Wang Huanqing, Wang Yonghong, Zhu Yilei, Sun Fangyuan, Wu Shuangle, Zhao Qihan
Appl Opt. 2020 Nov 20;59(33):10474-10482. doi: 10.1364/AO.405333.
Digital image correlation (DIC) technology is an optical measurement method of material strain displacement based on visible light illumination. With the increasing application of DIC technology in the field of high-temperature measurement, however, the effect of thermal disturbance on measurement accuracy becomes more and more serious. To solve this problem, a method to eliminate thermal disturbance in material measurements based on projection speckle is proposed. First, the gray surface information of two different colors is assigned to the surface of the test piece by artificial splashing and projector projection. The pictures are collected using a color camera, and the channels are separated for each frame of the picture. After that, the displacement field recorded by different channels can be obtained by DIC calculation so the thermal disturbance error can be separated from the real displacement and eliminated. Subsequently, an experimental system is built. Finally, the corrected results are compared with the true displacement value of the stage. The results show that the two sets of values are highly consistent, which verifies the feasibility and accuracy of the proposed method.
数字图像相关(DIC)技术是一种基于可见光照明的材料应变位移光学测量方法。然而,随着DIC技术在高温测量领域的应用日益增加,热干扰对测量精度的影响变得越来越严重。为了解决这个问题,提出了一种基于投影散斑消除材料测量中热干扰的方法。首先,通过人工喷洒和投影仪投影将两种不同颜色的灰度表面信息赋予试件表面。使用彩色相机采集图片,并对图片的每一帧进行通道分离。之后,通过DIC计算可以得到不同通道记录的位移场,从而将热干扰误差与真实位移分离并消除。随后,搭建了一个实验系统。最后,将校正结果与工作台的真实位移值进行比较。结果表明,两组值高度一致,验证了所提方法的可行性和准确性。