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Identification of the Orthotropic Elastic Stiffnesses of Composites with the Virtual Fields Method: Sensitivity Study and Experimental Validation

机译:虚拟场法识别复合材料的正交各向异性弹性刚度:敏感性研究与实验验证

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This paper presents the use of a sensitivity study to find the best combinations of free length and fibre angle in an unnotched losipescu test processed with the virtual fields method. The sensitivity to noise coefficients arising from the special virtual fields procedure are used to build up a cost function. This function is aimed at balancing out the coefficients of the different orthotropic stiffnesses so that the same confidence level can be reached on all these parameters. Then, experimental validation was performed using a speckled interferometry (ESPI) system. Full-field strains were measured and stiffnesses identified and compared between the usual 0°, 30 mm configuration and an improved 25°, 40 mm configuration. The outcome of the optimisation was confirmed by testing the same specimen several times and comparing scatter between the two configurations. This is a first promising result on the way to the design of a new test for orthotropic stiffness identification on a single specimen from full-field measurements.
机译:本文介绍了使用敏感性研究来发现在用虚拟场方法处理的无缺口losipescu测试中自由长度和纤维角度的最佳组合的方法。由特殊虚拟场过程引起的对噪声系数的敏感性被用来建立成本函数。此功能旨在平衡不同正交异性刚度的系数,以便可以在所有这些参数上达到相同的置信度。然后,使用斑点干涉仪(ESPI)系统进行了实验验证。测量了全场应变,并确定了刚度,并在通常的0°,30 mm配置和改进的25°,40 mm配置之间进行了比较。通过多次测试同一样品并比较两种配置之间的分散性,可以确认优化的结果。这是从全视场测量设计用于对单个样本进行正交各向异性刚度识别的新测试的设计方法的第一个有希望的结果。

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