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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >A Hybrid Contact Implementation Framework for Finite Element Analysis and Topology Optimization of Machine Tools
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A Hybrid Contact Implementation Framework for Finite Element Analysis and Topology Optimization of Machine Tools

机译:用于有限元分析和机床拓扑优化的混合联系实施框架

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摘要

Machine tool contacts must be represented accurately for reliable prediction of machine behavior. In structural optimization problems, contact constraints are represented as an additional minimization problem based on computational contact mechanics theory. An accurate contact constraint representation is challenging for structural optimization problems: (i) "No penetration" rule dictated by Hertz-Signorini-Moreau (HSM) conditions at contacts is satisfied by varying the contact stiffness during a finite element (FE) solution without control of a user which causes increased contact stiffness "erroneously" to avoid penetration of contacting node pairs in an FE solution; and (ii) the reliability of solutions varies according to the chosen computational contact method. This paper is devoted to the topology optimization of machine tools with contact constraints. A hybrid approach is followed that combines the computational contact problem framework and an obtained stable contact stiffness function (analytically or experimentally). According to the proposed method, the existing optimization problem in FE literature is restated in a reliable form for machine tool applications. To avoid the existing computational challenges and reliability problems, contact forces are directly mapped onto an FE model used in the restated topology optimization problem with the help of proposed method. In this study, the existing and the proposed methods for contact are investigated by means of the solid isotropic material with penalization model (SIMP) algorithm for topology optimization. The effectiveness of the proposed method is demonstrated by comparing the experimental measurements on a prototype machine tool manufactured according to the optimization solutions of the proposed method and those of a conventional machine tool.
机译:必须准确地表示机床触点,以便可靠地预测机器行为。在结构优化问题中,基于计算联系机械理论,接触约束被表示为额外的最小化问题。准确的接触约束表示对结构优化问题有挑战性:(i)通过在没有控制的有限元(Fe)溶液期间的接触刚度来满足Hertz-Signorini-Moreau(HSM)条件的“无渗透”规则在使接触刚度增加“错误”的用户的内容,以避免在Fe解决方案中接触节点对的渗透; (ii)解决方案的可靠性根据所选择的计算接触方法而变化。本文致力于具有接触约束的机床的拓扑优化。遵循混合方法,将计算接触问题框架和获得的稳定接触刚度函数(分析或实验)结合。根据所提出的方法,Fe文献中的现有优化问题以可靠的形式为机器工具应用。为避免现有的计算挑战和可靠性问题,接触力直接映射到借助于提出的方法的拓扑优化问题中使用的FE模型。在本研究中,通过静态各向同性材料与惩罚模型(SIMP)算法来研究现有和所提出的接触方法,用于拓扑优化。通过比较根据所提出的方法的优化解决方案和传统机床的优化解决方案制造的原型机床上的实验测量来证明所提出的方法的有效性。

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