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Quantitative shearography: error reduction by using more than three measurement channels

机译:定量剪切成像:通过使用三个以上的测量通道来减少误差

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摘要

Shearography is a noncontact optical technique used to measure surface displacement derivatives. Full surface strain characterization can be achieved using shearography configurations employing at least three measurement channels. Each measurement channel is sensitive to a single displacement gradient component defined by its sensitivity vector. A matrix transformation is then required to convert the measured components to the orthogonal displacement gradients required for quantitative strain measurement. This transformation, conventionally performed using three measurement channels, amplifies any errors present in the measurement. This paper investigates the use of additional measurement channels using the results of a computer model and an experimental shearography system. Results are presented showing that the addition of a fourth channel can reduce the errors in the computed orthogonal components by up to 33percent and that, by using 10 channels, reductions of around 45percent should be possible.
机译:剪切成像是一种非接触式光学技术,用于测量表面位移导数。可以使用采用至少三个测量通道的剪切成像配置来实现全表面应变表征。每个测量通道对由其灵敏度矢量定义的单个位移梯度分量敏感。然后需要进行矩阵变换,以将测量的分量转换为定量应变测量所需的正交位移梯度。通常使用三个测量通道执行的转换会放大测量中存在的任何误差。本文利用计算机模型和实验剪切成像系统的结果,研究了其他测量通道的使用。结果表明,增加第四个通道可以将计算出的正交分量中的错误减少多达33%,并且通过使用10个通道,应该可以减少约45%。

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