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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Predicting mobile machine tool dynamics by experimental dynamic substructuring
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Predicting mobile machine tool dynamics by experimental dynamic substructuring

机译:通过实验动态子结构预测移动机床的动力学

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Predicting mobile machine tool dynamics prior to moving the machine to a new part and/or location is essential to guide first-time-right in situ machining solutions. This paper considers such a priori prediction of assembled dynamics under varying base/part/contact characteristics by applying dynamic substructuring procedures. Assembled dynamics are predicted by substructural coupling of the machine's known free-free response with the known response of any base/part measured at location. Since obtaining the machine's free-free response remains non-trivial, we instead extract the machine's dynamics using substructure decoupling procedures. Substructuring is carried out using measured frequency response functions. Methods are tested for robustness, and are experimentally validated.
机译:在将机器移至新零件和/或位置之前,预测移动式机器的动力学特性对于引导首次就地加工解决方案至关重要。本文考虑了通过应用动态子结构化程序在变化的基础/零件/接触特性下组装动力学的先验预测。通过将机器的已知自由响应与在位置测量的任何基础/零件的已知响应的子结构耦合来预测组装的动力学。由于获得机器的自由响应仍然是不平凡的,因此我们改用子结构解耦程序来提取机器的动力学。使用测得的频率响应函数进行子结构化。测试方法的鲁棒性,并通过实验验证。

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