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Determination of Stress Intensity Factor for Cracks in Orthotropic Composite Materials using Digital Image Correlation

机译:用数字图像相关确定正交异性复合材料中裂纹的应力强度因子

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This paper focuses on the application of the digital image correlation (DIC) technique to determine the stress intensity factor (SIF) for cracks in orthotropic composites. DIC is a full-field technique for measuring the surface displacements of a deforming object and can be applied to any type of material. To determine the SIF from full-field displacement data, the asymptotic expansion of the crack-tip displacement field is required. In this paper the expansion of the crack tip displacement field is derived from an existing solution for strain fields. Unidirectional fibre composite panels with an edge crack aligned along the fibre were tested under remote tensile loading and the displacements were recorded using DIC. The SIF was calculated from the experimental data by fitting the theoretical displacement field using the least squares method. The SIF thus determined was in good agreement with theoretical results and therefore demonstrates the applicability of the derived displacement field and DIC technique for studying fracture in composites.
机译:本文重点研究数字图像相关(DIC)技术在确定正交各向异性复合材料裂缝的应力强度因子(SIF)中的应用。 DIC是用于测量变形对象的表面位移的全场技术,可以应用于任何类型的材料。为了从全场位移数据确定SIF,需要裂纹尖端位移场的渐近扩展。在本文中,裂纹尖端位移场的扩展源自现有的应变场解决方案。在远距离拉伸载荷下测试了沿纤维排列的边缘裂纹的单向纤维复合板,并使用DIC记录了位移。通过使用最小二乘法拟合理论位移场,从实验数据中计算出SIF。如此确定的SIF与理论结果非常吻合,因此证明了导出的位移场和DIC技术在研究复合材料断裂方面的适用性。

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