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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Generalized hole nucleation through BESO for the level set based topology optimization of multi-material structures
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Generalized hole nucleation through BESO for the level set based topology optimization of multi-material structures

机译:通过BESO的广义孔成核,用于基于水平集的多材料结构拓扑优化

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摘要

When a multi-material structure is optimized by using the level set method, besides the topological changes that are familiar to people (i.e., vanishing of a hole, nucleation of a hole, merging of holes, and breaking apart of a region), another topological change, i.e., the conversion between a pair of materials, is also possible to happen but receives little attention. In this case, a hole is no longer a region of void but becomes occupied by a different solid material. In our present study, such a topological change is called the generalized hole nucleation, and the material conversion scheme of the BESO is integrated into the level set based framework to deal with it. A strategy determining where and when to conduct generalized hole nucleation is presented. In addition, the shape derivatives of the structure's traction free boundary and the interfaces between material regions are carefully analyzed. The results of several numerical examples prove that the proposed method is effective and efficient. (C) 2019 Elsevier B.V. All rights reserved.
机译:当通过水平设置方法优化多材料结构时,除了人们熟悉的拓扑变化(即,孔消失,孔成核,孔合并以及区域分裂)之外,还有另一个拓扑变化,即一对材料之间的转换,也可能发生,但很少引起注意。在这种情况下,孔不再是空隙区域,而是被其他固体材料占据。在我们目前的研究中,这种拓扑变化被称为广义空穴成核,并且BESO的材料转换方案被集成到基于水平集的框架中进行处理。提出了确定何时何地进行广义空穴成核的策略。此外,还仔细分析了结构的自由牵引边界的形状导数和材料区域之间的界面。几个数值算例的结果证明了该方法的有效性。 (C)2019 Elsevier B.V.保留所有权利。

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