Raw material stamping device for automobile rear suspension production

CN224779076UActive Publication Date: 2026-09-22CHANGGE FUDING MASCH MFG CO LTD
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Patent Information

Application Number
CN202522347659.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-05
Publication Date
2026-09-22
Estimated Expiration
2035-11-05

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种汽车后悬架生产用原料冲压装置,以解决上述背景技术中提出的现有的冲压装置于使用过程中,冲压模具定期使用后不便对其表面及内部情况进行查看,同时不便对其内部及表面进行自动清洁,从而降低其自身实用性的问题

Benefits of technology

[0010]与现有技术相比,本实用新型的有益效果是:该汽车后悬架生产用原料冲压装置的固定架在第一伺服电机的作用下通过螺杆、滑杆、活动块与操作台构成限位滑动结构,从而通过限位滑动组件便于带动吸尘组件于下模具处进行滑动,以便吸尘组件可对下模具槽内部进行定期清洁,该装置的连接架在电动推杆主体的作用下通过伸缩臂与操作台构成水平推动结构,从而通过电动推杆组件可推送吸尘组件进行水平移动,并通过另一侧的手术台高组件增加吸尘组件工作过程中整体的稳定性,该装置的工业相机在第三伺服电机的作用下通过输出轴与伸缩臂构成旋转结构,从而通过可旋转的工业相机、吸尘口便于对上模具上的凸块进行定期检测。

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Abstract

The utility model discloses a raw material stamping device for automobile rear suspension production, including operation panel, the operation panel is equipped with support frame in the top, and the crosspiece of support frame is equipped with the cylinder, the cylinder is equipped with pneumatic expansion arm in the below, and pneumatic expansion arm is equipped with upper die in the lower extreme. The fixing frame of raw material stamping device for automobile rear suspension production is through screw rod, slide, movable block and operation panel and constitutes the limit sliding structure under the action of first servo motor, thereby through the limit sliding assembly, the dust absorption component is conveniently driven to slide at the lower die, so that the dust absorption component can regularly clean the inside of lower die groove, the connecting frame of the device is through telescopic arm and operation panel and constitutes horizontal push structure under the action of electric push rod main part, thereby through electric push rod assembly, the dust absorption component can be pushed and horizontally moves, and through the operating table high assembly of the other side, the stability of the whole in the working process of dust absorption component is increased.
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Description

Technical Field

[0001] This utility model relates to the field of automobile rear suspension production technology, specifically to a raw material stamping device for automobile rear suspension production. Background Technology

[0002] The rear suspension of a car is a crucial system located between the rear wheels and the car body or frame. It consists of a series of links, springs, shock absorbers, and other components. During the car manufacturing process, stamping equipment is used to process raw materials to facilitate the production of rear suspension components, enabling the assembly of the various formed parts.

[0003] In the operation of stamping equipment, the upper die is driven to descend by a cylinder assembly to contact the lower die and stamp the raw material. However, in existing stamping equipment, it is inconvenient to inspect the surface and internal condition of the stamping die after periodic use, and it is also inconvenient to automatically clean the internal and external parts, thus reducing its practicality. To address these issues, a raw material stamping device for automotive rear suspension production is proposed. Utility Model Content

[0004] The purpose of this utility model is to provide a raw material stamping device for automobile rear suspension production, so as to solve the problem mentioned in the background art that the existing stamping device is inconvenient to inspect the surface and internal condition of the stamping die after regular use, and is also inconvenient to automatically clean the internal and external parts, thereby reducing its practicality.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a raw material stamping device for automobile rear suspension production, comprising an operating table, a support frame on the upper part of the operating table, a cylinder on the horizontal plate of the support frame, a pneumatic telescopic arm below the cylinder, an upper mold at the lower end of the pneumatic telescopic arm, a lower mold correspondingly provided on the operating table below the upper mold, a first servo motor inside the operating table on one side of the lower mold, and a screw connected to one end of the output shaft of the first servo motor via a coupling, a sliding rod correspondingly provided on one side of the screw, and multiple sets of sliding rods also provided inside the other side of the operating table, with movable blocks inserted through the screw and sliding rods, and fixed frames provided above the movable blocks; The fixed frame has an electric push rod body inside, and the electric push rod body is equipped with telescopic arms. The telescopic arm on the left side of the operating table is equipped with a third servo motor, and the third servo motor is equipped with an output shaft. The output shaft is equipped with a connecting frame on the outer wall, and the connecting frame is equipped with an industrial camera on one side of the outer wall. The industrial camera is equipped with a fixed block at the other end, and the telescopic arm on the right side of the operating table passes through the fixed block. The connecting frame is provided with a second servo motor on its lower end face, and one end of the output shaft of the second servo motor is connected to a rotating shaft through a coupling. The rotating shaft is provided with a dust suction port on its outer wall, and a suction pipe is provided on the dust suction port. The other end of the suction pipe is connected to a fan.

[0006] Preferably, the fixed frame, under the action of the first servo motor, forms a limiting sliding structure with the operating table through a screw, a slide bar, and a movable block.

[0007] Preferably, the connecting frame, under the action of the electric push rod body, forms a horizontal pushing structure with the operating table through the telescopic arm.

[0008] Preferably, the suction port is rotated via a shaft and connecting frame under the action of the second servo motor.

[0009] Preferably, the industrial camera, under the action of the third servo motor, forms a rotating structure with the telescopic arm through the output shaft.

[0010] Compared with the prior art, the beneficial effects of this utility model are as follows: The fixed frame of the stamping device for raw materials used in automobile rear suspension production forms a limiting sliding structure with the operating table through a screw, slide bar, and movable block under the action of the first servo motor. This allows the dust collection component to slide at the lower mold through the limiting sliding component, so that the dust collection component can periodically clean the inside of the lower mold groove. The connecting frame of the device forms a horizontal pushing structure with the operating table through a telescopic arm under the action of the electric push rod body. This allows the dust collection component to be pushed horizontally through the electric push rod assembly. The overall stability of the dust collection component during operation is increased by the operating table height component on the other side. The industrial camera of the device forms a rotating structure with the telescopic arm through the output shaft under the action of the third servo motor. This allows the rotatable industrial camera and dust collection port to facilitate periodic inspection of the protrusions on the upper mold. Attached Figure Description

[0011] Figure 1 This is a schematic diagram of a raw material stamping device for automobile rear suspension production according to the present invention. Figure 2 This is a top view of the limiting sliding component of a raw material stamping device for automobile rear suspension production according to this utility model. Figure 3 This is a schematic diagram of the dust inlet assembly of a raw material stamping device for automobile rear suspension production according to this utility model. Figure 4 This utility model relates to a raw material stamping device for automobile rear suspension production. Figure 1 Enlarged structural diagram at point A in the middle.

[0012] In the diagram: 1. Operating table, 2. Support frame, 3. Upper mold, 4. Lower mold, 5. First servo motor, 6. Screw, 7. Slide rod, 8. Movable block, 9. Fixed frame, 10. Electric push rod body, 11. Telescopic arm, 12. Connecting frame, 13. Second servo motor, 14. Rotating shaft, 15. Dust suction port, 16. Third servo motor, 17. Industrial camera, 18. Fixed block. Detailed Implementation

[0013] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0014] Please see Figure 1-4 This utility model provides a technical solution: a stamping device for raw materials used in the production of automotive rear suspension, comprising an operating table 1, a support frame 2 on the upper part of the operating table 1, a cylinder on the horizontal plate of the support frame 2, a pneumatic telescopic arm below the cylinder, an upper mold 3 at the lower end of the pneumatic telescopic arm, a lower mold 4 correspondingly located on the operating table 1 below the upper mold 3, a first servo motor 5 inside the operating table 1 on one side of the lower mold 4, and a screw 6 connected to one end of the output shaft of the first servo motor 5 via a coupling, a sliding rod 7 correspondingly located on one side of the screw 6, and the operating table 1 further... On one side, multiple sets of sliding rods 7 are also provided inside. Movable blocks 8 are inserted through the screw 6 and sliding rods 7 respectively, and fixed frames 9 are provided on the upper part of the movable blocks 8. It should be noted that multiple sets of sliding grooves are opened on the upper end face of the operating table 1 in this device to ensure that the fixed frames 9 can slide normally. Furthermore, a retractable protective component is provided on the outer side of the limiting sliding component to avoid affecting the sliding of the fixed frame 9 while ensuring the normal operation of its internal components. In addition, each set of molds in this device is selected according to the corresponding model of the rear suspension parts to be produced, thereby ensuring the overall production of the rear suspension.

[0015] Furthermore, under the action of the first servo motor 5, the fixed frame 9 forms a limiting sliding structure with the operating table 1 through the screw 6, slide rod 7, and movable block 8, thereby ensuring that the dust suction port 15 can move inside the mold groove of the lower mold 4 through the limiting sliding component, so as to clean the inside of the mold groove in all directions.

[0016] The fixed frame 9 has an electric push rod body 10 inside, and the electric push rod body 10 is equipped with telescopic arms 11. The telescopic arm 11 on the left side of the operating table 1 is equipped with a third servo motor 16, and the third servo motor 16 is equipped with an output shaft. The output shaft is equipped with a connecting frame 12 on the outer wall, and an industrial camera 17 is equipped on one side of the connecting frame 12. The industrial camera 17 is equipped with a fixing block 18 at the other end, and the telescopic arm 11 on the right side of the operating table 1 is inserted into the fixing block 18. It should be noted that the industrial camera 17 is equipped with a power storage component inside, and the industrial camera 17 is wirelessly connected to an external display screen so that the overall mold can be inspected by the industrial camera 17.

[0017] Furthermore, under the action of the electric push rod body 10, the connecting frame 12 forms a horizontal pushing structure with the operating table 1 through the telescopic arm 11. Thus, the horizontally movable connecting frame 12 assembly avoids affecting the stamping of the automotive rear suspension raw material, while allowing for regular inspection and cleaning of the mold.

[0018] Furthermore, under the action of the third servo motor 16, the industrial camera 17 forms a rotating structure with the connecting frame 12 through the output shaft, thereby ensuring that the industrial camera 17 can detect the working status of the two sets of molds respectively through the third servo motor 16.

[0019] The connecting frame 12 has a second servo motor 13 on its lower end face, and one end of the output shaft of the second servo motor 13 is connected to a rotating shaft 14 via a coupling. The rotating shaft 14 has a dust suction port 15 on its outer wall, and a suction pipe is provided on the dust suction port 15. The other end of the suction pipe is connected to an exhaust fan. It should be noted that a dust collection box is provided between the exhaust pipe and the exhaust fan, and a dustproof net is provided at the connection between the dust collection box and the exhaust fan to ensure the normal operation of the dust collection component. In addition, each group of electrical components in this device is equipped with heat dissipation and shock absorption structures during installation to ensure its normal operation. This utility model is a stamping device for raw materials used in the production of automotive rear suspension. All components are standard parts or parts known to those skilled in the art. The structure and principle of the device can be learned by those skilled in the art through technical manuals or conventional experimental methods. All electrical components mentioned above in this device refer to power components, electrical components, and the matching monitoring computer and power supply, which are connected by wires. The specific connection method should refer to the working principle described above, and the electrical connection between each electrical component should be completed in the order of operation. The detailed connection method is a well-known technology in this field.

[0020] Furthermore, the suction port 15, under the action of the second servo motor 13, forms a rotating structure with the connecting frame 12 through the rotating shaft 14. Thus, the suction port 15 facilitates the cleaning of the mold groove of the lower mold 4, while the rotating shaft 14 assembly increases the comprehensiveness of the cleaning.

[0021] Working Principle: Using the stamping device for automotive rear suspension production, the raw material for the automotive rear suspension to be stamped is first placed on the operating table 1 and allowed to enter the molds at a uniform speed for stamping. During the stamping process, the controller activates each group of electrical components in the device, and the control system operates according to a predetermined program. After the raw material enters the lower mold 4, the cylinder drives the upper mold 3 to descend via a pneumatic telescopic arm, allowing the raw material to be stamped by both molds. The stamped raw material is ejected by the ejector pin on the lower mold 4 for unloading. During the stamping process, after a certain number of stamping cycles, the device is stopped. Simultaneously, the electric push rod body 10 drives the connecting frame 12 to move horizontally via the telescopic arm 11. At the same time, the telescopic arm 11 on the other side moves synchronously to engage with the fixed block 18, increasing the overall stability of the connecting frame 12. The operator can manually remove the limit rod on the right movable block 8 to release the limit. The industrial camera 17 on the connecting frame 12 monitors the operation of the two molds. The process involves inspecting the molds to prevent wear and tear that could affect subsequent stamping. Simultaneously, the third servo motor 16 drives the connecting frame 12 to rotate, allowing the industrial camera 17 to inspect both sets of molds. If any debris remains on the mold surface or in the mold groove, it can be promptly removed through the suction port 15, ensuring the subsequent stamping effect. The suction port 15's working angle can be adjusted by the second servo motor 13, and its horizontal movement is achieved via the electric push rod assembly. Meanwhile, one end of the output shaft of the first servo motor 5 drives the screw 6 to rotate via a coupling. The screw 6 then drives the movable block 8 to slide, which is limited by the limit rod 7. This limit sliding of the movable block 8 drives the fixed frame 9 to slide, thus achieving horizontal movement of the suction port 15. The rotating shaft 14 and the limit sliding assembly ensure the overall cleaning effect of the suction port 15 on the mold, guaranteeing the subsequent stamping effect. This is the usage process of the raw material stamping device for automotive rear suspension production.

[0022] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A stamping device for raw materials used in the production of automotive rear suspension, comprising an operating table (1), wherein a support frame (2) is provided on the upper part of the operating table (1), and a cylinder is provided on the horizontal plate of the support frame (2), wherein a pneumatic telescopic arm is provided below the cylinder, and an upper mold (3) is provided at the lower end of the pneumatic telescopic arm, and a lower mold (4) is correspondingly provided on the operating table (1) below the upper mold (3), characterized in that: The lower mold (4) is provided with a first servo motor (5) inside the operating table (1) on one side, and one end of the output shaft of the first servo motor (5) is connected to the screw (6) through a coupling. The screw (6) is provided with a slide rod (7) on one side, and multiple sets of slide rods (7) are also provided inside the other side of the operating table (1). Movable blocks (8) are inserted on the screw (6) and slide rods (7), and fixed frames (9) are provided on the upper part of the movable blocks (8). The fixed frame (9) has an electric push rod body (10) inside, and the electric push rod body (10) is provided with telescopic arms (11). The telescopic arm (11) on the left side of the operating table (1) is provided with a third servo motor (16), and the third servo motor (16) is provided with an output shaft. The output shaft is provided with a connecting frame (12) on the outer wall, and the connecting frame (12) is provided with an industrial camera (17) on one side of the outer wall. The industrial camera (17) is provided with a fixing block (18) at the other end, and the telescopic arm (11) on the right side of the operating table (1) is inserted into the fixing block (18). The connecting frame (12) is provided with a second servo motor (13) on its lower end face, and one end of the output shaft of the second servo motor (13) is connected to the rotating shaft (14) through a coupling. The rotating shaft (14) is provided with a dust suction port (15) on its outer wall, and a suction pipe is provided on the dust suction port (15), and the other end of the suction pipe is connected to a fan.

2. The raw material stamping device for automobile rear suspension production according to claim 1, characterized in that: The fixed frame (9) forms a limiting sliding structure with the operating table (1) through the screw (6), slide (7), movable block (8) under the action of the first servo motor (5).

3. The raw material stamping device for automobile rear suspension production according to claim 1, characterized in that: The connecting frame (12) forms a horizontal pushing structure with the operating table (1) through the telescopic arm (11) under the action of the electric push rod body (10).

4. The raw material stamping device for automobile rear suspension production according to claim 1, characterized in that: The suction port (15) forms a rotating structure with the connecting frame (12) through the rotating shaft (14) under the action of the second servo motor (13).

5. The raw material stamping device for automobile rear suspension production according to claim 1, characterized in that: The industrial camera (17) forms a rotating structure with the telescopic arm (11) through the output shaft under the action of the third servo motor (16).