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Simultaneous determination of virtual fields and material parameters for thermo-mechanical coupling deformation in orthotropic materials

机译:正交异性材料中热机械耦合变形的虚拟场和材料参数的同时确定

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摘要

In this paper, an effective general method is proposed to determine the optimal virtual fields and extract the elastic constants and the thermal expansion coefficients of orthotropic composite materials from the coupled thermo-mechanical deformation fields simultaneously. First, a practical analysis procedure is implemented based on the assumed material parameters with orthotropic in-plane properties to determine the effective virtual fields for three-point bending test configuration. Six thermo-mechanical parameters of three kinds of orthotropic composite materials are decoupled and identified by the determined effective virtual fields to verify its independence on material parameters. Second, the influences of specimen dimensions and external loadings on identified material parameters are investigated to validate the applicability of effective virtual fields under different test configurations. Finally, the optimal virtual fields are determined by means of a numerical method and its capacity for decreasing the noise influence is investigated quantitatively. The research work will provide an effective method to determine the optimal virtual fields for decoupling the thermo-mechanical coupled deformation of orthotropic composite materials.
机译:本文提出了一种有效的通用方法来确定最佳虚拟场,并同时从耦合的热机械变形场中提取正交各向异性复合材料的弹性常数和热膨胀系数。首先,基于具有正交各向异性平面内特性的假定材料参数,执行实用的分析过程,以确定三点弯曲测试配置的有效虚拟场。对三种正交各向异性复合材料的六个热机械参数进行解耦,并通过确定的有效虚拟场对其进行标识,以验证其在材料参数上的独立性。其次,研究了样本尺寸和外部载荷对确定的材料参数的影响,以验证有效虚拟场在不同测试配置下的适用性。最后,通过数值方法确定了最佳虚拟场,并定量研究了其减小噪声影响的能力。研究工作将为确定正交各向异性复合材料的热机械耦合变形解耦的最佳虚拟场提供有效方法。

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