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Evolutionary topology optimization of continuum structures including design-dependent self-weight loads

机译:连续结构的演化拓扑优化,包括与设计有关的自重载荷

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The effectiveness and efficiency of the Bi-directional Evolutionary Structural Optimization (BESO) method has been demonstrated on the minimization compliance problem with fixed external loads. This paper considers the minimization of mean compliance for continuum structure subjected to design-dependent self-weight loads. Due to the non-monotonous behaviour for this type of the optimization problems, the extended BESO method using discrete design variables has its difficulty to obtain convergent solutions for such problems. In this paper, a new BESO method is developed based on the sensitivity number computation utilizing an alternative material interpolation scheme. A number of examples are presented to demonstrate the capabilities of the proposed method for achieving convergent optimal solutions for structures including self-weight loads.
机译:双向演化结构优化(BESO)方法的有效性和效率已在固定外部载荷的最小化依从性问题上得到证明。本文考虑了承受与设计有关的自重载荷的连续结构的平均柔度的最小化。由于这类优化问题的非单调性,使用离散设计变量的扩展BESO方法难以获得此类问题的收敛解。在本文中,基于替代材料插值方案的灵敏度数计算,开发了一种新的BESO方法。给出了许多例子来说明所提出的方法实现包括自重载荷在内的结构的收敛最优解的能力。

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