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Non destructive testing by digital shearography using a Savart plate

机译:使用Savart平板通过数字剪切成像进行的无损检测

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Shearography is a growing optical technique in the field of non-destructive testing (NDT). Hololab developed an out of plane, in line and almost common path interferometer based on polarization states separation using a coated prism for digital phase-shifting shearography. This setup is efficient but does not allow varying the shearing direction that is an important parameter for defects detection and quantification.To overcome this disadvantage, the coated prism is substituted by a Savart plate device that allows scanning several shearing directions by rotating the device around the light propagation axis. The behaviour of the Savart plate as a shearing device is experimentally analyzed to optimize its integration within the interferometer. Recorded phasemaps in NDT for different shearing directions are presented.
机译:剪切成像是无损检测(NDT)领域中一种正在发展的光学技术。 Hololab基于偏振态分离技术开发出了一种平面外,直线型和几乎通用的干涉仪,该偏振仪使用了用于数字相移剪切成像的镀膜棱镜。这种设置是有效的,但是不允许改变剪切方向,这是缺陷检测和量化的重要参数。 为了克服此缺点,镀膜棱镜由Savart平板设备代替,该设备可以通过围绕光传播轴旋转设备来扫描多个剪切方向。实验分析了Savart板作为剪切装置的行为,以优化其在干涉仪中的集成度。介绍了在NDT中记录的不同剪切方向的相位图。

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