Modularized rapid assembling device of telescopic folding type heat dissipation corrugated pipe
Through the transmission belt, partition plate, glue coating mechanism and assembly mechanism of the modular and rapid assembly device, the problem of low assembly efficiency of corrugated pipes and joints is solved, and efficient automatic processing and stability of metal corrugated pipes are achieved.
Patent Information
- Application Number
- CN202510900678.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-07-01
AI Technical Summary
The loading and unloading process of existing bellows and joint assembly devices is complicated, and the assembly efficiency needs to be improved.
Modular rapid assembly device is adopted, including conveyor belt, partition plate, glue coating mechanism and assembly mechanism, combined with limit frame and clamping parts to realize the automatic conveying and precise positioning of metal corrugated pipes.
It improves the convenience of loading and unloading of metal corrugated pipes and processing efficiency, reduces position shift and friction wear, and improves overall processing stability and efficiency.
Smart Images

Figure CN120402489A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of bellows production, and in particular to a modular rapid assembly device for a telescopic and foldable heat dissipation bellows. Background Art
[0002] A heat dissipation metal bellows is a pipe with a regular wavy shape, which can increase the turbulence of the fluid in the pipe, thereby improving the heat exchange efficiency. Common metal bellows include those made of carbon steel, stainless steel, steel lined with plastic, aluminum, etc. It is mainly used for non-concentric axial transmission with a very small bending radius, or irregular turning, telescoping, or absorbing the thermal deformation of the pipe, etc., or for connecting pipes to pipes or pipes to equipment in occasions where it is not convenient to install fixed elbows.
[0003] Referring to the Chinese invention patent with the patent number CN111055103A, which discloses a pneumatic assembly machine for assembling bellows and joints, including: a base, a combined bracket A, a combined bracket C, and a combined bracket B. The combined bracket A and the combined bracket C are fixed on the base through a positioning pin B and a positioning pin A. A guide rail A is fixed below the groove of the combined bracket C, and the guide rail A is concentric with the axis of the combined bracket A. A slider A is arranged on the guide rail A. In the present invention, automatic assembly is realized. On the one hand, it can improve labor productivity. The bamboo joint is directly placed on the cushion block, and the bellows is directly clamped at the corrugated position by the clamp block. The axes of the bellows and the bamboo joint are completely concentric, and the process consistency ensures more reliable quality. On the other hand, it reduces the skill requirements for assembly workers and the cylinder direct assembly operation is more labor-saving. The assembly operation of the bellows and the joint is more convenient and fast, and the quality is more stable. The labor production efficiency is greatly improved compared with before.
[0004] In actual production, the feeding and discharging processes of the above device are relatively cumbersome, and the assembly efficiency needs to be improved. Summary of the Invention
[0005] In order to improve the assembly efficiency of bellows and joints, the present application provides a modular rapid assembly device for a telescopic and foldable heat dissipation bellows.
[0006] The modular rapid assembly device for a telescopic and foldable heat dissipation bellows provided by the present application adopts the following technical solutions: A modular rapid assembly device for a retractable and foldable heat dissipation bellows, comprising a frame, the frame comprising a feed side and a discharge side, the frame being provided with a conveyor belt, the conveyor belt being provided with partition plates at intervals, adjacent partition plates forming placement grooves for placing metal bellows, the conveyor belt transporting the metal bellows along the feed side toward the discharge side; the frame being provided with a gluing mechanism and an assembly mechanism in sequence along the direction close to the discharge side, the gluing mechanism being used for rotationally gluing the end face of the metal bellows, and the assembly mechanism being used for assembling the joints.
[0007] By adopting the above technical solution, a conveyor belt and a partition plate are set. In actual use, when the metal bellows moves to the feed side, the metal bellows is placed in the placement groove and moved to the gluing mechanism and the assembly mechanism through the conveyor belt, thereby facilitating the processing of the metal bellows. When the conveyor belt continues to transport, the metal bellows moves to the discharge side and leaves the placement groove, thereby improving the convenience of loading and unloading the metal bellows and improving the overall processing efficiency.
[0008] Optionally, the frame body is provided with a limit frame, the limit frame is provided with a control member and a limit portion, the control member drives the limit portion to move in a vertical direction, the limit portion is provided with a clamping member, and the clamping member is used to clamp the metal bellows.
[0009] By adopting the above technical solution, a control member and a clamping member are provided, and the metal bellows are clamped by the clamping member, so that the position deviation of the metal bellows during the processing is reduced, thereby improving the processing stability.
[0010] Optionally, the frame is provided with a mounting frame, the mounting frame is provided with a driving member and a roller, the roller is located on the side of the clamping member close to the frame, the driving member is used to drive the roller to rotate, the outer wall of the roller is provided with a rolling belt, and the rolling belt is used to resist the metal bellows.
[0011] By adopting the above technical solution, in actual use, the gluing mechanism needs to rotate the metal bellows when applying glue to both ends of the metal bellows. Therefore, rollers and rolling belts are provided to drive the rotation of the metal bellows through the rolling belts, thereby facilitating the processing of the metal bellows.
[0012] Optionally, the clamping member includes a clamping block, a first sliding block, a second sliding block and a control rod. The clamping block is provided with a mounting groove on the side close to the mounting frame. The control rod slides in the mounting groove, and the sliding direction of the control rod is away from the mounting frame. The control rod is located between the first sliding block and the second sliding block. Both the first sliding block and the second sliding block slide on the wall of the mounting groove. The sliding direction of the first sliding block is towards the control rod, and the sliding direction of the second sliding block is towards the control rod. Both the first sliding block and the second sliding block are provided with clamping wheels for clamping the metal bellows. The first sliding block is provided with a first sliding inclined surface on the side close to the control rod. The inclination direction of the first sliding inclined surface extends in the direction away from the second sliding block along the direction away from the mounting frame. The first sliding inclined surface is provided with a first linkage groove. The control rod is provided with a linkage block located on the side of the control rod away from the mounting frame. The linkage block is embedded in the first linkage groove. When the control rod drives the linkage block to move away from the mounting frame, the linkage block drives the first sliding block to move towards the second sliding block. The second sliding block is provided with a second sliding inclined surface on the side close to the control rod. The inclination direction of the second sliding inclined surface extends in the direction away from the first sliding block along the direction away from the mounting frame. The second sliding inclined surface is provided with a second linkage groove for the linkage block to be embedded.
[0013] By adopting the above technical solution, in actual use, there is a situation where the metal bellows is inclined in the placement groove. Therefore, clamping wheels are provided. When the position of the metal bellows needs to be adjusted, the clamping member is moved towards the mounting frame. At this time, the control rod abuts against the metal bellows, and the control rod moves towards the bottom of the mounting groove. At this time, the first sliding block and the second sliding block approach each other, so that the corresponding clamping wheels clamp the metal bellows and adjust the position of the metal bellows to be parallel to the axis direction of the roller, which is convenient for the subsequent processing of the metal bellows. Secondly, the clamping wheels are provided to clamp the metal bellows, reducing the friction with the metal bellows, which is convenient for the rolling belt to drive the metal bellows to rotate.
[0014] Optionally, the first linkage groove includes a sliding groove and a fixing groove. The fixing groove is located on the wall of the sliding groove. The linkage block includes a sliding portion and a fixing portion. The sliding portion is embedded in the sliding groove, and the fixing portion is embedded in the fixing groove.
[0015] By adopting the above technical solution, the sliding groove and the fixing groove are provided. The sliding groove is for the sliding portion to be embedded, and the fixing groove is for the fixing portion to be embedded, thus reducing the situation where the linkage block disengages from the first linkage groove, facilitating the movement of the linkage block to drive the first sliding block to move, and facilitating the position correction and clamping of the metal bellows.
[0016] Optionally, a positioning groove is provided at the bottom of the mounting groove, and the linkage block is provided with a positioning rod, the positioning rod is embedded in the positioning groove, and the positioning rod slides on the wall of the positioning groove. The sliding direction of the positioning rod is in the direction away from the mounting frame, and the wall of the mounting groove is provided with a positioning spring, and the end of the positioning spring away from the bottom of the mounting groove is connected to the linkage block, and the elastic force of the positioning spring limits the linkage block from moving toward the bottom of the mounting groove.
[0017] By adopting the above technical solution, a positioning spring is set, which is used to reset the connecting rod. Secondly, the setting of the positioning spring allows the clamping wheel to clamp the metal bellows with a certain elastic space, thereby reducing the wear on the surface of the metal bellows.
[0018] In summary, this application includes at least one of the following beneficial technical effects: 1. A conveyor belt and a partition plate are provided. In actual use, when the metal bellows moves to the feeding side, the metal bellows is placed in the placement groove and is moved to the gluing mechanism and the assembly mechanism through the conveyor belt, thereby facilitating the processing of the metal bellows. When the conveyor belt continues to transport the metal bellows, the metal bellows moves to the discharging side and leaves the placement groove, thereby improving the convenience of loading and unloading the metal bellows and improving the overall processing efficiency. 2. Set the clamping wheel. When the position of the metal bellows needs to be adjusted, move the clamping piece toward the mounting frame. At this time, the control rod contacts the metal bellows. The control rod moves toward the bottom of the mounting groove. At this time, the sliding block 1 and the sliding block 2 approach each other, so that the corresponding clamping wheel clamps the metal bellows and adjusts the position of the metal bellows to be parallel to the axis direction of the roller, thereby facilitating the subsequent processing of the metal bellows. 3. A positioning spring is provided. The positioning spring is used to reset the linkage rod. Secondly, the setting of the positioning spring allows the clamping wheel to have a certain elastic space for clamping the metal bellows, thereby reducing the wear on the surface of the metal bellows. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is an overall schematic diagram of the embodiment.
[0020] Figure 2 This is an overall schematic diagram of the mounting bracket.
[0021] Figure 3 It is an overall schematic diagram of the clamping block.
[0022] Figure 4 It is a cross-sectional schematic diagram of the clamping block.
[0023] Figure 5 It is an overall schematic diagram of sliding block 1.
[0024] Description of reference numerals: 1. Frame body; 2. Feeding side; 3. Discharging side; 4. Conveyor belt; 5. Partition board; 6. Placing groove; 7. Metal bellows; 8. Gluing mechanism; 9. Assembly mechanism; 10. Mounting frame; 11. Driving part; 12. Roller; 13. Rolling belt; 14. Limiting frame; 15. Control part; 16. Limiting part; 17. Clamping part; 18. Clamping block; 19. First sliding block; 20. Second sliding block; 21. Control rod; 22. Mounting groove; 23. Clamping wheel; 24. First sliding inclined surface; 25. First linkage groove; 26. Sliding groove; 27. Fixed groove; 28. Linkage block; 29. Sliding part; 30. Fixed part; 31. Positioning groove; 32. Positioning rod; 33. Positioning spring; 34. Second sliding inclined surface. Detailed implementation manners
[0025] The following further describes the present application in detail with reference to the accompanying drawings.
[0026] An embodiment of the present application discloses a modular rapid assembly device for a retractable and foldable heat dissipation bellows. Refer to Figure 1 , which includes a frame body 1. The frame body 1 includes a feeding side 2 and a discharging side 3. The frame body 1 is provided with a conveyor belt 4. The conveyor belt 4 is provided with partition boards 5 at intervals. Adjacent partition boards 5 form placing grooves 6 for placing the metal bellows 7. The conveyor belt 4 conveys the metal bellows 7 in the direction from the feeding side 2 to the discharging side 3.
[0027] The frame body 1 is successively provided with a gluing mechanism 8 and an assembly mechanism 9 in the direction close to the discharging side 3. The gluing mechanism 8 is used for rotary gluing on the end face of the metal bellows 7, and the assembly mechanism 9 is used for joint assembly.
[0028] The gluing mechanism 8 includes a gluing frame, a gluing cylinder, a gluing motor and a gluing machine. The gluing cylinder is used to drive the gluing frame to move towards or away from the metal bellows 7 to be processed. The gluing motor is used to cooperate with the gluing machine for gluing on the end of the metal bellows 7. In actual use, the joint assembly machine needs to be used in cooperation with a manipulator and an automatic feeding machine.
[0029] The assembly mechanism 9 includes an assembly frame, an assembly cylinder, an assembly motor and a joint assembly machine. The assembly cylinder is used to drive the assembly frame to move towards or away from the metal bellows 7 to be processed. The assembly motor is used to provide a rotational power source for the joint assembly machine to cooperate with the assembly of the end joint of the metal bellows 7. <>
[0030] See Figure 2 , the frame body 1 is provided with a mounting frame 10. The mounting frame 10 is provided with a driving part 11 and a roller 12. The roller 12 is located on the side of the clamping part 17 close to the frame body 1. The driving part 11 is used to drive the roller 12 to rotate. The outer wall of the roller 12 is provided with a rolling belt 13 for abutting against the metal bellows <>. When the metal bellows 7 moves to the gluing mechanism 8, the rolling belt 13 abuts against the metal bellows 7.
[0031] The frame body 1 is provided with a limiting frame 14, the limiting frame 14 is provided with a control member 15 and a limiting portion 16, the control member 15 drives the limiting portion 16 to move in the vertical direction, the limiting portion 16 is provided with a clamping member 17, and the clamping member 17 is used for clamping the metal bellows 7. In the present application, the control member 15 can be a cylinder, alternatively, the control member 15 can also be an oil cylinder.
[0032] See Figures 3 to 5 , the clamping member 17 includes a clamping block 18, a first sliding block 19, a second sliding block 20 and a control rod 21, the clamping block 18 is provided with an installation groove 22, the installation groove 22 is located on the side of the clamping block 18 close to the installation frame 10, the control rod 21 slides in the installation groove 22, and the sliding direction of the control rod 21 is the direction of approaching or departing from the installation frame 10.
[0033] The control rod 21 is located between the first sliding block 19 and the second sliding block 20, both the first sliding block 19 and the second sliding block 20 slide on the groove wall of the installation groove 22, the sliding direction of the first sliding block 19 is the direction of approaching the control rod 21, the sliding direction of the second sliding block 20 is the direction of approaching the control rod 21, both the first sliding block 19 and the second sliding block 20 are provided with clamping wheels 23, the clamping wheels 23 rotate on the corresponding first sliding block 19 and second sliding block 20, and the clamping wheels 23 are used for clamping the metal bellows 7.
[0034] The first sliding block 19 is provided with a first sliding inclined surface 24, the first sliding inclined surface 24 is located on the side of the first sliding block 19 close to the control rod 21, and the inclination direction of the first sliding inclined surface 24 extends in the direction of departing from the second sliding block 20 along the direction of departing from the installation frame 10. The first sliding inclined surface 24 is provided with a first linkage groove 25, and the first linkage groove 25 includes a sliding groove 26 and a fixing groove 27, and the fixing groove 27 is located on the groove wall of the sliding groove 26.
[0035] The control rod 21 is provided with a linkage block 28, the linkage block 28 is located on the side of the control rod 21 far from the installation frame 10, the linkage block 28 includes a sliding portion 29 and a fixing portion 30, the sliding portion 29 is embedded in the sliding groove 26, and the fixing portion 30 is embedded in the fixing groove 27.
[0036] The bottom of the installation groove 22 is provided with a positioning groove 31, the linkage block 28 is provided with a positioning rod 32, the positioning rod 32 is located at the end of the linkage block 28 far from the control rod 21, the positioning rod 32 is embedded in the positioning groove 31, the positioning rod 32 slides on the groove wall of the positioning groove 31, and the sliding direction of the positioning rod 32 is the direction of approaching or departing from the installation frame 10. The groove wall of the installation groove 22 is provided with a positioning spring 33, one end of the positioning spring 33 far from the bottom of the installation groove 22 is connected to the linkage block 28, and the elastic force of the positioning spring 33 limits the movement of the linkage block 28 in the direction of approaching the bottom of the installation groove 22.
[0037] The sliding block two 20 is provided with a second sliding inclined surface 34. The second sliding inclined surface 34 is located on the side of the sliding block two 20 close to the control rod 21. The inclination direction of the second sliding inclined surface 34 extends in the direction away from the sliding block one 19 along the direction away from the mounting frame 10. The second sliding inclined surface 34 is provided with a second linkage groove for the linkage block 28 to be embedded. In actual use, the second linkage groove has the same structure as the first linkage groove 25.
[0038] When the control rod 21 drives the linkage block 28 to move in the direction away from the mounting frame 10, the linkage block 28 drives the sliding block one 19 and the sliding block two 20 to approach each other. At this time, the clamping wheels 23 provided on the sliding block one 19 and the clamping wheels 23 provided on the sliding block two 20 clamp and correct the position of the metal bellows 7, reducing the inclination of the metal bellows 7.
[0039] The implementation principle of the modular rapid assembly device for the retractable and foldable heat dissipation bellows in the embodiment of the present application is as follows: In actual use, the conveyor belt 4 moves to make the metal bellows 7 move in the direction close to the discharge side 3. When it moves to the gluing mechanism 8, the driving member 11 drives the limiting portion 16 to move in the direction close to the mounting frame 10. At this time, the control rod 21 abuts against the end face of the metal bellows 7. With the continuous driving of the driving member 11, the control rod 21 moves in the direction close to the bottom of the mounting groove 22 because it abuts against the metal bellows 7. At this time, the linkage block 28 drives the sliding block one 19 and the sliding block two 20 to move, so as to clamp and correct the position of the metal bellows 7.
[0040] The above are all the preferred embodiments of the present application, and the protection scope of the present application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A modular rapid assembly device for a telescopic and foldable heat dissipation corrugated pipe, comprising a frame body (1), characterized in that: The frame body (1) includes a feeding side (2) and a discharging side (3). The frame body (1) is provided with a conveyor belt (4). The conveyor belt (4) is provided with partition plates (5) at intervals. Adjacent partition plates (5) form a placement groove (6). The placement groove (6) is for placing the metal bellows (7). The conveyor belt (4) conveys the metal bellows (7) from the feeding side (2) towards the discharging side (3). The frame body (1) is sequentially provided with a glue coating mechanism (8) and an assembly mechanism (9) along the direction close to the discharging side (3). The glue coating mechanism (8) is used for rotary glue coating on the end face of the metal bellows (7). The assembly mechanism (9) is used for joint assembly.
2. The modular rapid assembly device of the telescopic and foldable heat dissipation corrugated pipe according to claim 1, wherein: The frame body (1) is provided with a limiting frame (14). The limiting frame (14) is provided with a control member (15) and a limiting portion (16). The control member (15) drives the limiting portion (16) to move in the vertical direction. The limiting portion (16) is provided with a clamping member (17). The clamping member (17) is used for clamping the metal bellows (7).
3. The modular rapid assembly device of the retractable and foldable heat dissipation bellows according to claim 2, wherein: The frame body (1) is provided with a mounting frame (10). The mounting frame (10) is provided with a driving member (11) and a roller (12). The roller (12) is located on the side of the clamping member (17) close to the frame body (1). The driving member (11) is used for driving the roller (12) to rotate. The outer wall of the roller (12) is provided with a rolling belt (13). The rolling belt (13) is used for abutting against the metal bellows (7).
4. The modular rapid assembly device of the retractable and foldable heat dissipation corrugated pipe according to claim 3, characterized in that: The clamping member (17) includes a clamping block (18), a first sliding block (19), a second sliding block (20) and a control rod (21). The clamping block (18) is provided with a mounting groove (22). The mounting groove (22) is located on the side of the clamping block (18) close to the mounting frame (10). The control rod (21) slides in the mounting groove (22). The sliding direction of the control rod (21) is the direction away from the mounting frame (10). The control rod (21) is located between the first sliding block (19) and the second sliding block (20). Both the first sliding block (19) and the second sliding block (20) slide on the wall of the installation groove (22). The sliding direction of the first sliding block (19) is the direction close to the control rod (21), and the sliding direction of the second sliding block (20) is also the direction close to the control rod (21). Both the first sliding block (19) and the second sliding block (20) are provided with clamping wheels (23), and the clamping wheels (23) are used to clamp the metal bellows (7). The first sliding block (19) is provided with a first sliding inclined surface (24), and the first sliding inclined surface (24) is located on the side of the first sliding block (19) close to the control rod (21). The inclination direction of the first sliding inclined surface (24) extends in the direction away from the second sliding block (20) along the direction away from the mounting frame (10). The first sliding inclined surface (24) is provided with a first linkage groove (25), and the control rod (21) is provided with a linkage block (28). The linkage block (28) is located on the side of the control rod (21) away from the mounting frame (10), and the linkage block (28) is embedded in the first linkage groove (25). When the control rod (21) drives the linkage block (28) to move in the direction away from the mounting frame (10), the linkage block (28) drives the first sliding block (19) to move in the direction close to the second sliding block (20). The second sliding block (20) is provided with a second sliding inclined surface (34), and the second sliding inclined surface (34) is located on the side of the second sliding block (20) close to the control rod (21). The inclination direction of the second sliding inclined surface (34) extends in the direction away from the first sliding block (19) along the direction away from the mounting frame (10). The second sliding inclined surface (34) is provided with a second linkage groove, and the second linkage groove is for the linkage block (28) to be embedded in.
5. The modular rapid assembly device of the retractable and foldable heat dissipation corrugated pipe according to claim 4, characterized in that: The first linkage groove (25) includes a sliding groove (26) and a fixing groove (27). The fixing groove (27) is located on the wall of the sliding groove (26). The linkage block (28) includes a sliding portion (29) and a fixing portion (30). The sliding portion (29) is embedded in the sliding groove (26), and the fixing portion (30) is embedded in the fixing groove (27).
6. The modular rapid assembly device of the retractable and foldable heat dissipation corrugated pipe according to claim 4, wherein: A positioning groove (31) is provided at the bottom of the installation groove (22). The linkage block (28) is provided with a positioning rod (32), and the positioning rod (32) is embedded in the positioning groove (31). The positioning rod (32) slides on the wall of the positioning groove (31), and the sliding direction of the positioning rod (32) is the direction away from the mounting frame (10). A positioning spring (33) is provided on the wall of the installation groove (22). One end of the positioning spring (33) away from the bottom of the installation groove (22) is connected to the linkage block (28), and the elastic force of the positioning spring (33) restricts the linkage block (28) from moving in the direction close to the bottom of the installation groove (22).
Citation Information
Patent Citations
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