives the bidirectional lead screw 14 to rotate. The threaded sleeves A22 and B21 outside the bidirectional lead screw 14 are both limited by the external structure, so that the threaded sleeves A22 and B21 move laterally in opposite directions outside the bidirectional lead screw 14. Then, the threaded sleeve A22 drives the limiting rod A15 to move, and the threaded sleeve B21 drives the limiting rod B20 to move, so that the limiting rods A15 and B20 respectively enter the limiting holes 13 opened on the two sets of support blocks 12, so that the base frame A1 and the base frame B9 are connected, thereby facilitating the connection of the support for the movement of the wire harness conduction device.
[0039] When the positions of the support rod 10 and the fixing plate 11 need to be adjusted, the fixing block 24 in the fixing hole 23 on the outer rod A3 is pressed, and then the spring 25 on one side of the fixing block 24 is compressed, causing the fixing block 24 to move out of the fixing hole 23. Then the fixing block 24 enters the inner rod A4, and then the inner rod A4 is pulled to move. Then the inner rod A4 slides in the outer rod A3, and then the inner rod A4 drives the support rod 10 on the fixing frame A7 to move. Then the spring 25 in the inner rod A4 drives the fixing block 24 to pop outward, so that the fixing block 24 enters another fixing hole 23 opened on the outer rod A3, thereby fixing the inner rod A4. At the same time, the internal structure of the outer rod B5 is the same as the internal structure of the outer rod A3, and the internal structure of the inner rod B6 is the same as the internal structure of the inner rod A4. This causes the inner rod B6 to drive the fixing plate 11 on the fixing frame B8 to move, thereby facilitating the adjustment of the positions of the support rod 10 and the fixing plate 11 as needed.
[0040] When the inner rod A4 moves within the outer rod A3, the integrally formed connecting block 27 of the inner rod A4 slides within the connecting groove 26 opened in the outer rod A3, thereby improving the stability of the inner rod A4 moving within the outer rod A3.
[0041] When the limiting rods A15 and B20 move, the sliders 19 welded to the outside of the limiting rods A15 and B20 slide within the grooves 18 opened in the base frame A1, thereby improving the stability of the movement of the limiting rods A15 and B20.
[0042] When the base frame B9 is connected to the base frame A1, the symmetrically installed support blocks 12 on the base frame B9 enter the symmetrically opened grooves 16 on the surface of the base frame A1. The inner side of the groove 16 matches the support block 12, thus facilitating the support block 12 to enter the groove 16.
[0043] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A mobile stand for harness routing equipment, characterized in that, The utility model provides a double -sided guide machine, including chassis A (1) and chassis B (9), chassis A (1) top welding has outer pole A (3), inner pole A (4) is connected in the inside slide of outer pole A (3), and the one end of inner pole A (4) is fixed with fixed frame A (7) away from outer pole A (3), fixed frame A (7) top welding has the support of the branch pole (10) of guide board, chassis B (9) top welding has outer pole B (5), and outer pole B (5) inner slide is connected with inner pole B (6), and inner pole B (6) top screw connection has fixed frame B (8), and fixed frame B (8) one side bolt connection has the fixed plate (11) of guide machine support, chassis A (1) one side inserts drive rod (17), and drive rod (17) one side screw fixed has two -way screw rod (14), two -way screw rod (14) outer thread is connected with threaded sleeve A (22) and threaded sleeve B (21), and threaded sleeve A (22) is located threaded sleeve B (21) right side, threaded sleeve A (22) outside welding has the limit rod A (15), threaded sleeve B (21) outside welding has the limit rod B (20), the external symmetry of chassis B (9) is welded with the support block (12), and the limit hole (13) of support block (12) surface is seted up, the recess (16) of making support block (12) enter chassis A (1) is seted up to the surface symmetry of chassis A (1), the bottom of chassis A (1) and chassis B (9) is screw fixed with the wheel (2), the inside of inner pole A (4) is provided with the fixed assembly (28) of the inner pole A (4) fixed.
2. A mobile stand for harness live-line equipment according to claim 1, characterized in that The fixed assembly (28) includes a connecting block (27), a connecting groove (26), a fixing hole (23), a fixing block (24), and a spring (25), the inside of the inner pole A (4) is symmetrically welded with the spring (25), and the spring (25) is welded with the fixing block (24) on one side, the surface of the outer pole A (3) is symmetrically provided with the fixing hole (23) for enabling the fixing block (24) to enter the outer pole A (3).
3. A mobile stand for wire harness activation device according to claim 2, characterized in that, The outside of the inner pole A (4) is integrally formed with the connecting block (27) symmetrically, and the inner side of the outer pole A (3) is symmetrically provided with the connecting groove (26) for enabling the connecting block (27) to slide.
4. The mobile stand for wire harness activation device according to claim 1, wherein The outside of the limit rod A (15) and the limit rod B (20) is welded with the sliding block (19), and the inside of the chassis A (1) is provided with the sliding groove (18) for enabling the sliding block (19) to slide.
5. The mobile stand for wire harness activation device according to claim 1, wherein, The inside of the recess (16) is the same size as the outside of the support block (12).