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Optimal design of composite structures for strength and stiffness: an inverse homogenization approach

机译:强度和刚度的复合结构的优化设计:反向均质化方法

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We introduce a rigorously based numerical method for compliance minimization problems in the presence of pointwise stress constraints. The method is based on new multiscale quantities that measure the amplification of the local stress due to the microstructure. The design method is illustrated for two different kinds of problems. The first identifies suitably graded distributions of fibers inside shaft cross sections that impart sufficient overall stiffness while at the same time adequately control the amplitude of the local stress at each point. The second set of problems are carried out in the context of plane strain. In this study, we recover a novel class of designs made from locally layered media for minimum compliance subject to pointwise stress constraints. The stress-constrained designs place the more compliant material in the neighborhood of stress concentrators associated with abrupt changes in boundary loading and reentrant corners.
机译:我们针对点应力约束的存在引入了一种基于严格的数值方法,用于最小化合规性问题。该方法基于新的多尺度量,该量用于测量由于微结构而引起的局部应力的放大。说明了针对两种不同类型问题的设计方法。第一个标识出轴横截面内的纤维的适当渐变分布,这些分布可赋予足够的总体刚度,同时又可适当控制每个点处的局部应力幅度。第二组问题是在平面应变的情况下进行的。在这项研究中,我们恢复了由局部分层介质制成的一类新颖的设计,以便在受到点应力约束的情况下实现最小的柔度。受应力约束的设计将更加顺应性的材料放置在应力集中器附近,该应力集中器与边界载荷和凹角的突变有关。

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