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Topology optimization of continuum structures for natural frequencies considering casting constraints

机译:考虑铸造约束的自然频率连续结构的拓扑优化

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摘要

A method for the topology optimization on the natural frequency of continuum structures with casting constraints is proposed. The objective is to maximize the natural frequency of vibrating continuum structures subject to casting constraints. When the natural frequencies of the considered structures are maximized using the solid isotropic material with penalization (SIMP) model, artificial localized modes may occur in areas where elements are assigned with lower density values. In this article, the topology optimization is performed by the bi-directional evolutionary structural optimization (BESO) method. The effects of different locations of concentrated lump mass, different volume fractions and meshing sizes on the final topologies are compared. Both two and four parting directions are investigated. Several two- and three-dimensional numerical examples show that the proposed BESO method is effective in achieving convergent solid-void optimal solutions for a variety of frequency optimization problems of continuum structures.
机译:提出了一种拓扑优化对铸造约束的连续结构自然频率的方法。目的是最大限度地提高振动连续体结构的自然频率,受到铸造约束。当所考虑的结构的自然频率通过惩罚(SIMP)模型使用纯度各向同性材料最大化时,可以在分配具有较低密度值的元件的区域中发生人工局部模式。在本文中,通过双向进化结构优化(BESO)方法执行拓扑优化。比较了浓缩块质量,不同体积分数和啮合尺寸在最终拓扑上的不同位置的影响。研究了两个和四个分离方向。几个二维和三维数值示例表明,该提出的FASO方法对于实现连续结构各种频率优化问题的收敛固体无效解决方案有效。

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