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A Topology Optimization Method With Constant Volume Fraction During Iterations for Design of Compliant Mechanisms

机译:柔顺机构设计中具有恒定体积分数的拓扑优化方法

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This study presents a topology optimization method for design of complaint mechanisms with maximum output displacement as the objective function. Unlike traditional approaches, one special characteristic of this method is that the volume fraction, which is defined as the calculated volume divided by the full volume, remains the same value throughout the optimization process based on the proposed pseudodensity and sensitivity number update scheme. The pseudodensity of each element is initially with the same value as the prespecified volume fraction constraint and can be decreased to a very small value or increased to one with a small increment. Two benchmark problems, the optimal design of a force-displacement inverter mechanism and a crunching mechanism, are provided as the illustrative examples to demonstrate the effectiveness of the proposed method. The results agree well with the previous studies. The proposed method is a general approach which can be used to synthesize the optimal designs of compliant mechanisms with better computational efficiency.
机译:本研究提出了一种以最大输出位移为目标函数设计投诉机制的拓扑优化方法。与传统方法不同,此方法的一个特殊特征是体积分数(定义为计算出的体积除以全部体积)在基于拟议的伪密度和灵敏度数更新方案的整个优化过程中保持相同的值。每个元素的伪密度最初具有与预定体积分数约束相同的值,并且可以减小到很小的值或以很小的增量增加到一个。作为示例,提供了两个基准问题,即力-位移逆变器机构和紧缩机构的优化设计,以证明所提出方法的有效性。结果与先前的研究非常吻合。所提出的方法是一种通用方法,可用于以更好的计算效率来合成顺应性机构的最佳设计。

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