Research on Motion Optimization Design of Die-Cutting Mobile Platform
摘要
This chapter aims to conduct optimization design research on the motion of the die-cutting mobile platform, in order to improve the accuracy and reliability of die-cutting operations. Through the analysis of the motion mechanism of the existing die-cutting mobile platform, it was found that there are problems such as decreased positioning accuracy and large vibration interference during high-speed operation. Therefore, this study proposes a scheme based on iterative algorithms and structural optimization design. This scheme reduces the swing angle of the moving platform by changing the key component parameters of the multi-link mechanism. By reducing the swing angle of the moving platform, the horizontal displacement of the moving platform during motion is reduced, significantly reducing vibration and noise during motion. The research results indicate that the optimized die-cutting mobile platform reduces the horizontal swing angle while ensuring high-quality output of die-cutting products, providing strong support for the automation and intelligent upgrading of the die-cutting industry.