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Accurate Strain Distribution Measurement Based on the Sampling Moire Method

机译:基于采样莫尔法的准确应变分布测量

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To obtain accurate measurement of non-uniform strains over the entire surface of materials or structures, in this study, the sampling moire method is applied to two-dimensional measurement of in-plane displacement and strain distributions. The two-dimensional displacement distribution is obtained by detecting the phase difference of the moire fringes, and the strain distribution is determined by measuring the change of grating pitches on the specimen in vertical and horizontal directions before and after deformations. A compensation technique of fringe order is proposed to eliminate the pitch error of fabricated grating. In addition, a spatial filtering procedure in phase distribution is suggested to reduce the random measurement error. The deformations of an aluminum specimen with a through hole under different tensile loads were measured by the proposed method. Experimental results indicated that the measurement accuracy of strain distribution can be dramatically improved by combination the above-mentioned two techniques. This method is useful to evaluate mechanical properties of various materials under tension/compression or heating/cooling testing.
机译:为了在本研究中获得整个材料表面或结构的整个表面的无均匀菌株的精确测量,采样莫尔方法应用于面内位移和应变分布的二维测量。通过检测莫尔条纹的相位差获得二维位移分布,并且通过测量在变形之前和之后的垂直和水平方向上的样本上的栅格间距的变化来确定应变分布。建议使用条纹顺序的补偿技术来消除制造光栅的间距误差。另外,建议在相位分布中进行空间滤波过程以减少随机测量误差。通过所提出的方法测量不同拉伸载荷下的铝样品的变形。实验结果表明,通过组合上述两种技术,可以显着改善应变分布的测量精度。该方法可用于评估张力/压缩或加热/冷却测试下各种材料的机械性能。

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