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A mixed numerical-experimental methodology for determining the elastic constants of orthotropic materials

机译:确定正交异性材料弹性常数的混合数值实验方法

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The present paper describes a hybrid method which combines finite element analyses and genetic algorithms (GAs) for determining the elastic properties of isotropic and anisotropic materials from the full-field measurement of the displacements of plates under flexural loads. An optimized procedure based on GAs updates iteratively the elastic constants in a numerical model until the displacements obtained by numerical analysis fit the experimental data. The unknown parameters are identified simultaneously by a single test and without damaging the structure. The procedure was applied to both isotropic (aluminum) and anisotropic (Graphite/PEEK unidirectional laminate) specimens.
机译:本文介绍了一种混合方法,该方法结合了有限元分析和遗传算法(GAs),可从弯曲载荷作用下的板位移的全场测量中确定各向同性和各向异性材料的弹性特性。基于GA的优化程序可以迭代地更新数值模型中的弹性常数,直到通过数值分析获得的位移适合实验数据为止。通过一次测试即可同时识别未知参数,而不会损坏结构。该程序适用于各向同性(铝)和各向异性(石墨/ PEEK单向层压板)样品。

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