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Design of multi-layer materials using inverse homogenization and a level set method

机译:使用逆均化和能级集方法设计多层材料

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This work is concerned with the micro-architecture of multi-layer material that globally exhibits desired mechanical properties, for instance a negative apparent Poisson's ratio. We use inverse homogenization, the level set method, and the shape derivative in the sense of Hadamard to identify material regions and track boundary changes within the context of the smoothed interface. The level set method and the shape derivative obtained in the smoothed interface context allows to capture, within the unit cell, the optimal micro-geometry. We test the algorithm by computing several multi-layer auxetic micro-structures. The multi-layer approach has the added benefit that contact during movement of adjacent "branches" of the micro-structure can be avoided in order to increase its capacity to withstand larger stresses. (C) 2018 Elsevier B.V. All rights reserved.
机译:这项工作涉及多层材料的微结构,该结构总体上表现出所需的机械性能,例如负表观泊松比。我们使用逆均质化,水平集方法和Hadamard意义上的形状导数来识别材料区域并跟踪平滑界面范围内的边界变化。在平滑的界面环境中获得的水平集方法和形状导数允许在晶胞内捕获最佳的微几何形状。我们通过计算几个多层的膨胀微结构来测试该算法。多层方法具有额外的益处,即可以避免在微结构的相邻“分支”运动期间的接触,以增加其承受更大应力的能力。 (C)2018 Elsevier B.V.保留所有权利。

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