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Application of Substructure Decoupling Techniques to Predict Mobile Machine Tool Dynamics: Numerical Investigations

机译:子结构去耦技术在预测移动机床动力学中的应用:数值研究

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In situ machining of large workpieces is made possible by moving mobile machines to workpiece locations. To guide and enhance on site machining performance, dynamics of the assembled system must be predicted beforehand. Beforehand prediction of assembled response requires dynamics of the mobile machine in its free-free configuration be coupled with response of base/workpiece measured at location. Since obtaining the free-free response of the machine is non-trivial, this paper presents a substructure decoupling scheme that instead extracts the machine's response from known dynamics of the machine mounted on a base, and from information of a substructural base system. Simulation driven investigations show the decoupling scheme to be robust even under the vagaries of measurement noise and changes in the residual substructural base system. Extracted dynamics of the machine can be subsequently synthesized with known dynamics of other bases/workpieces for a priori prediction of assembled dynamics to guide first-time-right on site machining.
机译:通过将移动机器移动到工件位置,可以实现大型工件的原位加工。为了引导和增强现场加工性能,必须预先预测组装系统的动态。预先预测组装的响应需要移动机器在无自由配置中的动态,其与在位置测量的基座/工件的响应耦合。由于获得机器的无自由响应是非微观的,因此本文提出了一种子结构解耦方案,而是从安装在基座上的机器的已知动态以及从子结构基础系统的信息提取机器的响应。仿真驱动的研究表明,即使在测量噪声的变幻物和残差子结构基础系统的变形下,也显示出稳健的解耦方案。随后可以用其他基础/工件的已知动态合成机器的提取动力学,用于先验预测组装动态的预测,以在现场加工上引导第一右右。

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