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Mapping Static and Dynamic Crack-Tip Deformations Using Reflection-Mode Digital Gradient Sensing: Applications to Mode-I and Mixed-Mode Fracture

机译:使用反射模式数字梯度感应映射静态和动态裂纹尖端变形:在模式I和混合模式断裂中的应用

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摘要

The reflection-mode digital gradient sensing (r-DGS) method is extended for visualizing and quantifying crack-tip deformations in solids under quasi-static and dynamic loading conditions. The r-DGS technique employs digital image correlation principles to quantify two orthogonal surface slopes simultaneously in specularly reflective solids by measuring small deflections of light rays. Here, for the first time, r-DGS is implemented to study both mode-I and mixed-mode (I/II) problems and evaluate fracture parameters. Under dynamic loading conditions, r-DGS is employed in conjunction with high-speed digital photography to map surface slopes in edge cracked plates subjected to one-point impact. The measured surface slopes are used to successfully evaluate instantaneous stress intensity factor histories by combining measurements with the corresponding asymptotic crack-tip fields and performing over-deterministic least-squares analyses. Finite element computations are also used to complement experimental measurements as needed.
机译:扩展了反射模式数字梯度传感(r-DGS)方法,以可视化和量化准静态和动态载荷条件下固体中的裂纹尖端变形。 r-DGS技术采用数字图像相关原理,通过测量光线的小偏转量,同时对镜面反射固体中的两个正交表面斜率进行量化。在这里,首次使用r-DGS来研究I型和混合模式(I / II)问题并评估断裂参数。在动态载荷条件下,r-DGS与高速数码摄影结合使用,可绘制出受到单点冲击的边缘裂纹板中的表面坡度。通过将测量值与相应的渐近裂纹尖端场相结合并进行过确定性最小二乘法分析,可以将测量到的表面斜率用于成功评估瞬时应力强度因子历史。根据需要,还可以使用有限元计算来补充实验测量。

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