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Nondestructive testing using temporal phase evaluation in speckle interferometry

机译:散斑干涉法中使用时相评估的无损检测

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摘要

A novel nondestructive testing (NDT) method is reported in which temporal evolution of the speckles in speckle interferometry is used to measure large object deformations. The basic principle of the method is that continuous object movement introduces fluctuations in the phase of the speckle and is recorded as intensity modulation. Acquiring a large number of frames of the object motion, the phase data for the whole object deformation are then retrieved by the Fourier transformation technique. The method is capable of measuring more than 100 mu m in-plane and out-of-plane deformation with speckle interferometry and more than 500 mu m far speckle shearing interferometry. The authors discuss the NDT results obtained with the three methods and make some relative comparisons of each. [References: 13]
机译:报道了一种新颖的非破坏性测试(NDT)方法,其中斑点干涉法中斑点的时间演变用于测量大物体变形。该方法的基本原理是连续的物体运动会在斑点的相位中引入波动,并记录为强度调制。获取大量物体运动帧,然后通过傅立叶变换技术检索整个物体变形的相位数据。该方法能够使用散斑干涉测量法和500微米远散斑剪切干涉法测量100微米以上的面内和面外变形。作者讨论了通过三种方法获得的NDT结果,并对每种方法进行了一些相对比较。 [参考:13]

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