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Topology synthesis of electrothermal compliant mechanisms using line elements

机译:使用线元的电热顺应机制的拓扑综合

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摘要

This paper presents a line-element-based approach to the topology synthesis of electrothermal compliant (ETC) mechanisms. A line element is a one-dimensional model of the electrical, thermal, and elastic behavior of a beam-like continuum. In contrast to topology synthesis of ETC mechanisms by a continuum-element-based approach, the line-element-based approach offers significant conceptual and practical advantages. The line element allows for straightforward modeling of surface heat transfer in the topology optimization framework. It also obviates the need to interpolate electrical and thermophysical properties in the topology synthesis procedure. Moreover, this approach results in clean geometries that are easy to fabricate directly in their optimized form.Solutions obtained from this procedure are compared with results from continuum-based optimal synthesis procedures as well as intuitive designs reported in the literature. A number of design examples are used to demonstrate the ability of the procedure to generate nonintuitive topologies. The synthesis procedure is also used to study the influence of the direction of output and the electrical and thermal resistance of the workpiece on the resulting optimal topologies.
机译:本文提出了一种基于线元的电热顺应性(ETC)机制拓扑综合方法。线元素是梁状连续体的电,热和弹性行为的一维模型。与通过基于连续元素的方法对ETC机制进行拓扑综合相比,基于行元素的方法具有明显的概念和实践优势。线元素允许在拓扑优化框架中对表面传热进行直接建模。它还消除了在拓扑合成过程中内插电学和热物理性质的需要。此外,这种方法可产生易于以优化形式直接制造的干净几何形状。将此过程获得的溶液与基于连续体的最佳合成过程以及文献报道的直观设计的结果进行比较。许多设计示例用于说明该过程生成非直观拓扑的能力。合成程序还用于研究输出方向以及工件的电阻和热阻对所得最佳拓扑的影响。

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