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Prediction of extremal material properties for the optimal design of topology shape and material

机译:拓扑形状与材料最优设计的极端材料特性预测

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This paper describes some recent developments that treat the simultaneous optimization of material and structure for minimum compliance. The basic idea is to represent the material properties for a linear elastic continuum in the most general form possible, namely as the unrestricted set of elements of positive semi-definite constitutive tensors. The cost of resource is measured through certain invariants of the tensors, here the 2-norm or the trace of the tensors. The advantage of this general formulation is that analytical forms for the optimized material properties can be derived and that effective methods for computational solution can be devised for the resulting reduced structural optimization problem.
机译:本文介绍了一些最近的发展,可治疗材料和结构的同时优化以获得最小合规性。基本思想是表示最常形式的线性弹性连续体的材料特性,即作为正半定结构张量的不受限制的元素集。资源成本通过张量的某些不变,这里是张量的2范数或迹象。该一般制剂的优点是可以推导出用于优化材料特性的分析形式,并且可以设计用于计算溶液的有效方法,以减少结构优化问题。

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