Movement hold-down device

CN224751206UActive Publication Date: 2026-09-15TAIZHOU BOCHENG AUTO PARTS MANUFACTURING CO LTD
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Patent Information

Application Number
CN202522255408.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-24
Publication Date
2026-09-15
Estimated Expiration
2035-10-24

AI Technical Summary

Technical Problem

[0002]现有空气弹簧机芯扣压设备一般包括扣压机、夹具机构等,通过夹具固定机芯,之后以扣压机对固定的机芯进行扣压加工,缺点在于其夹具机构存在操作繁琐、对不同尺寸机芯适应性差等缺点,需改进

Benefits of technology

1、本实用新型设计扣压装置的结构,方便快速对机芯进行固定,有助简化操作步骤,提高效率。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a core buckle and press device, including operation platform, buckle and press machine, fixture mechanism, be provided buckle and press machine on the operation platform still include sliding seat, shift mechanism, the structure of improvement buckle and press device in this scheme, with the top seat cooperation lower pressure mechanism can be fixed to the core fast, and can adjust the up and down position of adjusting nut one adjustment core, improve the adaptability to different size core, and the device structure is helpful to simplify the fixed step of core, convenient operation, improve the efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of buckling device technology, specifically to a movement buckling device. Background Technology

[0002] Existing air spring movement crimping equipment generally includes a crimping machine and a clamping mechanism. The movement is fixed by the clamp, and then the crimping machine performs crimping processing on the fixed movement. The disadvantages are that the clamping mechanism is cumbersome to operate and has poor adaptability to movements of different sizes, which need to be improved. Utility Model Content

[0003] To address at least one of the aforementioned technical deficiencies, this utility model provides the following technical solution: This application discloses a movement clamping device, including an operating table, a clamping machine, and a clamping mechanism. The operating table is equipped with the clamping machine and also includes a slide and a shifting mechanism. The shifting mechanism is located on the operating table, and its moving end is slidably connected to the slide on the operating table, so that the shifting mechanism moves the slide toward the clamping machine. The clamping mechanism is provided on the slide, and the clamping mechanism includes a top seat, a guide rod, and a pressing mechanism. The guide rod is fixed longitudinally on the slide, and the end of the guide rod is located at a connecting hole formed at the top seat, and the two slide together longitudinally. An adjusting nut is threadedly connected to the guide rod along the axial direction, and the adjusting nut abuts against the bottom of the top seat to form a support. The top seat is provided with a groove for inserting the movement. The pressing mechanism is connected to the top seat and is located above the groove, so that the pressing mechanism and the top seat cooperate to clamp the movement between them.

[0004] This design improves the structure of the clamping device, using a top seat in conjunction with a pressing mechanism to quickly fix the movement. The adjustable nut allows for adjustment of the movement's vertical position, improving adaptability to movements of different sizes. This device structure simplifies the movement fixing process, facilitating operation and increasing efficiency.

[0005] Furthermore, the slide includes a first slide plate and a second slide plate, which are slidably connected to the operating table along the same straight line. The moving end of the shifting mechanism is connected to the second slide plate, which is located behind the first slide plate. The first slide plate is provided with a clamping mechanism, and the second slide plate is provided with a stamping end. The shifting mechanism drives the second slide plate to move and simultaneously the stamping end abuts against the movement held by the clamping mechanism, and simultaneously moves the slide plate toward the pressing machine. The double slide plate configuration, combined with the stamping end pushing the moving configuration, can accommodate more sizes of movements and improve flexibility.

[0006] Furthermore, the displacement mechanism includes a telescopic cylinder and a connecting plate. The telescopic cylinder is located inside the cavity of the operating table, and the connecting plate is provided at its moving part. The connecting plate extends out from the hole formed on the top of the operating table. The connecting plate is fixed to the slide plate and a stamped end is provided on the connecting plate. The pressing machine and the slide are located on the top surface of the operating table. The telescopic cylinder type displacement mechanism is easier to install and has a lower cost.

[0007] Furthermore, a connecting end is horizontally arranged on the connecting plate, and the end of the connecting end is fitted and fixed with a horizontally arranged support tube. The end of the support tube is fitted and fixed with a horizontally arranged stamping end, and support tubes of different lengths can be replaced according to the needs of different sized movements.

[0008] Furthermore, the pressing mechanism includes a handle, a pressure rod, a pressure column, and a mounting base. The middle position of the handle is hinged to the mounting base to rotate in the longitudinal plane. The tail end of the handle is hinged to the tail end of the pressure rod to rotate in the longitudinal plane. The tail end of the pressure rod is hinged to the mounting base to rotate in the longitudinal plane. A pressure column is longitudinally arranged at the head end of the pressure rod. Rotating the handle causes the pressure rod to swing up and down, simultaneously moving the pressure column up and down. Rotating the handle completes the pressing and fixing, which is convenient to operate.

[0009] Furthermore, a waist hole is provided at the first end of the pressure rod along the length direction, and the first end of the pressure column passes through the waist hole and the two slide together. Pressure plates are slidably connected to the pressure column at the upper and lower openings of the waist hole and threaded nuts are connected. Tightening the nuts causes the two pressure plates to clamp the pressure rod in the middle to fix the pressure column. The position of the pressure column can be adjusted according to the needs to improve the adaptability to different size movements.

[0010] Furthermore, a connecting seat and a fixing plate are provided on the operating table. The crimping machine is fixed on the connecting seat on the operating table. A positioning tube is provided at the middle cavity of the crimping machine. The positioning tube extends from the tail end of the crimping machine and is connected to the fixing plate. A guide mechanism is provided between the fixing plate and the connecting seat. The guide mechanism includes an adjusting nut, a guide post, and a matching guide bushing. The guide bushing is set on the fixing plate and is sleeved on the guide post. The first end of the guide post on one side of the fixing plate is fixed to the connecting seat, and an elastic element is provided between the tail end of the guide post on the other side of the fixing plate and the fixing plate to form an elastic telescopic connection. The guide post cooperates with the elastic element to improve the buffering performance, and the elastic force of the elastic element causes the positioning tube to reset.

[0011] Furthermore, it also includes an adjusting nut two, which is axially threaded onto a guide post between the connecting seat and the fixed plate.

[0012] Furthermore, it also includes a snapping surface adjustment block, which is located at the end of the positioning tube. The snapping surface adjustment block can be replaced according to the requirements of the movement. The snapping surface adjustment block helps the movement to accurately reach the required snapping position.

[0013] Furthermore, it also includes a protective sleeve, in which the crimping machine is located. A control terminal is provided on the protective sleeve, and the control terminal is connected to the crimping machine and the shifting mechanism to execute predetermined actions as a controller.

[0014] Compared with the prior art, the beneficial effects of this utility model are as follows: 1. The design of the buckling device in this utility model facilitates and quickly fixes the movement, which helps to simplify the operation steps and improve efficiency. Attached Figure Description

[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0016] Figure 1 This is a schematic diagram of the overall structure of the crimping device in Embodiment 1; Figure 2 This is a schematic diagram of the overall structure of the crimping device in Embodiment 1; Figure 3 This is a schematic diagram of the installation structure of the telescopic cylinder; Figure 4 This is a schematic diagram of the crimping device after the protective cover has been removed; Figure 5 This is a schematic diagram of the crimping device after the protective cover has been removed; Figure 6 This is a schematic diagram of the pressing mechanism; Figure 7 This is a schematic diagram of the cross-sectional structure of the crimping device; The attached figures are labeled as follows: 1. Operating platform; 2. Caster wheel; 3. Support plate; 4. Cylinder connecting block; 5. Telescopic cylinder; 6. Guide rod support; 7. Linear guide rod; 8. Linear bearing; 9. Slide plate one; 10. Guide rod two; 11. Guide rod one; 12. Adjusting nut one; 13. Top seat; 14. Mounting seat; 15. Pressing mechanism; 16. Height measuring block; 17. Slide plate two; 18. Connecting plate; 19. Support rib one; 20. Support rib two; 21. Connecting end; 22. Support tube; 23. Stamping end; 24. Connecting... 15. Seat; 26. Crimping machine; 27. Fixing plate; 28. Guide bushing; 29. ​​Guide column; 30. Adjusting nut II; 31. Elastic element; 32. Spring seat; 33. Spring sleeve; 34. Positioning tube; 35. Crimping surface adjustment block; 36. Protective sleeve; 37. Power touch button; 38. Crimping button; 39. Release button; 40. Trigger button I; 41. Mechanism; 150. Mounting base; 151. Handle; 152. Pressure rod; 153. Waist hole; 154. Nut; 155. Pressure plate; 156. Pressure column. Detailed Implementation

[0017] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0018] Example 1 like Figures 1-7 As shown, in this example, the movement clamping device includes an operating table 1, a clamping machine 25, and a clamping mechanism. The operating table 1 is equipped with the clamping machine 25, a slide, a shifting mechanism, etc. The operating table 1 has a common configuration, specifically including a frame, a support plate 3, and a cabinet door. The support plate 3 is installed at the top of the frame, and the cabinet door is hinged to the side of the frame to facilitate the installation or maintenance of components inside the cavity. Casters 2 can be installed at the four corners of the frame for easy movement. The clamping machine 25 and the slide are located on the support plate on the top surface of the operating table.

[0019] In this example, the shifting mechanism is mounted on the support plate 3 at the operating table 1, and its moving end is slidably connected to the slide on the operating table. The snap-fitting machine 25 is mounted on the support plate 3, and the shifting mechanism moves the slide toward the snap-fitting machine. A clamping mechanism is mounted on the slide; for the slide, a conventional configuration can be selected from the market. In this example, to improve adaptability to movements of different sizes, a preferred configuration is... Figure 1 , Figure 2 , Figure 3 , Figure 4 The configuration shown includes a slide plate 9 and a slide plate 17. The slide plate 9 and the slide plate 17 are slidably connected to the operating table 1 along the same straight line. For example, a guide rod support 6 is fixed on the support plate 3, and a linear guide rod 7 is fixed between the two guide rod supports 6. The slide plate 9 and the slide plate 17 are slidably connected to the linear guide rod 7 through a linear bearing 8.

[0020] The moving end of the shifting mechanism is connected to the second sliding plate 17 located behind the first sliding plate 9. The shifting mechanism includes a telescopic cylinder 5 and a connecting plate 18. The telescopic cylinder 5 is located inside the cavity of the operating table 1 and is fixed to the bottom surface of the support plate 3. For example, a cylinder connecting block 4 is fixed to the bottom surface of the support plate 3. The telescopic cylinder 5 is fixed to the cylinder connecting block 4. The moving end of the telescopic cylinder 5 is fixed to the connecting plate 18 longitudinally. The connecting plate 18 extends from an opening formed at the top of the operating table 1, and this opening extends along the moving direction of the second sliding plate 17. To improve structural stability, a first support rib 19 and a second support rib 20 can also be added. The first support rib 19 and the second support rib 20 are fixed between the top and bottom surfaces of the second sliding plate 17 and the connecting plate 18, respectively.

[0021] The connecting plate 18 has a horizontally fixed connecting end 21, and the end of the connecting end 21 is fitted and fixed with the horizontally placed support tube 22. The end of the support tube 22 is fitted and fixed with the horizontally placed stamping end 23. With this configuration, support tubes of different lengths can be replaced according to the needs of different sized movements.

[0022] For the clamping mechanism, such as a top seat 13, a guide rod 11, and a pressing mechanism 15, the guide rod 11 is fixed longitudinally to the slide plate 9. The end of the guide rod 11 is located at the formed connecting hole at the top seat 13, and the two slide together longitudinally. A second guide rod 10 can be added as needed. For example, the second guide rod 10 is fixed longitudinally to both sides of the guide rod 11, and the end of the second guide rod 10 extends into the guide hole at the top seat 13 to guide the movement of the top seat. An adjusting nut 12 is threadedly engaged on the guide rod 11 along the axial direction, and the adjusting nut 12 abuts against the bottom of the top seat 13 to form a support. In use, by turning the adjusting nut 12 to adjust the position of the guide rod 11 up and down, the height of the top seat is adjusted accordingly, which can adapt to the clamping requirements of different sized movements. A height measuring block 16 can also be added. The height measuring block 16 is fixed on one side of the guide rod 11. The height measuring block 16 is marked with a scale, which can provide a reference for adjusting the longitudinal position of the top seat.

[0023] In this example, the top seat 13 is V-shaped, and the V-groove at the top seat 13 is the groove for inserting the movement. The pressing mechanism 15 is connected to the top seat 13 and is located above the groove. The pressing mechanism 15 and the top seat 13 cooperate to clamp the movement 41 between them. The pressing mechanism includes a handle 151, a pressure rod 152, a pressure column 156, and a mounting base 150. The mounting base 150 is fixed to the side of the top seat. The middle position of the handle 151 is hinged to the mounting base 150 to rotate in the longitudinal plane. The tail end of the handle 151 is hinged to the tail end of the pressure rod 152 to rotate in the longitudinal plane. The tail end of the pressure rod 152 is hinged to the mounting base 150 to rotate in the longitudinal plane. The hinge position of the tail end of the pressure rod 152 and the mounting base 150 is below the hinge position of the tail end of the handle and the pressure rod.

[0024] A pressure post 156 is longitudinally mounted at the head end of the pressure rod 152. Rotating the handle causes the pressure rod to swing up and down, simultaneously moving the pressure post up and down. Rotating the handle allows the pressure post to move down and engage with the top seat to clamp the movement in the V-groove, facilitating operation. Alternatively, a waist hole can be formed along the length of the head end of the pressure rod 152. The head end of the pressure post 156 passes through the waist hole, and the two slide together. Pressure plates 155 are slidably connected to the pressure post 156 at the upper and lower openings of the waist hole, and nuts 154 are threaded onto them. Tightening the nuts clamps the pressure rod in the middle between the two pressure plates to fix the pressure post. The position of the pressure post can be adjusted as needed, improving adaptability to movements of different sizes.

[0025] In use, if the telescopic cylinder drives the slide plate two to move synchronously so that the stamping end abuts against the mechanism holding the core, the slide plate one will move toward the buckling machine.

[0026] For the crimping machine 25, it can be purchased directly from the market, so further details are omitted. In this example, a connecting seat 24 and a fixing plate 27 are installed on the operating table 1. The crimping machine 25 is fixed to the connecting seat 24 at the support plate 3 of the operating table 1. A positioning tube 34 is slidably connected to the cavity in the middle of the crimping machine 25. The positioning tube 34 is connected to the fixing plate 27 at the end of its extension from the cavity at the tail end of the crimping machine 25. The tail end of the positioning tube is fixed to the fixing plate 27 by means of a nut. A guide mechanism is installed between the fixed plate 27 and the connecting seat 24. The guide mechanism includes an adjusting nut 30, a guide post 29, and a matching guide bushing 28. The guide bushing 28 is installed on the fixed plate 27 and is fitted onto the guide post 29. The first end of the guide post 29 on one side of the fixed plate 27 is fixed to the connecting seat 24, and an elastic element 31 is installed between the tail end of the guide post 29 on the other side of the fixed plate 27 and the fixed plate 27 to form an elastic telescopic connection. For example, a spring can be used as the elastic element, and the elastic element is fitted onto the tail end of the guide post. For example, a spring seat 32 and a spring sleeve 33 can be installed at the tail end of the guide post 29. The spring sleeve is fitted onto the spring, and one end of the spring abuts against the spring seat and the other end abuts against the fixed plate. When the positioning tube moves backward, the fixed plate moves backward simultaneously, and the spring is compressed. Subsequently, the elastic force of the spring causes the fixed plate to reset, and the positioning tube resets simultaneously.

[0027] An adjusting nut 20 can also be added. The adjusting nut 20 is threadedly connected to the guide post 29 between the connecting seat 24 and the fixing plate 27. The adjusting nut 20 can be turned to adjust the front and rear position of the guide post, thereby limiting the stroke of the positioning tube.

[0028] In this example, a snapping surface adjustment block 35 is added. If the snapping surface adjustment block 35 is fitted into the end of the positioning tube 34, the snapping surface adjustment block can be replaced according to the requirements of the movement. When the movement moves toward the snapping machine, the movement abuts against the snapping surface adjustment block, and the positioning tube moves back to the predetermined position, so that the movement is pressed into the corresponding position in the snapping machine at the same time. The snapping surface adjustment block helps the movement to accurately reach the required snapping position.

[0029] In addition, a protective sleeve 36 can be added, with the crimping machine 25 inside the protective sleeve 36. A control terminal is installed on the protective sleeve 36, and the control is a common model with buttons. The control terminal is connected to the crimping machine and the shifting mechanism so that the controller can perform predetermined actions.

[0030] The usage process is as follows: Before crimping, the user should select the corresponding crimping surface adjustment block and support tube according to the type of crimping mechanism, and adjust the adjusting nut to the appropriate position before turning on the power and pressing the button.

[0031] The user presses the trigger button 40 to control the start of the telescopic cylinder, and the telescopic cylinder 5 moves the stamping end 23 to the rightmost side of the stamping stroke of the telescopic cylinder 5.

[0032] The user places the movement 41 stably in the V-groove of the top plate, and the pressing mechanism secures the movement.

[0033] Adjust the adjusting nut 12 below the top seat to change the vertical height of the top seat 13, so that the cylinder of the movement 41 is concentric with the stamping end 23.

[0034] When the user reverses the trigger button 40, the telescopic cylinder 5 retracts, causing the stamping end 23 to move to the left and contact the rear cylinder of the movement 41, thereby causing the movement 41 and the top seat 13 to move to the left as a whole.

[0035] When the movement 41 comes into close contact with the buckling surface adjustment block 35, the telescopic cylinder 5 continues to retract and reset, while the elastic element 31 is compressed, causing the buckling surface adjustment block 35 and the movement to be pressed into the buckling machine 25.

[0036] When the user presses the crimping button 38 to drive the crimping machine, after the crimping machine 25 completes the crimping, the user presses the release button 39 to drive the crimping machine. The crimping machine then contacts the crimping button 40 and reverses the motion to reset the telescopic cylinder. The elastic element simultaneously causes the positioning tube 34 to reset, and the slide plate 1 resets accordingly.

[0037] Release the pressing mechanism 15 and remove the movement 41 to complete the entire pressing process.

[0038] The above are merely preferred embodiments of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are within its protection scope. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within its protection scope.

Claims

1. A movement fastening device, comprising an operating table (1), a fastening machine (25), and a clamping mechanism, wherein the fastening machine is provided on the operating table, characterized in that, It also includes a slide and a shifting mechanism. The shifting mechanism is set on the operating table (1) and its moving end is connected to the slide that is slidably connected to the operating table. The shifting mechanism moves the slide toward the pressing machine. The slide is provided with a clamping mechanism. The clamping mechanism includes a top seat (13), a guide rod (11), and a pressing mechanism (15). The guide rod (11) is fixed on the slide in the longitudinal direction. The end of the guide rod (11) is located at the connecting hole formed at the top seat (13) and the two slide together in the longitudinal direction. An adjusting nut (12) is threaded along the axial direction on the guide rod (11) and the adjusting nut abuts against the bottom of the top seat (13) to form a support. The top seat (13) is provided with a groove for inserting the movement. The pressing mechanism (15) is connected to the top seat (13) and the pressing mechanism (15) is located above the groove. The pressing mechanism and the top seat cooperate to clamp the movement between them.

2. The movement clamping device as described in claim 1, characterized in that: The slide includes a first slide (9) and a second slide (17). The first slide (9) and the second slide (17) are slidably connected on the operating table (1) along the same straight line. The moving end of the shifting mechanism is connected to the second slide (17) located behind the first slide (9). The first slide (9) is provided with a clamping mechanism, and the second slide (17) is provided with a stamping end (23). The shifting mechanism drives the second slide to move synchronously so that the stamping end abuts against the mechanism holding the mechanism, and synchronously moves the slide towards the pressing machine.

3. The movement clamping device as described in claim 2, characterized in that: The displacement mechanism includes a telescopic cylinder (5) and a connecting plate (18). The telescopic cylinder (5) is located inside the cavity of the operating table (1) and the connecting plate (18) is provided at its moving part. The connecting plate extends out from the hole formed at the top of the operating table. The connecting plate (18) is fixed to the slide plate (17) and a stamping end (23) is provided on the connecting plate (18). The pressing machine and the slide are located at the top surface of the operating table.

4. The movement clamping device as described in claim 3, characterized in that: The connecting plate (18) is horizontally provided with a connecting end (21), and the end of the connecting end is fitted and fixed with a horizontally placed support tube (22). The end of the support tube (22) is fitted and fixed with a horizontally placed stamping end (23).

5. The movement clamping device as described in claim 1, characterized in that: The pressing mechanism (15) includes a handle (151), a pressure rod (152), a pressure column (156), and a mounting base (150). The middle position of the handle is hinged to the mounting base to rotate in the longitudinal plane. The tail end of the handle is hinged to the tail end of the pressure rod to rotate in the longitudinal plane. The tail end of the pressure rod is hinged to the mounting base (150) to rotate in the longitudinal plane. The pressure column (156) is longitudinally arranged at the head end of the pressure rod (152). Rotating the handle causes the pressure rod to swing up and down, and simultaneously causes the pressure column to move up and down.

6. The movement clamping device as described in claim 5, characterized in that: The pressure rod (152) has a waist hole along its length at the first end. The first end of the pressure column (156) passes through the waist hole and the two slide together. The pressure plate (155) is slidably connected to the pressure column at the upper and lower openings of the waist hole and threadedly connected to the nut (154). Tightening the nut causes the two pressure plates to clamp the pressure rod in the middle to fix the pressure column.

7. The movement clamping device as described in claim 1, characterized in that: The operating table (1) is provided with a connecting seat (24) and a fixing plate (27). The crimping machine (25) is fixed on the connecting seat (24) on the operating table. A positioning tube (34) is provided at the middle cavity of the crimping machine (25). The positioning tube is connected to the fixing plate (27) at the end of the end of the crimping machine. A guide mechanism is provided between the fixing plate and the connecting seat (24). The guide mechanism includes an adjusting nut (30), a guide post (29), and a matching guide bushing (28). The guide bushing is provided on the fixing plate (27) and the guide bushing (28) is sleeved on the guide post (29). The first end of the guide post (29) on one side of the fixing plate (27) is fixed to the connecting seat (24), and an elastic element (31) is provided between the tail end of the guide post on the other side of the fixing plate and the fixing plate to form an elastic telescopic connection.

8. The movement clamping device as described in claim 7, characterized in that: It also includes an adjusting nut two (30), which is axially threaded onto a guide post between the connecting seat (24) and the fixing plate (27).

9. The movement clamping device as described in claim 7, characterized in that: It also includes a pressing surface adjustment block (35), which is disposed at the end of the positioning tube (34).

10. The movement clamping device as described in claim 1, characterized in that: It also includes a protective sleeve (36), the crimping machine (25) is located inside the protective sleeve (36), and a control terminal is provided on the protective sleeve. The control terminal is connected to the crimping machine and the shifting mechanism to execute predetermined actions.