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Simultaneous acquisition of 3D shape and deformation by combination of interferometric and correlation-based laser speckle metrology

机译:结合干涉法和基于相关性的激光散斑计量技术同时获取3D形状和变形

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摘要

A metrology system combining three laser speckle measurement techniques for simultaneous determination of 3D shape and micro- and macroscopic deformations is presented. While microscopic deformations are determined by a combination of Digital Holographic Interferometry (DHI) and Digital Speckle Photography (DSP), macroscopic 3D shape, position and deformation are retrieved by photogrammetry based on digital image correlation of a projected laser speckle pattern. The photogrammetrically obtained data extend the measurement range of the DHI-DSP system and also increase the accuracy of the calculation of the sensitivity vector. Furthermore, a precise assignment of microscopic displacements to the object’s macroscopic shape for enhanced visualization is achieved. The approach allows for fast measurements with a simple setup. Key parameters of the system are optimized, and its precision and measurement range are demonstrated. As application examples, the deformation of a mandible model and the shrinkage of dental impression material are measured.
机译:提出了一种结合了三种激光散斑测量技术的测量系统,可同时确定3D形状以及微观和宏观变形。虽然微观变形是通过数字全息干涉术(DHI)和数字斑点摄影(DSP)的组合确定的,但宏观3D形状,位置和变形是通过摄影测量法基于投影的激光斑点图案的数字图像相关性来检索的。通过摄影测量获得的数据扩展了DHI-DSP系统的测量范围,并且还提高了灵敏度矢量的计算精度。此外,还可以将微观位移精确地分配给对象的宏观形状,以增强可视化效果。该方法允许通过简单的设置进行快速测量。优化了系统的关键参数,并演示了其精度和测量范围。作为应用示例,可​​测量下颌模型的变形和牙科印模材料的收缩率。

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