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Non-invasive Mechanical Measurement for Transparent Objects by Digital Holographic Interferometry Based on Iterative Least-Squares Phase Unwrapping

机译:基于迭代最小二乘相位展开的数字全息干涉法对透明物体进行无创机械测量

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摘要

A non-invasive measurement method for transparent objects using digital holographic interferometry based on iterative least-squares phase unwrapping is presented. Holograms are captured and processed by digital method. The phase reconstructed from holograms is wrapped. Continual and real phase is obtained by phase unwrapping. In this paper iterative unwrapping of phase difference is combined with least-squares unwrapping to eliminate errors. The relations between the phase variation of object wave and the thickness deformation and stress of transparent object are given. A polymethyl methacrylate (PMMA) specimen with a hole under uniform tensile force is tested by this method. The experimental results are in accordance with the theoretical ones. That means the method is correct.
机译:提出了一种基于迭代最小二乘相位展开的数字全息干涉法对透明物体的无创测量方法。全息图通过数字方法捕获和处理。从全息图重建的相位被包裹。连续相位和真实相位是通过相位展开获得的。本文将相位差的迭代解包与最小二乘解包相结合以消除误差。给出了物波的相位变化与透明物体的厚度变形和应力之间的关系。用这种方法测试在均匀拉伸力下有孔的聚甲基丙烯酸甲酯(PMMA)样品。实验结果与理论吻合。这意味着该方法是正确的。

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