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Finite-element analysis and structural optimization design study for cradle seat of CNC machine tool

机译:数控机床底座的有限元分析与结构优化设计研究

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摘要

In order to improve the machining precision of the five-axis CNC machine tool, the cradle seat must have good structure and mechanical properties. Using the CAD/CAE-integrated design platform, static finite-element analysis and sensitivity analysis of the original cradle seat were conducted. Based on the above analysis, the weak part of the original cradle seat was discovered. A multi-objective optimization design process for the cradle seat's weak part was carried out, and six groups of non-inferior solutions were obtained. From the six groups of optimization design schemes and the original design scheme, the optimal design scheme was selected using fuzzy matter-element method and the entropy-weight method. The cradle seat's mass was reduced by 2.76%, and the maximum deformation was reduced by 27.38%. The impact test analysis results showed that the dynamic performance of the cradle seat, after optimization design, was greatly improved, which proves that the proposed structural optimization design method based on sensitivity analysis is reasonable and feasible.
机译:为了提高五轴数控机床的加工精度,摇篮座必须具有良好的结构和机械性能。使用CAD / CAE集成设计平台,对原始摇篮座进行了静态有限元分析和灵敏度分析。根据以上分析,发现了原始通讯座的薄弱部分。对摇篮座椅的薄弱环节进行了多目标优化设计,得到了六组非劣解。从六组优化设计方案和原始设计方案中,采用模糊物元法和熵权法选择了最优设计方案。通讯座的质量减少了2.76%,最大变形减少了27.38%。冲击试验分析结果表明,经过优化设计后,摇篮座的动态性能得到了很大的提高,证明了基于灵敏度分析的结构优化设计方法是合理可行的。

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