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采用三波长傅里叶偏振测量法的全场自动光弹性测量

Full-field automated photoelasticity by fourier polarimetry with three wavelengths.

作者信息

Berezhna S, Berezhnyy I, Takashi M, Voloshin A

出版信息

Appl Opt. 2001 Jan 1;40(1):52-61. doi: 10.1364/ao.40.000052.

DOI:10.1364/ao.40.000052
PMID:18356973
Abstract

The search for fast, precise, and robust testing techniques remains an important problem in automated full-field photoelasticity. The polarizer-sample-analyzer (PSA)-based three-wavelength polarimetric method presented here employs discrete Fourier analysis and a spectral content unwrapping algorithm to provide completely automatic, simple, fast, and accurate determination of both photoelastic parameters. Fourier analysis of experimental data and a three-wavelength approach reduce the effect of noise and efficiently cope with poor accuracy in regions of both isochromatic and isoclinic maps. Because any polarimetric technique yields the phase value in the principal range of the corresponding trigonometric function, the final step in data processing is phase unwrapping. Because of the good quality of the wrapped phase map and because each point is processed independently, our suggested three-wavelength unwrapping algorithm exhibits a high level of robustness. Unlike some other PSA three-wavelength techniques, the given algorithm here solves the problem of phase unwrapping completely. Specifically, it converts experimentally obtained arccosine-type phase maps directly into full phase value distributions, skipping the step of generating an arctangent-type ramped phase map and resorting to other unwrapping routines for final data processing. The accuracy of the new technique has been estimated with a Babinet-Soleil compensator. Test experiments with the disk in diametric compression and a quartz plate have proved that the technique can be used for precise determination of the isoclinic angle and relative retardation, even for large values of the latter.

摘要

在自动全场光弹性中,寻找快速、精确且稳健的测试技术仍然是一个重要问题。本文提出的基于偏振器 - 样品 - 分析器(PSA)的三波长偏振测量方法采用离散傅里叶分析和光谱内容展开算法,以完全自动、简单、快速且准确地确定两个光弹性参数。对实验数据进行傅里叶分析以及采用三波长方法可降低噪声影响,并有效应对等色线图和等倾线图区域精度较差的问题。由于任何偏振测量技术都会在相应三角函数的主范围内产生相位值,所以数据处理的最后一步是相位展开。由于包裹相位图质量良好且每个点都是独立处理的,我们提出的三波长展开算法具有很高的稳健性。与其他一些PSA三波长技术不同,这里给出的算法完全解决了相位展开问题。具体而言,它将实验获得的反余弦型相位图直接转换为全相位值分布,跳过了生成反正切型倾斜相位图的步骤,并且无需借助其他展开程序进行最终数据处理。已使用巴比涅 - 索列尔补偿器估计了新技术的精度。对处于径向压缩的圆盘和石英板进行的测试实验证明,该技术可用于精确测定等倾角和相对延迟,即使对于较大的相对延迟值也是如此。

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