Stamping device for motorcycle part machining

By using the combination of an adsorption disc and an adsorption head in the stamping device for motorcycle spare parts processing, the automatic adsorption and precise positioning of the workpiece are solved, the problem of tilt deviation during the workpiece transmission is improved, the processing accuracy and safety are improved, and energy consumption is reduced.

CN120169913AInactive Publication Date: 2025-06-20JINAN ZUNWANG CNC TECH CO LTD
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Patent Information

Application Number
CN202510639596.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-19
Publication Date
2025-06-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing stamping device for motorcycle spare parts processing is prone to tilt deviation during the process of conveying workpieces, resulting in offsetting the impact of the stamping head on the workpiece, which cannot meet the needs of efficient, precise positioning and stable processing.

Method used

A stamping device for processing motorcycle spare parts is designed, using a combination of an adsorption disc and an adsorption head. Through the sliding of the adsorption head and the adjustment of the spring, the workpiece can be automatically adsorbed and precisely positioned to prevent tilt and offset.

Benefits of technology

It realizes efficient, precise positioning and stable processing of workpieces, improves processing accuracy and safety, reduces energy consumption, and provides efficient, reliable and cost-effective adsorption solutions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of machine manufacturing, and discloses a stamping device for motorcycle spare part machining, which comprises a machining table, blocking plates for limiting workpieces are arranged on two sides of the machining table, a rotating pipe is rotatably connected in the machining table, an adsorption disc is arranged on the upper side of the rotating pipe, and the adsorption disc is arranged on the lower side of the rotating pipe. A plurality of sliding grooves are formed in the adsorption disc, adsorption heads are slidably connected into the sliding grooves and used for adsorbing workpieces, and first springs are arranged on the two sides of each adsorption head. According to the stamping device for motorcycle spare part machining, after a workpiece is conveyed to a machining position, the workpiece can be automatically adsorbed, it is ensured that after the workpiece is firmly adsorbed, the situation that the workpiece inclines or deviates in the stamping process can be effectively prevented, the machining precision and safety are improved, meanwhile, the stepped sliding groove design enables a rotating pipe to rotate in a segmented mode, and the machining efficiency is improved. The impact holes in the workpiece are uniformly distributed, and the product quality is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of mechanical manufacturing, and particularly to a stamping device for processing motorcycle parts. Background Art

[0002] With the continuous progress of manufacturing technology, stamping devices have made remarkable developments in terms of automation, intelligence, and material adaptability. For example, the introduction of automated manipulators and feeding systems has significantly reduced manual intervention and improved production efficiency; the integration of intelligent sensors and control systems has enabled real-time monitoring and adjustment of the production process, further enhancing the stability of product quality. In addition, stamping devices can also meet the processing requirements of new materials such as high-strength steel and aluminum alloy, providing technical support for the lightweight and high-performance of motorcycle parts. The continuous growth of the global motorcycle market, especially the rapid expansion of Asia as the main production and consumption market, has driven the strong demand for efficient and reliable stamping devices. Manufacturers need to adopt advanced stamping technologies to meet the market demand for high-performance motorcycle parts, while reducing production costs and enhancing competitiveness. In the future, the development of stamping devices will place more emphasis on intelligence and environmental protection, combining Internet of Things, big data, and artificial intelligence technologies to optimize the production process and achieve efficient utilization of resources, helping the motorcycle manufacturing industry move towards a more efficient and sustainable direction. This trend will not only improve the manufacturing level of parts but also inject new impetus into the technological upgrading and green development of the entire industry.

[0003] In the existing stamping device for processing motorcycle parts, when stamping a workpiece, during the transmission of the workpiece on the workbench, the workpiece may tilt and shift, resulting in the problem that the stamping head deviates when impacting the workpiece; therefore, it does not meet the existing requirements, and for this reason, we propose a stamping device for processing motorcycle parts. Summary of the Invention

[0004] The present invention provides a stamping device for processing motorcycle parts, which has the beneficial effect of automatically adsorbing the workpiece after the workpiece is transferred to the processing position, preventing the workpiece from tilting and shifting, and solving the problem mentioned in the above background art that when stamping a workpiece, during the transmission of the workpiece on the workbench, the workpiece may tilt and shift, resulting in the problem that the stamping head deviates when impacting the workpiece.

[0005] The present invention provides the following technical solution: A stamping device for processing motorcycle spare parts, including a processing table, on both sides of the processing table are provided baffle plates for restricting workpieces, inside the processing table is rotatably connected a rotating tube, above the rotating tube is provided a suction disc, on the suction disc are opened a plurality of sliding grooves, inside the sliding grooves are slidably connected suction heads, the suction heads are used for sucking workpieces, and on both sides of the suction heads are provided first springs.

[0006] As an alternative embodiment of the stamping device for processing motorcycle spare parts according to the present invention, wherein: inside the rotating tube is provided a fixed tube, above the inside of the rotating tube is slidably connected a first sealing disc, on one side of the first sealing disc is fixedly connected a second spring, the other end of the second spring is fixedly connected to the inside of the rotating tube, the second spring is sleeved on the fixed tube, and on one side of the first sealing disc is fixedly connected a sliding column.

[0007] As an alternative embodiment of the stamping device for processing motorcycle spare parts according to the present invention, wherein: on one side of the rotating tube is opened a limiting sliding groove, and the sliding column is slidably connected to the limiting sliding groove;

[0008] Inside the processing table is opened a spiral groove, the spiral groove is located on one side of the rotating tube, and one end of the sliding column is slidably connected to the spiral groove.

[0009] As an alternative embodiment of the stamping device for processing motorcycle spare parts according to the present invention, wherein: below the inside of the rotating tube is slidably connected a second sealing disc, inside one side of the rotating tube is provided a pipeline, and the other end of the pipeline is communicated with the suction head.

[0010] As an alternative embodiment of the stamping device for processing motorcycle spare parts according to the present invention, wherein: on one side of the second sealing disc is fixedly connected a sliding tube, the sliding tube is sleeved on the outside of the fixed tube, and the sliding tube is slidably connected to the fixed tube, and on the lower side of the sliding tube is fixedly connected a sliding column.

[0011] As an alternative embodiment of the stamping device for processing motorcycle spare parts according to the present invention, wherein: inside the fixed tube is slidably connected a control rod, at the upper end of the control rod is fixedly connected a centering block, the centering block is used for assisting the workpiece to be centered, and at the lower end of the control rod is fixedly connected a sliding ball.

[0012] As an alternative solution of a stamping device for motorcycle parts processing according to the present invention, wherein: a sliding block is slidably connected inside the processing table, a stepped sliding groove is opened inside the sliding block, the stepped sliding groove communicates with a first straight sliding groove, the sliding column is slidably connected with the stepped sliding groove and the first straight sliding groove, a second straight sliding groove is opened on the lower side of the first straight sliding groove, and the second straight sliding groove communicates with an inclined sliding groove.

[0013] As an alternative solution of a stamping device for motorcycle parts processing according to the present invention, wherein: the sliding ball is slidably connected with the inclined sliding groove and the second straight sliding groove.

[0014] As an alternative solution of a stamping device for motorcycle parts processing according to the present invention, wherein: a second hydraulic rod is fixedly installed on one side of the processing table, a fixed plate is fixedly connected to the power output end of the second hydraulic rod, a pushing plate is fixedly connected to the upper side of the fixed plate, the pushing plate is used to push the workpiece, a connecting rod is fixedly connected to one side of the fixed plate, and the other end of the connecting rod is fixedly connected to one end of the sliding block.

[0015] As an alternative solution of a stamping device for motorcycle parts processing according to the present invention, wherein: a first hydraulic rod is arranged on one of the blocking plates, a stamping head is fixedly connected to the power output end of the first hydraulic rod, the stamping head is used to process the workpiece, and a groove is opened on one side of the processing table.

[0016] The present invention has the following beneficial effects:

[0017] 1. The stamping device for motorcycle parts processing realizes the efficient, precise positioning and stable processing of workpieces. By the cooperation of the pushing plate and the blocking plate, it can ensure that the workpiece is stably transported along a predetermined track on the processing table, effectively preventing deviation, so that the workpiece can accurately reach the preset processing position. At the same time, the design of the slidable suction head on the suction disc allows the adjustment of the workpiece position, further ensuring the accuracy of workpiece processing. The stamping head impacts the workpiece smoothly under the drive of the first hydraulic rod. Combined with the centralized collection of the impact-dropped materials by the groove, it not only improves the processing efficiency but also facilitates the subsequent material handling. The overall design improves the stability of the processing process and the quality of the workpiece finished products.

[0018] 2. The stamping device for motorcycle parts processing realizes the efficient, stable adsorption and precise positioning of workpieces through the collaborative mechanism of two sealing discs and stepped chutes. It can automatically generate negative pressure under the cooperation of the two sealing discs to ensure that the workpieces are firmly adsorbed, effectively preventing tilting or offset during the stamping process, improving the processing accuracy and safety. The design of the adsorption head enhances the stability of workpiece fixation. Even if there is a slight deviation in the initial position, the workpiece can be automatically centered through the sliding of the adsorption head and the adjustment of the spring, ensuring the precise impact of the stamping head. The fully automated linkage design not only improves the processing efficiency but also reduces energy consumption, providing an efficient, reliable and cost-effective adsorption solution for automated processing scenarios such as motorcycle parts.

[0019] 3. The stamping device for motorcycle parts processing realizes high stability and precision during the workpiece processing through the precise cooperation of the sliding column with the limiting chute and spiral groove, and the linkage design of the centering block and sliding ball. The sliding column drives the rotating tube to rotate smoothly under the guidance of the limiting chute and spiral groove, preventing offset and ensuring the stable position of the workpiece during processing. The cooperation of the centering block with the control rod and sliding ball enables the workpiece to be automatically centered and positioned after being firmly adsorbed, improving the processing accuracy. The stepped chute design enables the rotating tube to rotate in segments, ensuring the uniform distribution of impact holes on the workpiece and improving the product quality. Through staged operations, adsorption → centering → rotation, the processing flow is optimized, improving efficiency and reducing errors. Brief Description of the Drawings

[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0021] Figure 2 It is a schematic diagram of the structure of the second hydraulic rod of the present invention.

[0022] Figure 3 It is a schematic diagram of the sectional structure of the processing table of the present invention.

[0023] Figure 4 It is a schematic diagram of the sectional structure of the rotating tube of the present invention.

[0024] Figure 5 For the present invention Figure 4 The enlarged schematic diagram of part A.

[0025] Figure 6 It is a schematic diagram of the sectional structure of the sliding block of the present invention.

[0026] Figure 7 It is a schematic diagram of the structure of the adsorption head of the present invention.

[0027] Figure 8 It is a schematic diagram of the structure of the limiting chute of the present invention.

[0028] Figure 9For the present invention Figure 8 Schematic enlarged view of the structure at position B in the present invention

[0029] In the figure: 1. Processing table; 11. Baffle plate; 12. First hydraulic rod; 13. Stamping head; 14. Groove; 2. Pusher plate; 21. Fixed plate; 22. Second hydraulic rod; 23. Connecting rod; 24. Slide block; 25. Step chute; 26. First straight chute; 27. Inclined chute; 28. Second straight chute; 3. Rotating pipe; 31. Suction disc; 32. Slide groove; 33. Suction head; 34. Fixed pipe; 35. Centering block; 36. Control rod; 37. First sealing disc; 38. Second sealing disc; 39. Second spring; 310. Slide pipe; 311. Slide column; 312. Limit chute; 313. Slide ball; 314. Slide post; 315. Pipe; 316. Spiral groove; 317. First spring; 4. Workpiece Specific embodiments

[0030] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention

[0031] Embodiment 1. Please refer to Figures 1-9 The present invention discloses a stamping device for processing motorcycle parts, including a processing table 1. Baffle plates 11 for restricting the workpiece 4 are arranged on both sides of the processing table 1. Through the design of the baffle plates 11, during the transmission of the workpiece 4 on the processing table 1, the position of the workpiece 4 can be restricted, and the situation of the workpiece 4 shifting can be prevented, so that the workpiece 4 can move according to the predetermined position. A rotating pipe 3 is rotatably connected inside the processing table 1. A suction disc 31 is arranged on the upper side of the rotating pipe 3. A plurality of slide grooves 32 are formed in the suction disc 31. A suction head 33 is slidably connected inside the slide groove 32. The suction head 33 is used to adsorb the workpiece 4. Through the design of the suction head 33, the position of the workpiece 4 can be restricted, and the situation of the workpiece 4 shifting can be prevented. First springs 317 are arranged on both sides of the suction head 33. Through the design that the suction head 33 can slide in the slide groove 32, after the suction head 33 adsorbs the workpiece 4, the position of the workpiece 4 can be adjusted so that the position of the workpiece 4 can be at the preset processing position

[0032] On one side of the processing table 1, a second hydraulic rod 22 is fixedly installed. The power output end of the second hydraulic rod 22 is fixedly connected to a fixing plate 21. On the upper side of the fixing plate 21, a pushing plate 2 is fixedly connected. The pushing plate 2 is used to push the workpiece 4. Through the design of the pushing plate 2, after the workpiece 4 is placed on the processing table 1, the workpiece 4 is conveyed by the pushing plate 2, so that the workpiece 4 can be normally transferred. One side of the fixing plate 21 is fixedly connected to a connecting rod 23, and the other end of the connecting rod 23 is fixedly connected to one end of a sliding block 24.

[0033] On one side of the blocking plate 11, a first hydraulic rod 12 is provided. The power output end of the first hydraulic rod 12 is fixedly connected to a punching head 13. The punching head 13 is used to process the workpiece 4. A groove 14 is opened on one side of the processing table 1. Through the design of the groove 14, the raw materials knocked off the workpiece 4 by the punching head 13 can be centrally collected.

[0034] First, the workpiece 4 needs to be placed on the processing table 1, and then the second hydraulic rod 22 is started. The second hydraulic rod 22 drives the fixing plate 21 to slide. While the fixing plate 21 slides, it drives the pushing plate 2 to slide together, so that the pushing plate 2 slides on the processing table 1, and the pushing plate 2 can push the workpiece 4 on the processing table 1 to move. At the same time, through the design of the blocking plate 11, the workpiece 4 can slide along the preset track, preventing the workpiece 4 from shifting during the sliding process, so that the workpiece 4 can accurately slide to the processing position. When the workpiece 4 slides to the processing position, the first hydraulic rod 12 is started. The first hydraulic rod 12 drives the punching head 13 to slide, so that the punching head 13 can punch the workpiece 4, and the required holes can be punched on the workpiece 4. At the same time, the excess materials knocked off the workpiece 4 will fall into the groove 14, which is convenient for subsequent centralized treatment of the materials. It should be noted that multiple holes need to be opened on one workpiece 4.

[0035] In this embodiment: Through the design of the pushing plate 2, the workpiece 4 on the processing table 1 can be pushed. At the same time, with the assistance of the blocking plate 11, the position of the workpiece 4 can be restricted, so that the workpiece 4 can move to the preset processing position, enabling the punching head 13 to impact the workpiece 4, and the workpiece 4 can be processed into the required shape. At the same time, under the action of the groove 14, the raw materials knocked off by the punching head 13 can be centrally processed. At the same time, with the first hydraulic rod 12 and the second hydraulic rod 22 as the power output tools, when the workpiece 4 is conveyed, the workpiece 4 can stably slide on the processing table 1. At the same time, when the punching head 13 impacts the workpiece 4, the punching head 13 can smoothly impact the workpiece 4, preventing the punching head 13 from shaking or shifting.

[0036] Embodiment 2. This embodiment aims to facilitate the solution of the problem that the workpiece 4 may be inclined and offset during transportation. This embodiment is an improvement based on Embodiment 1. Specifically, please refer to Figures 1-9 , a fixed tube 34 is arranged inside the rotating tube 3. A first sealing disk 37 is slidably connected above the inside of the rotating tube 3. Through the design of the first sealing disk 37, when the first sealing disk 37 slides inside the rotating tube 3, it can squeeze or suck the air inside the rotating tube 3. One side of the first sealing disk 37 is fixedly connected to a second spring 39, and the other end of the second spring 39 is fixedly connected to the inside of the rotating tube 3. Through the design of the second spring 39, the position of the first sealing disk 37 can be restricted. The second spring 39 is sleeved on the fixed tube 34, and one side of the first sealing disk 37 is fixedly connected to a sliding column 311.

[0037] A second sealing disk 38 is slidably connected below the inside of the rotating tube 3. Through the cooperation between the first sealing disk 37 and the second sealing disk 38, when the second sealing disk 38 slides downward, it can suck the gas inside the rotating tube 3. At the same time, through the design of the second spring 39, the position of the first sealing disk 37 can be restricted to prevent the situation that when the second sealing disk 38 slides downward at the beginning, it pulls the first sealing disk 37 to slide together. A pipeline 315 is arranged inside one side of the rotating tube 3, and the other end of the pipeline 315 is communicated with the adsorption head 33. Through the design of the pipeline 315, when the second sealing disk 38 slides downward to suck the gas inside the fixed tube 34, the suction force can be communicated to the adsorption head 33 through the pipeline 315, so that the adsorption head 33 can adsorb the workpiece 4.

[0038] One side of the second sealing disk 38 is fixedly connected to a sliding tube 310. Through the design of the second sealing disk 38 and the sliding tube 310, when the second sealing disk 38 slides, it can drive the sliding tube 310 to slide together. The sliding tube 310 is sleeved on the outside of the fixed tube 34, and the sliding tube 310 is slidably connected to the fixed tube 34. A sliding column 314 is fixedly connected to the lower side of the sliding tube 310. Through the design of the sliding column 314, when the sliding column 314 slides, it can drive the sliding tube 310 and the second sealing disk 38 to slide together.

[0039] A sliding block 24 is slidably connected inside the processing table 1. A stepped sliding groove 25 is opened inside the sliding block 24, and the stepped sliding groove 25 is communicated with a first straight sliding groove 26. The sliding column 314 is slidably connected to the stepped sliding groove 25 and the first straight sliding groove 26. It should be noted that there are multiple layers of the stepped sliding groove 25, so that when the sliding column 314 slides in the stepped sliding groove 25, the sliding column 314 can slide downward in multiple segments. A second straight sliding groove 28 is opened below the first straight sliding groove 26, and the second straight sliding groove 28 is communicated with an inclined sliding groove 27.

[0040] When the second hydraulic rod 22 pulls the fixed plate 21 to slide, while the fixed plate 21 slides, it can drive the connecting rod 23 to slide together. While the connecting rod 23 slides, it can drive the sliding block 24 to slide together. While the sliding block 24 slides, it can drive the stepped chute 25 and the first straight chute 26 to slide together. Through the sliding of the stepped chute 25 and the first straight chute 26, the sliding column 314 can slide in the stepped chute 25. Under the action of the stepped chute 25, the sliding column 314 will slide downward. During the process of the sliding column 314 sliding downward, the sliding column 314 will drive the sliding tube 310 to slide together. During the process of the sliding tube 310 sliding downward, it will pull the second sealing disc 38 to slide together. While the second sealing disc 38 slides downward, it will suck the gas in the rotating tube 3, causing a negative pressure to be generated in the rotating tube 3, so that the gas can be conducted to the suction head 33 through the pipeline 315, enabling the suction head 33 to adsorb the workpiece 4 and fixing the position of the workpiece 4.

[0041] It should be noted that when the second sealing disc 38 starts to slide in the rotating tube 3, under the action of the second spring 39, the first sealing disc 37 will not slide downward, so that when the second sealing disc 38 slides, a negative pressure can be generated inside the rotating tube 3. After the suction head 33 has adsorbed the workpiece 4, as the sliding block 24 continues to slide, the sliding column 314 will continue to slide in the stepped chute 25. At the same time, under the guidance of the stepped chute 25 for the sliding column 314, the sliding column 314 can continue to pull the sliding tube 310 to slide downward. At this time, the workpiece 4 has blocked the suction head 33, so that when the second sealing disc 38 continues to slide downward, it can pull the first sealing disc 37 to slide together, causing the second spring 39 to deform.

[0042] At the same time, through the adsorption of the workpiece 4, the workpiece 4 can be tightly adsorbed on the suction head 33, preventing the workpiece 4 from tilting during the stamping process of the workpiece 4. At the same time, through the design that the suction head 33 can slide, after the suction head 33 firmly adsorbs the workpiece 4, even if the position of the workpiece 4 is a bit skewed at that time, subsequently, the centering block 35 abuts against the workpiece 4, enabling the suction head 33 to slide along with the workpiece 4 while compressing the first spring 317 on one side, realizing the adjustment of the centering position. At the same time, when the processing is completed, under the action of the first spring 317, the suction head 33 can return to the initial position.

[0043] In this embodiment: Through the collaborative design of two sealing disks and the stepped sliding groove 25, efficient negative pressure generation and precise adsorption control are achieved, enabling the workpiece 4 to be firmly adsorbed and preventing it from tilting during the stamping process of the workpiece 4. Among them, negative pressure is generated when the second sealing disk 38 initially slides to ensure the adsorption of the workpiece 4; the hydraulic drive and the sliding groove guidance achieve fully automated linkage, with both flexibility and stability, significantly reducing energy consumption while improving processing efficiency and safety, providing an efficient, reliable, and low-cost adsorption solution for the automated processing scenario, and further enhancing the stability during the impact on the workpiece 4;

[0044] Moreover, through the design of the adsorption head 33, the workpiece 4 can be tightly adsorbed on the adsorption head 33, preventing the workpiece 4 from tilting during the stamping process of the workpiece 4.

[0045] Embodiment 3 aims to facilitate the solution of the problem that the workpiece 4 needs to impact multiple holes and requires rotation for impact. This embodiment is an improvement based on Embodiment 1 and Embodiment 2. Specifically, please refer to Figures 1-9 , a limiting sliding groove 312 is opened on one side of the rotating tube 3, and the sliding column 311 is slidably connected to the limiting sliding groove 312. Through the design of the limiting sliding groove 312, the sliding column 311 can slide more stably, preventing the sliding column 311 from shifting during the sliding process;

[0046] A spiral groove 316 is opened inside the processing table 1. The spiral groove 316 is located on one side of the rotating tube 3. One end of the sliding column 311 is slidably connected to the spiral groove 316. Through the cooperation between the sliding column 311 and the spiral groove 316, when the sliding column 311 slides in the spiral groove 316, the sliding column 311 can drive the rotating tube 3 to rotate.

[0047] A control rod 36 is slidably connected inside the fixed tube 34. The upper end of the control rod 36 is fixedly connected with a centering block 35, and the centering block 35 is used to assist the workpiece 4 in centering. The lower end of the control rod 36 is fixedly connected with a sliding ball 313. Through the design of the centering block 35, when the centering block 35 slides upward, the centering block 35 can cooperate with the groove 14 of the workpiece 4, enabling the centering block 35 to drive the workpiece 4 to be centered.

[0048] The sliding ball 313 is slidably connected to the inclined sliding groove 27 and the second straight sliding groove 28.

[0049] When the sliding block 24 slides, the sliding post 314 slides in the stepped slot 25, and the sliding ball 313 slides in the inclined slot 27. At the same time, when the sliding post 314 slides for a while in the stepped slot 25, the suction head 33 has firmly sucked the workpiece 4, and then the sliding ball 313 slides from the inclined slot 27 into the second straight slot 28. It should be noted that when the sliding ball 313 slides in the inclined slot 27, the sliding ball 313 drives the control rod 36 to slide upward. When the control rod 36 slides upward, it drives the centering block 35 to slide upward together. When the centering block 35 slides upward, Figure 4 , the centering block 35 will resist the protrusion of the workpiece 4. When the workpiece 4 is not at the center of the processing position, the centering block 35 will resist the inclined surface of the protrusion of the workpiece 4, so that the workpiece 4 can slide under the action of the adsorption head 33, so that the workpiece 4 can slide to the middle position, so that the workpiece 4 can be at the center of the processing; through such a design, the workpiece 4 is firmly adsorbed and fixed, and then the workpiece 4 is centered, so that the workpiece 4 can be at the predetermined processing position, and finally, through the cooperation between the sliding column 311 and the spiral groove 316, the workpiece 4 can rotate together, so that the workpiece 4 is processed during the rotation process; it should be noted that, see Figure 4 When the slide post 314 slides into the smooth part of the stepped slide groove 25 , the workpiece 4 will not rotate, so that the position of the workpiece 4 can be stabilized. At this time, the punch head 13 impacts the workpiece 4 .

[0050] When the first sealing disk 37 slides downward, it drives the sliding column 311 to slide downward together, and enables the sliding column 311 to slide in the limiting groove 312, so that the sliding column 311 can cooperate with the spiral groove 316 to rotate the rotating tube 3. When the rotating tube 3 rotates, it drives the adsorption head 33 and the workpiece 4 to rotate together, so that the impact position of the punch head 13 can be adjusted. At the same time, through the design of the stepped groove 25, the sliding column 311 is divided into multiple sections in the process of sliding downward, so that the rotating tube 3 rotates at the same angle each time, so that the impact holes on the workpiece 4 can be evenly distributed on the workpiece 4.

[0051] In this embodiment: The stability and accuracy of the workpiece 4 during the machining process are ensured. Through the cooperation of the sliding column 311 with the limiting sliding groove 312 and the spiral groove 316, not only can the rotating tube 3 rotate stably, but also the deviation during the sliding process is prevented, ensuring the stability of the rotation of the workpiece 4; and the combination of the centering block 35, the control rod 36 and the sliding ball 313 enables the workpiece 4 to be accurately centered and positioned, and this process is carried out only after the workpiece 4 is firmly adsorbed, ensuring the accuracy of the positioning. Through the design of the stepped sliding groove 25, the rotating tube 3 can rotate evenly, thereby realizing the uniform distribution of the impact holes on the workpiece 4, improving the machining efficiency and product quality, and further improving the stability during the impact on the workpiece 4.

[0052] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0053] The above are only the preferred embodiments of the present invention. It should be pointed out that for those of ordinary skill in the art, without departing from the technical principle of the present invention, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present invention.

Claims

1. A stamping device for processing motorcycle parts, comprising a processing table (1), characterized in that: Blocking plates (11) for limiting the workpiece (4) are arranged on both sides of the processing table (1); a rotating tube (3) is rotatably connected inside the processing table (1); an adsorption disk (31) is arranged on the upper side of the rotating tube (3); a plurality of sliding grooves (32) are provided on the adsorption disk (31); an adsorption head (33) is slidably connected inside the sliding groove (32); the adsorption head (33) is used to adsorb the workpiece (4); and first springs (317) are arranged on both sides of the adsorption head (33).

2. A stamping device for processing motorcycle parts according to claim 1, characterized in that: A fixed tube (34) is provided inside the rotating tube (3), a first sealing disk (37) is slidably connected to the upper part of the rotating tube (3), a second spring (39) is fixedly connected to one side of the first sealing disk (37), the other end of the second spring (39) is fixedly connected to the inside of the rotating tube (3), the second spring (39) is sleeved on the fixed tube (34), and a sliding column (311) is fixedly connected to one side of the first sealing disk (37).

3. A stamping device for processing motorcycle parts according to claim 2, characterized in that: A limiting sliding groove (312) is provided on one side of the rotating tube (3), and the sliding column (311) is slidably connected to the limiting sliding groove (312); A spiral groove (316) is provided inside the processing table (1), the spiral groove (316) is located on one side of the rotating tube (3), and one end of the sliding column (311) is slidably connected to the spiral groove (316).

4. A stamping device for processing motorcycle parts according to claim 2, characterized in that: A second sealing disk (38) is slidably connected to the lower portion of the interior of the rotating tube (3), a pipeline (315) is provided inside one side of the rotating tube (3), and the other end of the pipeline (315) is in communication with the adsorption head (33).

5. A stamping device for processing motorcycle parts according to claim 4, characterized in that: A sliding tube (310) is fixedly connected to one side of the second sealing disk (38); the sliding tube (310) is sleeved on the outside of the fixed tube (34), and the sliding tube (310) is slidably connected to the fixed tube (34); a sliding column (314) is fixedly connected to the lower side of the sliding tube (310).

6. A stamping device for processing motorcycle parts according to claim 5, characterized in that: A control rod (36) is slidably connected inside the fixed tube (34), a centering block (35) is fixedly connected to the upper end of the control rod (36), the centering block (35) is used to assist the workpiece (4) in centering, and a sliding ball (313) is fixedly connected to the lower end of the control rod (36).

7. A stamping device for processing motorcycle parts according to claim 6, characterized in that: The processing table (1) is slidably connected to a sliding block (24) inside, a stepped slide groove (25) is provided inside the sliding block (24), the stepped slide groove (25) is connected to a first straight slide groove (26), the sliding column (314) is slidably connected to the stepped slide groove (25) and the first straight slide groove (26), a second straight slide groove (28) is provided on the lower side of the first straight slide groove (26), and the second straight slide groove (28) is connected to an inclined slide groove (27).

8. A stamping device for processing motorcycle parts according to claim 7, characterized in that: The sliding ball (313) is slidably connected to the inclined sliding groove (27) and the second straight sliding groove (28).

9. A stamping device for processing motorcycle parts according to claim 7, characterized in that: A second hydraulic rod (22) is fixedly mounted on one side of the processing table (1); a power output end of the second hydraulic rod (22) is fixedly connected to a fixed plate (21); a push plate (2) is fixedly connected to the upper side of the fixed plate (21); the push plate (2) is used to push the workpiece (4); a connecting rod (23) is fixedly connected to one side of the fixed plate (21); the other end of the connecting rod (23) is fixedly connected to one end of the sliding block (24).

10. A stamping device for processing motorcycle parts according to claim 1, characterized in that: A first hydraulic rod (12) is provided on the blocking plate (11) on one side, a punch head (13) is fixedly connected to a power output end of the first hydraulic rod (12), the punch head (13) is used to process a workpiece (4), and a groove (14) is provided on one side of the processing table (1).