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Structural dynamic topology optimization based on dynamic reliability using equivalent static loads

机译:使用等效静载荷基于动态可靠性的结构动态拓扑优化

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摘要

An approach for reliability-based topology optimization of interval parameters structures under dynamic loads is proposed. We modify the equivalent static loads method for non linear static response structural optimization (ESLSO) to solve the dynamic reliability optimization problem. In our modified ESLSO, the equivalent static loads (ESLs) are redefined to consider the uncertainties. The new ESLs including all the uncertainties from geometric dimensions, material properties and loading conditions generate the same interval response field as dynamic loads. Based on the definition of the interval non-probabilistic reliability index, we construct the static reliability topology optimization model using ESLs. The method of moving asymptotes (MMA) is employed as the optimization problem solver. The applicability and validity of the proposed model and numerical techniques are demonstrated with three numerical examples.
机译:提出了一种基于动态载荷的区间参数结构可靠性拓扑优化方法。我们针对非线性静响应结构优化(ESLSO)修改了等效静载荷方法,以解决动态可靠性优化问题。在我们修改后的ESLSO中,重新定义了等效静载荷(ESL)来考虑不确定性。新的ESL包括来自几何尺寸,材料特性和加载条件的所有不确定性,它们产生与动态载荷相同的间隔响应场。基于区间非概率可靠性指标的定义,我们利用ESL构建了静态可靠性拓扑优化模型。移动渐近线(MMA)的方法用作优化问题求解器。通过三个数值例子验证了所提出模型和数值技术的适用性和有效性。

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