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Photoelastic Analysis of Stress Frozen Slices using Five-step Method

机译:五步法分析应力冻结切片的光弹性

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Digital photoelasticity is a whole field experimental technique which can analyze both 2-D and 3-D models. In this paper, stress frozen 3-D models are sliced mechanically and the whole field principal stress differences (Isochromatics) and principal stress directions (Isoclinics) are evaluated by capturing only five images using the standard optical arrangements of a conventional polariscope. The wrapped isoclinic values obtained by processing the first four colour polarization stepped images in the range -π/4 to +π/4 are unwrapped using adaptive quality guided phase unwrapping algorithm to get isoclinics in the range of -π/2 to +π/2. The total fringe order is evaluated by three fringe photoelasticity or RGB photoelasticity with its latest developments like colour adaptation combined with refined three fringe photoelasticity. The methodology is validated for two slices cut from aero-structural components.
机译:数字光弹性是一种可以分析2-D和3-D模型的全场实验技术。在本文中,对应力冻结的3-D模型进行了机械切片,并使用常规偏振镜的标准光学装置仅捕获了五个图像,从而评估了整个场的主应力差(等色)和主应力方向(等斜线)。使用自适应质量导引相位展开算法对通过处理-π/ 4至+π/ 4范围内的前四个彩色偏振阶梯图像获得的环绕等斜度值进行展开,以获取-π/ 2至+π/范围内的等斜度2。总条纹顺序由三条纹光弹性或RGB光弹性评估,其最新发展是例如色彩适应与精细的三条纹光弹性相结合。该方法论已针对从航空结构部件上切下的两个部分进行了验证。

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