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A linear relaxation model for shape optimization of constrained contact force problem

机译:约束接触力问题形状优化的线性松弛模型

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This paper is devoted to shape optimization of constrained contact force problem. A linear relaxation model of contact force-clearance relation is developed. It is shown that such relaxation is essential to avoid zero sensitivity values of zero contact force with respect to design variables and to drive the satisfaction of contact force constraint at the specific contact region. In this work, both frictionless and frictional contact optimization problems are investigated by means of a gradient-based optimization algorithm. The optimization procedure including sensitivity analysis with relaxation model is implemented outside the structural contact analysis software to deal with non-smooth contact problems. The procedure is firstly validated by simple examples with analytical solutions and is finally applied to the design of an assembled aero-engine structure for leakproofness. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文致力于约束接触力问题的形状优化。建立了接触力-间隙关系的线性松弛模型。结果表明,这种松弛对于避免关于设计变量的零接触力的零敏感度值以及驱动特定接触区域处的接触力约束的满足是必不可少的。在这项工作中,通过基于梯度的优化算法研究了无摩擦和摩擦接触的优化问题。在结构接触分析软件外部实施了包括带有松弛模型的灵敏度分析在内的优化程序,以处理非光滑接触问题。该程序首先通过带有分析解决方案的简单示例进行验证,然后最终应用于组装航空发动机结构的设计以提高防泄漏能力。 (C)2018 Elsevier Ltd.保留所有权利。

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