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Determination of Stress Intensity Factor K-III for Three-Dimensional Crack by Using Caustic Method in Combination with Stress-Freezing and Stress-Releasing Technique

机译:苛性碱法结合应力冻结与应力释放技术确定三维裂纹的应力强度因子K-III

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摘要

In this paper, an experimental technique to determine the stress intensity factor K-III for three-dimensional cracks using the method of reflected caustics in combination with the photoelastic stress-freezing and stress-releasing techniques is presented. The experimental model is a cylindrical bar with a three-dimensional surface crack under a load of pure torsion. To obtain the caustic pattern, a slice cut from the frozen model is annealed to release the frozen-stress. The results of this experimental method coincide favorably with the theoretical analysis results of Tweed and Rooke. Moreover, the mixed-mode stress intensity factors K-II and K-III of the three-dimensional crack are separately determined using the photoelastic and caustic methods. By using the present experimental technique, the mixed-mode stress intensity factors K-II and K-III for a three-dimensional crack are found to be easily separated.
机译:本文提出了一种使用反射腐蚀法结合光弹性应力冻结和应力释放技术确定三维裂纹应力强度因子K-III的实验技术。实验模型是圆柱杆,在纯扭转载荷下具有三维表面裂纹。为了获得苛性图案,将从冷冻模型切下的切片退火以释放冷冻应力。该实验方法的结果与Tweed和Rooke的理论分析结果相吻合。此外,使用光弹性和苛性碱法分别确定三维裂纹的混合模式应力强度因子K-II和K-III。通过使用本实验技术,发现三维裂纹的混合模式应力强度因子K-II和K-III容易分离。

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