Paper
30 August 2022 Motion planning and simulation of multi-station continuous punching device for bent chain plate
Chen Jiang, Yongming Wang, Niu Niu
Author Affiliations +
Proceedings Volume 12309, International Conference on Advanced Manufacturing Technology and Manufacturing Systems (ICAMTMS 2022); 123090A (2022) https://doi.org/10.1117/12.2645463
Event: International Conference on Advanced Manufacturing Technology and Manufacturing System (ICAMTMS 2022), 2022, Shijiazhuang, China
Abstract
In order to meet the process requirement of ≤4 s·piece-1 for punching the pin-joint chain plate, a multi-station continuous punching device for bent chain plate was designed, which mainly consists of feeding mechanism, punching die, scrap cleaning mechanism, unloading mechanism and rotary mechanism, etc. It can continuously complete the work of four stations, such as feeding, punching, scrap cleaning and unloading of bent chain plate. Firstly, according to the process flow of multi-station continuous punching for bent chain plate of pin-joint chain, the action requirements of multi-station continuous punching device were analyzed. Then, the motion planning and time sequence division of each action were divided. Finally, a simplified simulation model of multi-station continuous punching device for bent chain plate was established in ADAMS software, and the motion simulation of multi-station continuous punching process was carried out according to the timing sequence planning. The force, moment and displacement curves of each moving part were obtained. The simulation results show that the motion planning of the multi-station continuous punching device for bent chain plate is reasonable.
© (2022) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Chen Jiang, Yongming Wang, and Niu Niu "Motion planning and simulation of multi-station continuous punching device for bent chain plate", Proc. SPIE 12309, International Conference on Advanced Manufacturing Technology and Manufacturing Systems (ICAMTMS 2022), 123090A (30 August 2022); https://doi.org/10.1117/12.2645463
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KEYWORDS
Instrument modeling

Motion models

Content addressable memory

Computer simulations

Motion analysis

Mechanical engineering

Statistical modeling

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