Connector box nut implanting device
By designing a connector box nut insertion device with clamping adjustment, heating, and telescopic pushing mechanisms, the problem of the connector box's inability to adjust its position was solved, enabling the precise insertion of multiple nuts and improving operational flexibility and efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIAXING NINGTAO ELECTRONIC TECHNOLOGY CO LTD
- Filing Date
- 2025-01-23
- Publication Date
- 2026-04-17
AI Technical Summary
Existing technology cannot adjust the position of the fixed junction box to insert nuts at different positions, which makes it inconvenient to operate when multiple nuts need to be inserted into some injection molded parts.
A connector box nut insertion device was designed, comprising a clamping and adjusting mechanism, a nut heating mechanism, and a telescopic pushing mechanism. The connector box is fixed by the clamping and adjusting mechanism, the nut heating mechanism heats the nut, and the telescopic pushing mechanism inserts the nut.
This technology enables precise adjustment of the junction box position and accurate insertion of the nut, solving the problem of the inability to adjust the fixed position in existing technologies and improving operational flexibility and efficiency.
Smart Images

Figure CN224130497U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of nut implantation technology, and in particular to a nut implantation device for a connector box. Background Technology
[0002] In existing technologies, such as the hot melt nut implantation device for injection molded parts disclosed on the Chinese patent website with publication number CN220904146U, a heating element can preheat the nut, making it easier to melt the implantation part of the injection molded part, thereby ensuring the implantation depth and quality. It is also simple to operate, reducing the workload of operators. The fixing component can effectively fix the position of the injection molded part, reducing the shaking that may occur during the implantation process. At the same time, it can position the injection molded part, ensuring that the implantation part of the injection molded part faces the output end of the ejector. The dust cover, heat insulation shell and protective shell can ensure that the implantation action is carried out effectively, while protecting the safety of the workers.
[0003] However, in actual use, nuts can only be inserted at fixed positions. When multiple nuts need to be inserted into some injection molded parts (such as junction boxes), it is not possible to adjust the position of the fixed injection molded part to insert nuts at different positions. Utility Model Content
[0004] To address the existing technical problem of not being able to adjust the position of the fixed junction box for nut insertion at different locations, this utility model proposes a junction box nut insertion device.
[0005] This utility model discloses a connector box nut implantation device, including a base platform. A sliding groove is formed on the upper part of the base platform. Horizontal threaded rods are rotatably connected to the inner walls of both sides of the sliding groove via ball bearings. Horizontal sliding blocks are threadedly connected to the threaded surfaces of the horizontal threaded rods. A clamping and adjusting mechanism is provided above the horizontal sliding blocks. A support rod is fixedly installed on the upper part of the base platform. Sliding rods are slidably inserted into the inner side walls of the support rods. Support plates are fixedly installed on the upper parts of multiple sliding rods. A telescopic pushing mechanism is provided on the upper part of the support plates. A nut heating mechanism is also provided on the upper part of the base platform.
[0006] The clamping and adjusting mechanism clamps and fixes the junction box.
[0007] The nut heating mechanism heats the nut to be implanted.
[0008] The telescopic pushing mechanism enables the heated nut to be inserted into the junction box.
[0009] Preferably, the clamping adjustment mechanism includes a sliding shell, which is fixedly installed on the upper part of the horizontal sliding block. The inner top and bottom surfaces of the sliding shell are rotatably connected to vertical threaded rods via ball bearings. A vertical sliding block is threaded onto the threaded surface of the vertical threaded rod. The outer surface of the vertical sliding block is slidably inserted into the inner wall of the sliding shell. A mounting plate is fixedly installed on one side of the vertical sliding block. A clamping groove is formed on one side surface of the mounting plate. Limiting rods are fixedly installed on opposite inner surfaces of the clamping groove. A clamping slider is slidably inserted into the arc surface of the limiting rod. A return spring is fixedly installed on one inner wall of the clamping groove. One end of the return spring is fixedly connected to one side of the clamping slider. A clamping plate is fixedly installed on one side of the clamping slider. One side of each of the four clamping plates presses against the connector box body.
[0010] The above technical solution involves setting up a clamping plate. Pushing the clamping plate allows the clamping slider to slide along the clamping groove under the action of the limiting rod. Compressing the return spring allows the return spring to push the clamping slider to press and fix the clamping plate against the connector box body. A horizontal threaded rod and a vertical threaded rod are provided. The rotation of the horizontal threaded rod allows the horizontal sliding block to slide in the sliding groove, and the rotation of the vertical threaded rod allows the vertical sliding block to slide up and down in the sliding shell. The cooperation between the horizontal threaded rod and the vertical threaded rod allows the position of the connector box body clamped and fixed on one side of the mounting plate to be adjusted.
[0011] Preferably, one end of the horizontal threaded rod passes through and extends out of one side of the base platform, and an adjusting motor is fixedly installed on one side of the base platform. The output end of the adjusting motor is fixedly connected to one end of the horizontal threaded rod through a coupling. The upper end of the vertical threaded rod passes through and extends out of the upper part of the sliding shell, and a lifting motor is fixedly installed on the upper part of the sliding shell. The output end of the lifting motor is fixedly connected to the upper end of the vertical threaded rod through a coupling.
[0012] The above technical solution involves setting an adjusting motor to drive a horizontal threaded rod to rotate and adjust the position of the horizontal sliding block, and setting a lifting motor to drive a vertical threaded rod to rotate and adjust the position of the vertical sliding block.
[0013] Preferably, the nut heating mechanism includes a storage box, which is fixedly installed on the upper part of the base platform. The storage box has a placement slot inside, and a nut body is slidably inserted into the inner side wall of the placement slot. The storage box also has a fixing slot inside, and an electric telescopic rod is fixedly installed on the inner side wall of the fixing slot. A pressure plate is fixedly installed at the lower part of the telescopic end of the electric telescopic rod, and one side of the pressure plate is in pressing contact with the upper part of the nut body. A push-out is provided on one side of the storage box, and the push-out is located above the fixing slot.
[0014] The above technical solution involves setting up a placement groove, through which the nut body is placed in the storage box. Simultaneously, the nut body will slide down the inclined surface of the placement groove to the bottom of the fixing groove under the action of gravity. Activating the electric telescopic rod can cause the pressure plate to move down and squeeze and fix the nut body. A push-out port is provided, through which the nut body can be pushed out of the storage box.
[0015] Preferably, a support platform is fixedly installed on the upper part of the base, and an electromagnetic coil is fixedly installed on the upper part of the support platform. The electromagnetic coil is located on one side of the ejection port.
[0016] The above technical solution involves setting up an electromagnetic coil to electromagnetically heat the nut body at the ejection port, thereby rapidly heating the nut body.
[0017] Preferably, the telescopic pushing mechanism includes an electric push rod, the telescopic end of which is fixedly mounted with a mounting shell, a rotating motor is fixedly mounted on one inner wall of the mounting shell, the output end of the rotating motor is fixedly connected to a rotating rod via a coupling, the rotating rod passes through and extends out of one side of the mounting shell, and a threaded head is fixedly mounted on one end of the rotating rod, the threaded surface of the threaded head being threadedly connected to the threaded hole of the nut body.
[0018] The above technical solution involves setting up an electric push rod. Activating the electric push rod allows the mounting housing to move the rotating rod to one side of the nut body. Activating the rotating motor allows the rotating rod to rotate, causing the threaded end of one end of the rotating rod to be screwed into the threaded hole of the nut body, which is pressed and fixed by the pressure plate. This ensures that the nut body is stably fixed to one side of the rotating rod. Furthermore, the rotating rod and the threaded end are made of non-metallic materials to prevent the electromagnetic coil from electromagnetically heating the rotating rod and the threaded end.
[0019] Preferably, the upper part of the base platform is provided with an installation groove, and an electric lifting rod is fixedly installed on the inner side wall of the installation groove. The upper part of the telescopic end of the electric lifting rod is fixedly connected to the lower part of the support plate.
[0020] The above technical solution involves setting an electric lifting rod to move the support plate upward, which in turn moves the rotating rod upward, causing the nut body to move to the side of the ejection port. Activating the electric push rod then pushes the nut body out of the ejection port.
[0021] The beneficial effects of this utility model are as follows:
[0022] 1. By setting a clamping and adjusting mechanism to clamp and fix the connector box and adjust its position, and setting a nut heating mechanism to heat the nut to be implanted, and a telescopic pushing mechanism to push the heated nut and implant it into the connector box, the technical problem of not being able to adjust and fix the position of the connector box to implant nuts in different positions is solved.
[0023] 2. By setting a clamping plate, pushing the clamping plate can drive the clamping slider to slide along the clamping groove under the action of the limiting rod, compressing the return spring, so that the return spring can push the clamping slider to drive the clamping plate to press and fix the connector box body. A horizontal threaded rod and a vertical threaded rod are set. The rotation of the horizontal threaded rod can make the horizontal sliding block slide in the sliding groove, and the rotation of the vertical threaded rod can make the vertical sliding block slide up and down in the sliding shell. The cooperation between the horizontal threaded rod and the vertical threaded rod can adjust the position of the connector box body clamped and fixed on one side of the mounting plate, and can insert nuts at different positions on the connector box body.
[0024] 3. By setting an electric lifting rod to move the support plate upward, the rotating rod can move upward, causing the nut body to move to the side of the ejection port. Activating the electric push rod can push the nut body out of the ejection port. The electric push rod can be set up so that the mounting shell can move the rotating rod to one side of the nut body. Activating the rotating motor can drive the rotating rod to rotate, so that the threaded head at one end of the rotating rod is screwed into the threaded hole of the nut body that is pressed and fixed by the pressure plate. This makes the nut body stably fixed to one side of the rotating rod. The rotating rod and the threaded head are made of non-metallic materials to prevent the electromagnetic coil from electromagnetically heating the rotating rod and the threaded head. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of a connector box nut implantation device proposed in this utility model;
[0026] Figure 2 This is a perspective view of the sliding shell structure of a connector box nut implantation device proposed in this utility model;
[0027] Figure 3 A perspective view of the vertical sliding block structure of a connector box nut implantation device proposed in this utility model;
[0028] Figure 4 This is a perspective view of the support plate structure of a connector box nut implantation device proposed in this utility model;
[0029] Figure 5 This is a perspective view of the placement groove structure of a connector box nut implantation device proposed in this utility model;
[0030] Figure 6 This is a perspective view of the electromagnetic coil structure of a connector box nut implantation device proposed in this utility model;
[0031] Figure 7 This is a perspective view of the electric lifting rod structure of a connector box nut implantation device proposed in this utility model.
[0032] In the diagram: 1. Base platform; 2. Sliding groove; 3. Horizontal threaded rod; 4. Horizontal sliding block; 5. Support rod; 6. Sliding rod; 7. Support plate; 8. Sliding shell; 9. Vertical threaded rod; 10. Vertical sliding block; 11. Mounting plate; 12. Clamping groove; 13. Limiting rod; 14. Clamping slider; 15. Return spring; 16. Clamping plate; 17. Connector box body; 18. Adjusting motor; 19. Lifting motor; 20. Storage box; 21. Placement groove; 22. Nut body; 23. Fixing groove; 24. Electric telescopic rod; 25. Pressure plate; 26. Push-out port; 27. Support platform; 28. Electromagnetic coil; 29. Electric push rod; 30. Mounting shell; 31. Rotating motor; 32. Rotating rod; 33. Threaded head; 34. Mounting groove; 35. Electric lifting rod. Detailed Implementation
[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0034] Reference Figures 1-7 A connector box nut implantation device includes a base platform 1. A sliding groove 2 is provided on the upper part of the base platform 1. Horizontal threaded rods 3 are rotatably connected to the inner walls of both sides of the sliding groove 2 via ball bearings. Horizontal sliding blocks 4 are threadedly connected to the threaded surfaces of the horizontal threaded rods 3. A clamping and adjusting mechanism is provided above the horizontal sliding blocks 4. A support rod 5 is fixedly installed on the upper part of the base platform 1. Sliding rods 6 are slidably inserted into the inner side wall of the support rod 5. Support plates 7 are fixedly installed on the upper parts of the multiple sliding rods 6. A telescopic pushing mechanism is provided on the upper part of the support plates 7. A nut heating mechanism is also provided on the upper part of the base platform 1.
[0035] The clamping and adjusting mechanism clamps and secures the junction box.
[0036] The nut heating mechanism heats the nut that needs to be inserted.
[0037] The telescopic push mechanism enables the heated nut to be inserted into the junction box.
[0038] To adjust the position of the clamped connector box, the clamping adjustment mechanism includes a sliding shell 8, which is fixedly installed on the upper part of the horizontal sliding block 4. The inner top and inner bottom surfaces of the sliding shell 8 are rotatably connected to a vertical threaded rod 9 via ball bearings. The threaded surface of the vertical threaded rod 9 is threadedly connected to a vertical sliding block 10. The outer surface of the vertical sliding block 10 is slidably inserted into the inner side wall of the sliding shell 8. An mounting plate 11 is fixedly installed on one side of the vertical sliding block 10. A clamping groove 12 is opened on one side surface of the mounting plate 11. Limiting rods 13 are fixedly installed on the inner opposite surfaces of the clamping groove 12. A clamping slider 14 is slidably inserted into the arc surface of the limiting rod 13. A return spring 15 is fixedly installed on one side inner wall of the clamping groove 12. One end of the return spring 15 is fixedly connected to one side of the clamping slider 14. A clamping plate 16 is fixedly installed on one side of the clamping slider 14. One side of each of the four clamping plates 16 is pressed against the connector box body 17.
[0039] By setting the clamping plate 16, pushing the clamping plate 16 can drive the clamping slider 14 to slide along the clamping groove 12 under the action of the limiting rod 13, compressing the return spring 15, so that the return spring 15 can push the clamping slider 14 to drive the clamping plate 16 to press and fix the connector box body 17. A horizontal threaded rod 3 and a vertical threaded rod 9 are set. The rotation of the horizontal threaded rod 3 can make the horizontal sliding block 4 slide in the sliding groove 2, and the rotation of the vertical threaded rod 9 can make the vertical sliding block 10 slide up and down in the sliding shell 8. The cooperation between the horizontal threaded rod 3 and the vertical threaded rod 9 can adjust the position of the connector box body 17 clamped and fixed on one side of the mounting plate 11.
[0040] To enable automatic position adjustment of the clamped and fixed connector box, one end of the horizontal threaded rod 3 passes through and extends out of one side of the base platform 1. An adjustment motor 18 is fixedly installed on one side of the base platform 1. The output end of the adjustment motor 18 is fixedly connected to one end of the horizontal threaded rod 3 through a coupling. The upper end of the vertical threaded rod 9 passes through and extends out of the upper part of the sliding shell 8. A lifting motor 19 is fixedly installed on the upper part of the sliding shell 8. The output end of the lifting motor 19 is fixedly connected to the upper end of the vertical threaded rod 9 through a coupling.
[0041] The position of the horizontal sliding block 4 is adjusted by rotating the horizontal threaded rod 3 driven by the adjusting motor 18, and the position of the vertical sliding block 10 is adjusted by rotating the vertical threaded rod 9 driven by the lifting motor 19.
[0042] The nut heating mechanism includes a storage box 20, which is fixedly installed on the upper part of the base 1. The storage box 20 has a placement groove 21 inside, and a nut body 22 is slidably inserted into the inner wall of the placement groove 21. The storage box 20 also has a fixing groove 23 inside, and an electric telescopic rod 24 is fixedly installed on the inner wall of the fixing groove 23. A pressure plate 25 is fixedly installed at the lower part of the telescopic end of the electric telescopic rod 24. One side of the pressure plate 25 is in contact with the upper part of the nut body 22. A push-out port 26 is opened on one side of the storage box 20, and the push-out port 26 is located above the fixing groove 23.
[0043] By setting up a placement groove 21, the nut body 22 is placed in the storage box 20. At the same time, the nut body 22 will slide down the inclined surface of the placement groove 21 to the bottom of the fixing groove 23 under the action of gravity. Activating the electric telescopic rod 24 can make the pressure plate 25 move down to squeeze and fix the nut body 22. A push-out port 26 is set up so that the nut body 22 can be pushed out of the storage box 20 through the push-out port 26 on one side of the fixing groove 23.
[0044] In order to quickly heat the nut body 22, a support platform 27 is fixedly installed on the upper part of the base 1, and an electromagnetic coil 28 is fixedly installed on the upper part of the support platform 27. The electromagnetic coil 28 is located on one side of the ejection port 26.
[0045] The above technical solution involves setting an electromagnetic coil 28 to electromagnetically heat the nut body 22 that is pushed out of the ejection port 26, thereby rapidly heating the nut body 22.
[0046] In order to push out the nut body 22 in the fixing groove 23, the telescopic pushing mechanism includes an electric push rod 29. The telescopic end of the electric push rod 29 is fixedly installed with a mounting shell 30. A rotating motor 31 is fixedly installed on the inner wall of one side of the mounting shell 30. The output end of the rotating motor 31 is fixedly connected to a rotating rod 32 through a coupling. The rotating rod 32 passes through and extends out of one side of the mounting shell 30. A threaded head 33 is fixedly installed at one end of the rotating rod 32. The threaded surface of the threaded head 33 is threadedly connected to the threaded hole of the nut body 22.
[0047] By setting up an electric push rod 29, starting the electric push rod 29 can cause the mounting shell 30 to drive the rotating rod 32 to move to one side of the nut body 22. Starting the rotating motor 31 can drive the rotating rod 32 to rotate, so that the threaded head 33 at one end of the rotating rod 32 is screwed into the threaded hole of the nut body 22 which is pressed and fixed by the pressure plate 25, so that the nut body 22 is stably fixed to one side of the rotating rod 32. The rotating rod 32 and the threaded head 33 are made of non-metallic materials to prevent the electromagnetic coil 28 from electromagnetically heating the rotating rod 32 and the threaded head 33.
[0048] In order to enable the rotating rod 32 to drive the nut body 22 to move out of the fixing groove 23, an installation groove 34 is provided on the upper part of the base 1. An electric lifting rod 35 is fixedly installed on the inner side wall of the installation groove 34. The upper part of the telescopic end of the electric lifting rod 35 is fixedly connected to the lower part of the support plate 7.
[0049] By setting the electric lifting rod 35 to drive the support plate 7 to move upward, the rotating rod 32 can move upward, driving the nut body 22 to move to one side of the push-out port 26. Activating the electric push rod 29 can push the nut body 22 out of the push-out port 26.
[0050] Working principle: First, push the four clamping plates 16 outward to compress the return spring 15 of the clamping slider 14. Then, place the connector box body 17 in the middle of one side of the mounting plate 11, release the clamping plates 16, and reset the return spring 15. Under the push of the return spring 15, the four clamping plates 16 clamp and fix the connector box body 17. Start the adjusting motor to drive the horizontal threaded rod 3 to rotate and adjust the position of the horizontal sliding block 4. Set the lifting motor 19 to drive the vertical threaded rod 9 to rotate and adjust the position of the vertical sliding block 10. The mounting plate 11 clamps and fixes the connector box body 17 on one side for position adjustment. Then, the multiple nut bodies 22 to be implanted are placed into the storage box 20 through the placement groove 21. Under the action of gravity, the nut bodies 22 slide down the inclined surface of the placement groove 21 to the bottom of the fixing groove 23. Then, the electric telescopic rod 24 is activated, causing the pressure plate 25 to move down and press and fix the nut bodies 22. Then, the electric push rod 29 is activated, which causes the mounting shell 30 to drive the rotating rod 32 to move to one side of the nut body 22. The rotating motor 31 is activated to drive the... Rotating the rotating rod 32 causes the threaded end 33 at one end of the rotating rod 32 to be screwed into the threaded hole of the nut body 22, which is pressed and fixed by the pressure plate 25. This stably fixes the nut body 22 to one side of the rotating rod 32. Activating the electric lifting rod 35 moves the support plate 7 upward, allowing the rotating rod 32 to move upward and causing the nut body 22 to move to one side of the ejection port 26. After the nut body 22 moves upward, a new nut body 22 will slide again from the placement groove 21 into the fixing groove 23. Activating the electric push rod 29 can then move the nut body... 22 is pushed out of the ejector port 26, so that the nut body 22 enters the electromagnetic coil 28, and the electromagnetic coil 28 is electromagnetically heated by the nut body 22 at one end of the rotating rod 32. The electric push rod 29 is started again, so that the heated nut body 22 at one end of the rotating rod 32 is inserted into the connector box body 17. After the nut body 22 cools down, the rotating motor 31 is started to drive the rotating rod 32 to rotate, so that the threaded head 33 is unscrewed from the nut body 22, and the electric push rod 29 is reset. The position of the connector box body 17 is adjusted to insert the next nut body 22.
[0051] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A joint box nut implantation device comprising a base table (1), characterized in that: The upper part of the base (1) is provided with a sliding groove (2). The inner walls of both sides of the sliding groove (2) are rotatably connected to a horizontal threaded rod (3) through ball bearings. The threaded surface of the horizontal threaded rod (3) is threadedly connected to a horizontal sliding block (4). A clamping adjustment mechanism is provided above the horizontal sliding block (4). A support rod (5) is fixedly installed on the upper part of the base (1). A sliding rod (6) is slidably inserted into the inner side wall of the support rod (5). A support plate (7) is fixedly installed on the upper part of multiple sliding rods (6). A telescopic pushing mechanism is provided on the upper part of the support plate (7). A nut heating mechanism is also provided on the upper part of the base (1). The clamping and adjusting mechanism performs the action of clamping and fixing the junction box; The nut heating mechanism heats the nut to be implanted. The telescopic pushing mechanism enables the heated nut to be inserted into the junction box.
2. A connector box nut implantation device according to claim 1, characterized in that: The clamping adjustment mechanism includes a sliding shell (8), which is fixedly installed on the upper part of the horizontal sliding block (4). The inner top surface and inner bottom surface of the sliding shell (8) are rotatably connected to a vertical threaded rod (9) via ball bearings. The threaded surface of the vertical threaded rod (9) is threadedly connected to a vertical sliding block (10). The outer surface of the vertical sliding block (10) is slidably inserted into the inner sidewall of the sliding shell (8). A mounting plate (11) is fixedly installed on one side of the vertical sliding block (10). The surface of one side of the mounting plate (11) A clamping groove (12) is provided. Limiting rods (13) are fixedly installed on the inner opposite surfaces of the clamping groove (12). A clamping slider (14) is slidably inserted into the arc surface of the limiting rod (13). A return spring (15) is fixedly installed on one side of the inner wall of the clamping groove (12). One end of the return spring (15) is fixedly connected to one side of the clamping slider (14). A clamping plate (16) is fixedly installed on one side of the clamping slider (14). One side of each of the four clamping plates (16) is pressed against the connector box body (17).
3. A joint box nut implantation device according to claim 2, characterized in that: One end of the horizontal threaded rod (3) passes through and extends out of one side of the base (1). An adjusting motor (18) is fixedly installed on one side of the base (1). The output end of the adjusting motor (18) is fixedly connected to one end of the horizontal threaded rod (3) through a coupling. The upper end of the vertical threaded rod (9) passes through and extends out of the upper part of the sliding shell (8). A lifting motor (19) is fixedly installed on the upper part of the sliding shell (8). The output end of the lifting motor (19) is fixedly connected to the upper end of the vertical threaded rod (9) through a coupling.
4. The connector box nut implantation device of claim 1, wherein: The nut heating mechanism includes a storage box (20), which is fixedly installed on the upper part of the base (1). The storage box (20) has a placement groove (21) inside, and a nut body (22) is slidably inserted into the inner wall of the placement groove (21). The storage box (20) has a fixing groove (23) inside, and an electric telescopic rod (24) is fixedly installed on the inner wall of the fixing groove (23). A pressure plate (25) is fixedly installed at the lower part of the telescopic end of the electric telescopic rod (24). One side of the pressure plate (25) is pressed against the upper part of the nut body (22). A push-out port (26) is opened on one side of the storage box (20), and the push-out port (26) is located above the fixing groove (23).
5. A connector box nut implantation device according to claim 4, characterized in that: A support platform (27) is fixedly installed on the upper part of the base (1), and an electromagnetic coil (28) is fixedly installed on the upper part of the support platform (27). The electromagnetic coil (28) is located on one side of the push-out port (26).
6. A connector box nut implantation device according to claim 5, wherein: The telescopic pushing mechanism includes an electric push rod (29), and a mounting shell (30) is fixedly installed on the telescopic end of the electric push rod (29). A rotating motor (31) is fixedly installed on the inner wall of one side of the mounting shell (30). A rotating rod (32) is fixedly connected to the output end of the rotating motor (31) through a coupling. The rotating rod (32) passes through and extends out of one side of the mounting shell (30). A threaded head (33) is fixedly installed at one end of the rotating rod (32). The threaded surface of the threaded head (33) is threadedly connected to the threaded hole of the nut body (22).
7. A connector box nut implantation device according to claim 1, characterized in that: The upper part of the base (1) is provided with an installation groove (34), and an electric lifting rod (35) is fixedly installed on the inner side wall of the installation groove (34). The upper part of the telescopic end of the electric lifting rod (35) is fixedly connected to the lower part of the support plate (7).
Citation Information
Patent Citations
Hot melting nut implanting device for injection molding part
CN220904146U