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Critical examination of the use of coherent gradient sensing in measuring fracture parameters in functionally graded materials

机译:严格检查相干梯度传感在功能梯度材料中测量断裂参数的应用

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摘要

Specific relations for out-of-plane deformation near crack tips of linearly graded materials are introduced and used with the optical method of coherent gradient sensing (CGS) to interpret experimentally obtained fringes. Stress intensity factors are thus derived and used to reconstruct synthetic fringes that are then compared to experimental ones. An error function is used with sets of 2-6 terms in the asymptotic solution to gage the incremental accuracy contributed by using these additional terms with the experimental results. The study reveals the necessity of using up to the sixth higher-order term to obtain a precise agreement between the analytical solution and the experimental interferograms. Specimen configurations with cracks consecutively positioned at the stiffer, and then at the more compliant end of the gradient are used. Distinct features of the interferograms indicate the benefits of having the crack on the compliant side of the elastic modulus variation.
机译:介绍了线性渐变材料裂纹尖端附近的平面外变形的特定关系,并将其与相干梯度感测(CGS)的光学方法一起用于解释实验获得的条纹。因此得出了应力强度因子,并将其用于重建合成条纹,然后将其与实验条纹进行比较。在渐近解中将误差函数与2-6个项的集合一起使用,以衡量将这些附加项与实验结果一起使用所贡献的增量精度。研究表明,必须使用最多第六个高阶项来获得分析溶液和实验干涉图之间的精确一致。使用具有连续位于较坚硬处,然后位于梯度的较柔顺端处的裂纹的标本配置。干涉图的不同特征表明,在弹性模量变化的柔顺侧出现裂纹是有好处的。

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