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Structural topology optimization for directional deformation behavior design with the orthotropic artificial weak element method

机译:具有正向人工弱元素法的定向变形行为设计的结构拓扑优化

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摘要

In this paper, the topology optimization method is extended to arrive at the desired deformation behavior within local structural domains by distinguishing and suppressing specific deformation in a certain direction. Compared to the standard topology optimization and existing shape preserving design method, the contribution of this paper is twofold. First, Artificial Weak Elements (AWE) are defined and attached to the appropriate local domain. The strain energies of the AWE are calculated as a measurement to describe the deformation behavior quantitatively. Second, particular orthotropic material properties are defined for the AWE according to the given direction of the desired deformation, which formulate Orthotropic Artificial Weak Elements (AWE_( ort )). By introducing the constraint on the strain energy of the AWE_( ort )into a standard compliance based topology optimization, the deformation in the corresponding direction is suppressed, resulting in the desired deformation behavior. Several numerical examples are tested and compared to the standard topological design to illustrate the effect of the directional deformation behavior design.
机译:在本文中,拓扑优化方法通过在一定方向上区分和抑制特定变形来延伸到局部结构域内的所需变形行为。与标准拓扑优化和现有形状保持设计方法相比,本文的贡献是双重的。首先,定义人工弱元素(AWE)并附在适当的本地域上。敬畏的应变能量计算为定量描述变形行为的测量。其次,根据所需变形的给定方向为敬畏定义特定的正交材料性质,其配制正交人造弱元素(AWE_(ORT))。通过将AWE_(ORT)的应变能的约束引入基于标准的基于标准的基于拓扑优化,抑制了相应方向上的变形,导致所需的变形行为。测试了几个数值示例并与标准拓扑设计进行了比较,以说明方向变形行为设计的效果。

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