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Measurement of transient deformations using digital image correlation method and high-speed photography: application to dynamic fracture

机译:使用数字图像相关方法和高速摄影测量瞬态变形:在动态裂缝中的应用

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摘要

The digital image correlation method is extended to the study of transient deformations such as the one associated with a rapid growth of cracks in materials. A newly introduced rotating mirror type, multichannel digital high-speed camera is used in the investigation. Details of calibrating the imaging system are first described, and the methodology to estimate and correct inherent misalignments in the optical channels are outlined. A series of benchmark experiments are used to determined the accuracy of the measured displacements. A 2%-6% pixel accuracy in displacement measurements is achieved. Subsequently, the method is used to study crack growth in edge cracked beams subjected to impact loading. Decorated speckle patterns in the crack tip vicinity at rates of 225,000 frames per second are registered. Two sets of images are recorded, one before the impact and another after the impact. Using the image correlation algorithms developed for this work, the entire crack tip deformation history, from the time of impact to complete fracture, is mapped. The crack opening displacements are then analyzed to obtain the history of failure characterization parameter, namely, the dynamic stress intensity factor. The measurements are independently verified successfully by a complementary numerical analysis of the problem.
机译:数字图像相关方法已扩展到瞬态变形的研究,例如与材料裂纹快速增长相关的变形。研究中使用了新近推出的旋转镜式多通道数字高速相机。首先描述校准成像系统的细节,并概述估计和校正光学通道中固有的未对准的方法。一系列基准实验用于确定所测位移的准确性。在位移测量中达到2%-6%的像素精度。随后,该方法用于研究边缘裂纹梁在冲击载荷作用下的裂纹扩展。记录裂纹尖端附近的装饰斑点图案,速率为每秒225,000帧。记录两组图像,一组在撞击前,另一组在撞击后。使用为这项工作开发的图像相关算法,可以绘制从冲击到完全断裂的整个裂纹尖端变形历史。然后分析裂纹开口位移以获得破坏特征参数的历史,即动应力强度因子。通过问题的补充数值分析,成功地独立地验证了测量结果。

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