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Non-probabilistic reliability-based topology optimization of continuum structures considering local stiffness and strength failure

机译:考虑局部刚度和强度破坏的连续体结构基于非概率可靠性的拓扑优化

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This study presents a novel non-probabilistic reliability-based topology optimization (NRBTO) framework to determine optimal material configurations for continuum structures under local stiffness and strength limits. Uncertainty quantification (UQ) analysis under unknown-but-bounded (UBB) inputs is conducted to determine the feasible bounds of structural responses by combining a material interpolation model with stress aggregation function and interval mathematics. For safety reasons, improved interval reliability indexes that correspond to displacement and stress constraints are applied in topological optimization issues. Meanwhile, an adjoint-vector based sensitivity analysis is further discussed from which the gradient features between reliability measures and design variables are mathematically deduced, and the computational difficulties in large-scale variable updating can be effectively overcome. Numerical examples are eventually given to demonstrate the validity of the developed NRBTO methodology. (C) 2018 Elsevier B.V. All rights reserved.
机译:这项研究提出了一种新颖的基于非概率可靠性的拓扑优化(NRBTO)框架,用于确定局部刚度和强度限制下连续体结构的最佳材料配置。通过将材料插值模型与应力聚集函数和区间数学相结合,进行了未知但有界(UBB)输入下的不确定性量化(UQ)分析,以确定结构响应的可行边界。出于安全原因,在拓扑优化问题中应用了与位移和应力约束相对应的改进的区间可靠性指标。同时,进一步讨论了基于伴随向量的灵敏度分析,从数学上推导了可靠性测度和设计变量之间的梯度特征,可以有效克服大规模变量更新的计算难题。最后通过数值例子说明了开发的NRBTO方法的有效性。 (C)2018 Elsevier B.V.保留所有权利。

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