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  • 苏勇 ( 特任副研究员 )

    的个人主页 http://faculty.ustc.edu.cn/suyong/zh_CN/index.htm

  •   特任副研究员
论文成果 当前位置: 中文主页 >> 科学研究 >> 论文成果
High-accuracy optical extensometer based on coordinate transform in two-dimensional digital image correlation
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DOI码:10.1016/j.optlaseng.2017.06.010
发表刊物:Optics and Lasers in Engineering
摘要:In the measurement of plate specimens, traditional two-dimensional (2D) digital image correlation (DIC) is challenged by two aspects: (1) the slant optical axis (misalignment of the optical camera axis and the object surface) and (2) out-of-plane motions (including translations and rotations) of the specimens. There are measurement errors in the results measured by 2D DIC, especially when the out-of-plane motions are big enough. To solve this problem, a novel compensation method has been proposed to correct the unsatisfactory results. The proposed compensation method consists of three main parts: 1) a pre-calibration step is used to determine the intrinsic parameters and lens distortions; 2) a compensation panel (a rigid panel with several markers located at known positions) is mounted to the specimen to track the specimen’s motion so that the relative coordinate transformation between the compensation panel and the 2D DIC setup can be calculated using the coordinate transform algorithm; 3) three-dimensional world coordinates of measuring points on the specimen can be reconstructed via the coordinate transform algorithm and used to calculate deformations. Simulations have been carried out to validate the proposed compensation method. Results come out that when the extensometer length is 400 pixels, the strain accuracy reaches 10 με no matter out-of-plane translations (less than 1/200 of the object distance) nor out-of-plane rotations (rotation angle less than 5°) occur. The proposed compensation method leads to good results even when the out-of-plane translation reaches several percents of the object distance or the out-of-plane rotation angle reaches tens of degrees. The proposed compensation method has been applied in tensile experiments to obtain high-accuracy results as well.
论文类型:期刊论文
文献类型:J
卷号:100
页面范围:61-70
是否译文:否
发表时间:2018-01-01
收录刊物:SCI
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