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Three-dimensional deformation field measurement with digital speckle correlation

机译:具有数字散斑相关性的三维变形场测量

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Digital speckle correlation is based on a detailed analysis of changes in speckle images that are recorded from laser-illuminated rough surfaces. The two in-plane components are obtained by cross-correlation of corresponding subimages, a method also known as digital speckle photography. The local gradient of the hitherto inaccessible out-of-plane component is determined from the characteristic dependence of the speckle correlation on the spatial frequency. A detailed experimental study is carried out to analyze the new technique for systematic and random measuring errors. For moderate decorrelation the accuracy of the out-of-plane measurement is better than λ/10 and thus comparable with interferometric techniques. Yet the extremely simple and robust optical setup is suited to nondestructive-testing applications in harsh environments. The quality of the deformation maps is demonstrated in a practical application.
机译:数字散斑相关性基于对从激光照射的粗糙表面记录的散斑图像变化的详细分析。通过对应子图像的互相关获得这两个平面内分量,该方法也称为数字散斑摄影。根据散斑相关性对空间频率的特征依赖性,确定迄今无法到达的平面外分量的局部梯度。进行了详细的实验研究,以分析针对系统误差和随机测量误差的新技术。对于适度的去相关,面外测量的精度优于λ/ 10,因此可与干涉技术相媲美。然而,极其简单且坚固的光学装置适合于恶劣环境下的非破坏性测试应用。在实际应用中证明了变形图的质量。

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