Multi-station continuous stamping production line for automobile parts and stamping process thereof

A multi-station technology for auto parts, applied in positioning devices, manufacturing tools, metal processing, etc., can solve problems such as the failure of the manipulator to grab smoothly, the low efficiency of the manipulator grabbing, and the stacking height is not in place, so as to improve the operation efficiency. Small footprint, improved work efficiency and work accuracy

Active Publication Date: 2019-04-19
山东时风(集团)有限责任公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] 1) Manipulator grabbing has high quality requirements for sheet stacking. If the stacking is messy or the stacking height is not in place, the manipulator often cannot grab it smoothly, requiring workers to rearrange the stacking, which is more time-consuming and laborious;
[0004] 2) Multiple processes such as blanking, punching, stretching, flanging, trimming, and shaping need to be grasped. The efficiency of manipulator grasping is still low in actual operations. If multiple manipulators are used, a large space is required in order to expand each manipulator

Method used

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  • Multi-station continuous stamping production line for automobile parts and stamping process thereof
  • Multi-station continuous stamping production line for automobile parts and stamping process thereof
  • Multi-station continuous stamping production line for automobile parts and stamping process thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0052] Example 1. Such as Figure 1-13 As shown, a multi-station continuous stamping production line for auto parts is characterized in that: a stamping working system, a grabbing component, a debris holding component, a conveying component, and a control system.

[0053] The stamping work system includes a frame 1, a stamping work platform 2 is arranged below the frame 1, and a number of stamping production lower molds 21 adapted to different stamping processes are arranged horizontally on the stamping work platform 2, and each stamping on each frame 1 Right above the lower mold 21 for production is provided with an upper mold 22 for stamping production corresponding to its stamping production process, and each upper mold 22 for stamping production is connected to the frame 1 through a vertical motion drive device 23 .

[0054] The gripping assembly includes a manipulator mounting base 6 arranged on the front or rear side of the stamping work platform 2, and the manipulator ...

Embodiment 2

[0070] Example 2. Such as Figure 20 , 21 , 17, 18, the difference between this embodiment and embodiment 2 is that: the second auto parts adsorption disc 91, the debris adsorption disc 81, and the first auto parts adsorption disc 71 are vacuum type adsorption discs. Described lateral movement assembly 64 comprises two laterally arranged guide rails 69 that are arranged in parallel, and slide block 610 is installed on two guide rails 69, and manipulator mounting base 6 is installed on the slide block 610, and described slide block 610 and slide block transverse motion drive motor 68 connected.

[0071] Described vacuum suction disc comprises disc body 101, several suction cups 102, vacuum device 103, hose 104 that are arranged on the bottom surface of disc body 101; Vacuum device 103 comprises vacuum pump 110, vacuum generator 111, vacuum supply valve 105, vacuum breaking Valve 106, throttle valve 107, vacuum switch 108, vacuum filter 109, vacuum pump 110, vacuum supply val...

Embodiment 3

[0086] Example 3. Such as Figure 19 As shown, the difference between this embodiment and Embodiment 1 is that the debris storage assembly includes a debris storage box 3 , and the debris storage box 3 is arranged laterally between the stamping work platform 2 and the manipulator mounting base 6 .

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PUM

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Abstract

The invention discloses a multi-station continuous stamping production line for automobile parts and a stamping process thereof. The multi-station continuous stamping production line comprises a stamping working system, a grabbing assembly, a debris containing assembly, a conveying assembly and a control system, wherein the stamping working system comprises a machine frame and a stamping working platform, and a plurality of stamping tools which are adapted to different punching procedures are transversely arranged on the stamping working platform; the grabbing assembly comprises a mechanical arm mounting base which is arranged on the front side or the rear side of the punching working platform and can transversely move, two mechanical grabbing arms, a plurality of longitudinal cleaning mechanical arms and a longitudinal grabbing mechanical arm are arranged on the mechanical arm mounting base; and the conveying assembly comprises a to-be-stamped automobile iron plate conveying belt anda stamped automobile part conveying belt which are longitudinally arranged on the left side and the right side of the grabbing assembly. According to the multi-station continuous stamping production line for automobile parts and the stamping process thereof, the multi-station automobile part punching machining is realized through multi-mechanism coordination operation, the automation degree is higher, the working efficiency and the operation accuracy are further improved, and the labor cost of enterprises can be greatly saved.

Description

technical field [0001] The invention belongs to the technical field of automatic machining equipment for auto parts, and in particular relates to a multi-station continuous stamping production line for auto parts and a stamping process thereof. Background technique [0002] The metal stamping parts of auto parts are very important parts in the structure of the car. For example, the door, frame and the main body of the compartment of the car are all welded and assembled by stamping and forming of steel plates. The progressive automatic stamping parts currently used in the industry can only satisfy flat plate parts, and are not suitable for special-shaped parts, stretched parts, and stamped deformed parts. Because the bottom surface is uneven, it cannot be pushed. The entire stamping process can be multi-set, such as blanking, punching, stretching, flanging, trimming, shaping and other processes. In addition, due to the large output and heavy weight of the metal sheet, the phy...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B21D35/00B21D43/02B21D43/10B21D43/18B21D43/12B21C51/00
CPCB21C51/00B21D35/003B21D43/026B21D43/105B21D43/12B21D43/18
Inventor 刘成强徐海港于兆申程方芹齐文君庞刚高俊峰马全军徐彩霞
Owner 山东时风(集团)有限责任公司
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