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Pipe Weld Investigation using Shearography

机译:使用剪切法进行管道焊接调查

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摘要

In this paper the full-field optical technique of shearography is used to fully characterise the surface strain of the region around a welded joint in a pipe, Shearography is an inter-ferometric optical technique sensitive to displacement gradient, a parameter that is closely related to the surface strain. The surface of the material at a welded joint is uneven, but measurements may still be performed using full-field non-contact optical methods. In this paper the authors present a multi-component shearography system, which measures the in- and out-of-plane displacement gradient components by determining three non-orthogonal displacement gradient components and performing a coordinate transformation. To compensate for non-planar object surfaces the coordinate transformation procedure incorporates a correction for the object shape, measured using the same apparatus. The instrument was used to determine the six components of displacement gradient, thereby fully characterising the surface strain. In comparison with resistance strain gauges, an accuracy of ±11 με was achieved over a limited measurement range.
机译:在本文中,剪切成像的全场光学技术用于全面表征管道中焊接接头周围区域的表面应变。剪切成像是一种对位移梯度敏感的干涉光学技术,该参数与位移梯度密切相关。表面应变。焊接接头处的材料表面不平坦,但仍可以使用全场非接触式光学方法进行测量。在本文中,作者提出了一种多分量剪切成像系统,该系统通过确定三个非正交位移梯度分量并执行坐标变换来测量平面内和平面外的位移梯度分量。为了补偿非平面的物体表面,坐标转换过程包括使用同一设备测量的物体形状校正。该仪器用于确定位移梯度的六个分量,从而充分表征表面应变。与电阻应变仪相比,在有限的测量范围内实现了±11με的精度。

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