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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A comparative study of techniques of distant reconstruction of displacement and strain fields using the DISTRESS simulator
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A comparative study of techniques of distant reconstruction of displacement and strain fields using the DISTRESS simulator

机译:使用DISTRESS模拟器远距离重建位移和应变场技术的比较研究

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Reconstruction and monitoring of displacement and strain fields is an important problem in engineering. We analyze the remote and non-obtrusive method of Digital Image Correlation (DIC) in 2D based on photogrammetry. The method involves covering the photographed surface with a pattern of speckles and comparing the images taken before and after the deformation. The analysis is based on a specially developed Digital Image Synthesizer To Reconstruct Strain in Solids (DISTRESS) Simulator to generate synthetic images of displacement and stress fields in two dimensions in order to investigate the intrinsic accuracy of the existing variants of DIC. We investigated the Basic DIC and a commercial software VIC 2d, both based on displacement field reconstruction with post processing strain determination based on numerical differentiation. We also investigated what we call the Extended DIC where the strain field is determined independently of the displacement field. While the Basic DIC is faster, the Extended DIC delivers the best accuracy. The speckle pattern is found to be playing a critical role in achieving high accuracy for DIC. Increase in the subset size for DIC does not significantly improves the accuracy, while the smallest subset size depends on the speckle pattern and speckle size. Increase in the overall image size provides more details but does not play significant role in improving the accuracy, while significantly increasing the computation cost. We observed that it is not reliable to measure very small strains using grayscale images in DIC. Thus, we propose Color DIC using color images and found that it improves the accuracy in measuring small strains. (C) 2016 Elsevier GmbH. All rights reserved.
机译:位移和应变场的重建和监测是工程中的重要问题。我们基于摄影测量技术分析了二维数字图像相关性(DIC)的远程和非干扰性方法。该方法包括用斑点图案覆盖拍摄的表面,并比较变形前后的图像。该分析基于专门开发的用于重建固体应变的数字图像合成器(DISTRESS)仿真器,以生成二维位移和应力场的合成图像,以研究DIC现有变体的固有精度。我们研究了基本DIC和商业软件VIC 2d,两者均基于位移场重构以及基于数值微分的后处理应变确定。我们还研究了所谓的扩展DIC,其中应变场的确定与位移场无关。基本DIC更快,而扩展DIC则可提供最佳精度。发现斑点图案对于实现DIC的高精度起着至关重要的作用。 DIC的子集大小增加不会显着提高准确性,而最小的子集大小取决于斑点图案和​​斑点大小。整体图像尺寸的增加会提供更多的细节,但在提高准确性方面不会发挥重要作用,同时会大大增加计算成本。我们观察到在DIC中使用灰度图像测量很小的应变是不可靠的。因此,我们提出了使用彩色图像的彩色DIC,并发现它提高了测量小应变的精度。 (C)2016 Elsevier GmbH。版权所有。

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