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Speckle interferometry with temporal phase evaluation for measuring large-object deformation

机译:具有时间相位评估的散斑干涉测量法,用于测量大物体变形

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We propose a new method for measuring large-object deformations by using temporal evolution of the speckles in speckle interferometry. The principle of the method is that by deforming the object continuously, one obtains fluctuations in the intensity of the speckle. A large number of frames of the object motion are collected to be analyzed later. The phase data for whole-object deformation are then retrieved by inverse Fourier transformation of a filtered spectrum obtained by Fourier transformation of the signal. With this method one is capable of measuring deformations of more than 100 mu m, which is not possible using conventional electronic speckle pattern interferometry. We discuss the underlying principle of the method and the results of the experiments. Some nondestructive testing results are also presented. (C) 1998 Optical Society of America. [References: 12]
机译:我们提出了一种利用斑点干涉法中斑点的时间演化来测量大物体变形的新方法。该方法的原理是通过使物体连续变形,获得散斑强度的波动。收集大量物体运动的帧以供稍后分析。然后,通过对信号进行傅里叶变换而获得的滤波频谱进行逆傅里叶变换,来获取整个对象变形的相位数据。使用这种方法,能够测量超过100微米的变形,这是使用常规电子散斑图案干涉法无法实现的。我们讨论了该方法的基本原理以及实验结果。还提供了一些非破坏性的测试结果。 (C)1998年美国眼镜学会。 [参考:12]

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