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Developing digital image correlation techniques for using water immersion to improve strain field measurement in micro-scale

机译:开发数字图像相关技术以使用水浸法改善微观尺度的应变场测量

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Light reflection on the surface of test specimen leads to analyse error of strain measurement by using digital image correlation (DIC) technique in micro-scale test. In this study, water immersion is firstly proposed to combine with DIC technique to reduce the influence of light reflection on the surfaces of measured sample in a micro-scale experiment. Then, all test images are transformed into two dimensional K-space to compare the influence degree of light reflection on the various configurations of test specimens. Furthermore, the effects of light projection direction and the angle of light source are investigated into the analysis accuracy of strain measurement for the various configurations of test specimens. The test and analysis results from K-space indicate that the frequency signals of images, measured from test samples, observed in air are higher than the results from this proposed method. Otherwise, no matter how the variation of the light projection direction and the angle of light source are, the standard deviations of strain from this proposed method are diminished, reduced to below 0.001. The analysis accuracies of strain analysis for using water immersion method have been verified.
机译:试样表面上的光反射会导致在微尺度测试中使用数字图像相关(DIC)技术分析应变测量的误差。在这项研究中,首次提出将水浸与DIC技术结合使用,以在微尺度实验中减少光反射对被测样品表面的影响。然后,将所有测试图像转换为二维K空间,以比较光反射对测试样品各种配置的影响程度。此外,还研究了光投射方向和光源角度对各种试样形式的应变测量分析精度的影响。来自K空间的测试和分析结果表明,在空气中观察到的从测试样本中测得的图像的频率信号高于该方法的结果。否则,无论光投射方向和光源角度如何变化,该提议方法的应变标准偏差都会减小,减小到0.001以下。验证了使用水浸法进行应变分析的分析精度。

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