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Minimum length scale control in structural topology optimization based on the Moving Morphable Components (MMC) approach

机译:基于可移动变形组件(MMC)方法的结构拓扑优化中的最小长度比例控制

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A novel approach, which can control the minimum length scale in topology optimization in a straightforward and explicit way, is proposed in the present paper. This approach is constructed under the so-called Moving Morphable Components (MMC) based solution framework where optimized structural topology can be found by changing the shapes and layout of a set of trapezoid-shaped structural components on a fixed finite element mesh. The eXtended Finite Element Method (XFEM) is employed for structural response analysis and shape sensitivity information is obtained by carrying out numerical integration along the structural boundary. A precision definition of the minimum length scale of a structure is also suggested based on the proposed solution framework. Compared with existing approaches, the proposed approach can achieve minimum length scale control by simply setting lower bounds on a set of geometric design variables. Only a small number of purely geometric constraints imposed on the sizes of intersection regions should be considered explicitly in order to get a complete minimum length scale control. Numerical examples demonstrate the effectiveness of the proposed method. (C) 2016 Elsevier B.V. All rights reserved.
机译:提出了一种新颖的方法,该方法可以以直接和显式的方式控制拓扑优化中的最小长度尺度。这种方法是在所谓的基于“移动可变形组件”(MMC)的解决方案框架下构建的,在该解决方案框架中,可以通过更改固定有限元网格上一组梯形结构组件的形状和布局来找到优化的结构拓扑。采用扩展有限元法(XFEM)进行结构响应分析,并通过沿结构边界进行数值积分获得形状敏感性信息。根据所提出的解决方案框架,还提出了结构最小长度尺度的精确定义。与现有方法相比,该方法可以通过简单地在一组几何设计变量上设置下限来实现最小长度比例控制。为了获得完整的最小长度比例尺控制,仅应明确考虑施加在相交区域大小上的少量纯几何约束。数值算例表明了该方法的有效性。 (C)2016 Elsevier B.V.保留所有权利。

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