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On the importance of viscoelastic response consideration in structural design optimization

机译:论粘弹性响应考虑在结构设计优化中的重要性

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In this paper we present a series of mathematical proofs that demonstrate the importance of accounting for viscoelastic effects in structural optimization algorithms. Focusing specifically on mass minimization problems with stiffness and deflection constraints, we show that standard techniques based on linear elastic analysis overestimate the long-term stiffness of the structure, leading to designs that become infeasible after sustained loading due to viscoelastic creep. Conversely, assuming maximum creep deflection, which also allows for linear analysis, leads to an overly conservative design that is unnecessarily heavy and therefore suboptimal. We prove both propositions for both constant and time-varying load histories. We also present proofs for generalized continuum mechanics problems as well as for a finite element formulation, which can be applied to any arbitrary geometry. Lastly, we present two numerical examples in which the conclusions derived in the proofs are verified empirically.
机译:在本文中,我们提出了一系列数学证明,这些证据证明了结构优化算法中考虑粘弹性效应的重要性。我们特别关注具有刚度和挠度约束的质量最小化问题,我们表明基于线性弹性分析的标准技术高估了结构的长期刚度,导致设计由于粘弹性蠕变而在承受持续载荷后变得不可行。相反,假设最大蠕变挠度也可以进行线性分析,则会导致设计过于保守,从而不必要地增加重量,因此次优。我们证明了恒定和随时间变化的负载历史的两个命题。我们还提供了有关广义连续力学问题以及有限元公式的证明,该公式可以应用于任何任意几何形状。最后,我们给出两个数值示例,其中对证明中得出的结论进行经验验证。

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