首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Digital image correlation for large deformation applied in Ti alloy compression and tension test
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Digital image correlation for large deformation applied in Ti alloy compression and tension test

机译:钛合金压缩拉伸试验中大变形的数字图像关联

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摘要

In this paper, digital speckle correlation is used in the measurement of Ti alloy compression and tension test. The key technologies applied in the measurement are discussed in detail, including camera calibration with telephoto lens and digital image correlation in large deformation. Single camera self-calibration algorithm based on photogrammetry is proposed. In the algorithm, the interior parameters of camera are estimated without calibrated object, using the bundle adjustment technique, so the 3-D coordinates of calibration target points are not needed in advance to get a reliable camera calibration result. An updating reference image scheme could be employed to deal with large deformation situation. A large deformation measurement scheme, updating reference image scheme, is proposed in this paper. The undeformed image is used as reference in correlation at first. Only for extremely large deformation field, in which iteration of correlation is not convergent, the reference image is updated to the image of previous deformed stage. Using this method, not only extremely large deformation can be measured successfully but also the accumulated error could be controlled. The 75 mm lens is calibrated in the measurement and compared the result with extensometer and un-calibrated image. Experimental results show that up to 150% tensile deformation and 50% compression deformation can be measured successfully.
机译:本文将数字散斑相关性用于钛合金压缩和拉伸试验的测量。详细讨论了在测量中应用的关键技术,包括使用远摄镜头的相机校准和大变形中的数字图像相关性。提出了一种基于摄影测量的单相机自校准算法。该算法不需要使用被摄体校正技术就可以估计没有校正对象的摄像机内部参数,因此不需要预先获得校正目标点的3D坐标即可得到可靠的摄像机校正结果。可以采用更新的参考图像方案来处理大变形情况。提出了一种大变形测量方案,即更新参考图像方案。首先将未变形的图像用作相关参考。仅对于极大的变形场,其中相关迭代不收敛,参考图像将更新为先前变形阶段的图像。使用这种方法,不仅可以成功地测量出非常大的变形,而且可以控制累积的误差。 75 mm镜头在测量中经过校准,并将结果与​​引伸计和未经校准的图像进行比较。实验结果表明,可以成功测量高达150%的拉伸变形和50%的压缩变形。

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