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Full surface strain measurement using shearography

机译:使用剪切成像的全表面应变测量

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Shearography is a full-field optical technique usually used for the determination of surface strain. Correlation of interferometric speckle patterns recorded before and after the object deformation yields fringes sensitive to displacement gradient, from which the surface strain can be calculated. A full analysis of the surface strain requires the measurement of six displacement gradient components, using three illumination directions and two directions of applied shear. Additionally shearography may be used to measure surface slope by correlation of interferograms obtained before and after a source displacement to yield fringes sensitive to surface slope. Integration of the slope yields the object shape. In this paper shearography is used to measure the six components of displacement gradient of a gas main pipe under pressure, the surface slope of the pipe and the shape of the pipe. The object slope and shape are used to correct the displacement gradient measurements for variation in sensitivity vector across the object surface and for sensitivity variations due to the dependence of the applied shear upon the local slope of the object surface. A coordinate transformation, incorporating the object shape information, is used to obtain the in-plane and out-of-plane displacement gradients relative to the local profile of the surface.
机译:剪切成像是通常用于确定表面应变的全场光学技术。在物体变形之前和之后记录的干涉斑点图案的相关性会产生对位移梯度敏感的条纹,由此可以计算出表面应变。全面分析表面应变需要使用三个照明方向和两个施加剪切方向来测量六个位移梯度分量。另外,可以通过在源位移之前和之后获得的干涉图的相关性,使用剪切成像法来测量表面坡度,以产生对表面坡度敏感的条纹。斜率的积分产生物体的形状。在本文中,剪切成像法用于测量气体主管在压力下的位移梯度,管道的表面坡度和管道的形状的六个分量。物体斜率和形状用于校正位移梯度测量值,以用于整个物体表面的灵敏度矢量变化以及由于施加的剪切力对物体表面局部斜率的依赖性而导致的灵敏度变化。包含对象形状信息的坐标变换用于获得相对于表面局部轮廓的平面内和平面外位移梯度。

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