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Lightweight Threshing Rack under Multisource Excitation Based on Modal Optimization Method

机译:基于模态优化方法的多源激励下轻量级阈值架

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摘要

Crawler rice combine harvester threshing rack excited by different frequencies of multiple working parts would cause strong vibration response. In this paper, the rack-type rice combine harvester threshing rack was taken as research objective, and then the static analysis of the existing threshing rack was carried out by ANSYS Finite Element software. The topology of the rack structure was optimized according to the stress and strain distribution of the threshing rack. Based on solving the 6 natural frequencies and mode shapes of the threshing rack of combine harvester, the morphological test of threshing rack was carried out and the reliability of the modal analysis was verified. Finally, the multivibration source was assembled on the rack for simulation to test and verify the optimization effectiveness. Results showed that the 1st to 6th natural frequency of threshing rack after modal optimization could avoid the excitation frequency of the working part. Compared with the original design, the optimized threshing rack had a weight reduction of 13.7%. This study can provide a theoretical reference for the structural design and optimization of combine harvester threshing rack.
机译:履带米合并通过多个工作部件的不同频率激发的收割机脱粒机架会引起强烈的振动响应。在本文中,架型米饭结合收割机脱粒架作为研究目标,然后通过ANSYS有限元件进行现有脱粒机架的静态分析。根据脱粒机架的应力和应变分布优化了齿条结构的拓扑。基于解决联合收割机的脱粒机架的6个固有频率和模式形状,进行了脱粒架的形态学测试,验证了模态分析的可靠性。最后,在机架上组装了多选光源,以进行模拟以测试和验证优化效果。结果表明,模态优化后的脱粒机架的第一至第6天自然频率可以避免工作部件的激励频率。与原始设计相比,优化的脱粒机重量减少13.7%。该研究可以为组合收割机脱粒机架的结构设计和优化提供理论参考。

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