Abstr'/> The depth measurement of internal defect based on laser speckle shearing interference
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The depth measurement of internal defect based on laser speckle shearing interference

机译:基于激光散斑剪切干扰的内部缺陷的深度测量

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Abstract Speckle shearing interference has been widely used in non-destructive testing (NDT) as a useful NDT tool for its 阿advantages such as full-field, non-contacting measurement and so on. It reveals internal defect of an object by identifying defect-induced deformation anomalies. The location and size of internal defects are critical factors in determining the stability of the performance and the service life of the workpiece. This paper put forward a method of the depth measurement of internal defect based on laser speckle shearing interference. The measurement of defect depth is achieved by establishing the mechanical model which contains defect depth, out-of-plane displacement and load conditions, etc., and combining the relevant image information obtained from speckle pattern. The measurement error is less than 10%. The experiments demonstrate that it has a good consistency between the actual depth and the measurement result obtained by the method of this paper. Highlights ? A measuring method of internal defect depth based on laser speckle is proposed.
机译:<![cdata [ 抽象 散斑剪切干扰已被广泛用于非破坏性测试(NDT)作为其AA优势(如全场)的有用NDT工具,不接触测量等。通过识别缺陷诱导的变形异常,它揭示了物体的内部缺陷。内部缺陷的位置和尺寸是确定性能稳定性和工件的使用寿命的关键因素。本文提出了一种基于激光散斑剪切干扰的内部缺陷深度测量方法。通过建立包含缺陷深度,外平移位移和负载条件等的机械模型来实现缺陷深度的测量,并组合从散斑图案获得的相关图像信息。测量误差小于10%。实验表明,通过本文方法获得的实际深度和测量结果之间具有良好的一致性。 突出显示 提出了一种基于激光散斑的内部缺陷深度的测量方法。

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