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Three-dimensional stress state around quarter-elliptical corner cracks in elastic plates subjected to uniform tension loading

机译:均匀拉伸载荷作用下弹性板四分之一椭圆形拐角处的三维应力状态

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摘要

Detailed full-field three-dimensional (3D) finite element analyses have been conducted to study the out-of-plane stress constraint factor T_z around a quarter-elliptical corner crack embedded in an isotropic elastic plate subjected to uniform tension loading. The distributions of T_z are studied in the forward section (0 deg < = 8 < = 90 deg) of the corner cracks with aspect ratios ale of 0.2, 0.4, 0.5, 0.6, 0.8 and 1.0. In the normal plane of the crack front line, T_z drops radially from Poisson's ratio at the crack tip to zero beyond certain radial distances. Strong 3D zones (T_z > 0) exist within a radial distance r/a of about 4.6-0.7 for a/c = 0.2-1.0 along the crack front, despite the stress-free boundary conditions far away. At the same radial distance along the crack front in the 3D zones, T_z increases from zero on one free surface to a peak value in the interior, and then decreases to zero on another free surface. The distributions of T_z near the corner points are also discussed. Empirical formulae describing the 3D distributions of T_z are obtained by fitting the numerical results, which prevail with a sufficient accuracy in the valid range of 0.2 < = ale < =1.0 and 0 deg < = 9 < = 90 deg except very near the free surfaces where T_z is extremely low. Combined with the K-T solution, the transition of approximate plane-stress state near the surfaces to plane-strain state in the interior can be characterized more accurately.
机译:已经进行了详细的全场三维(3D)有限元分析,以研究在均匀拉伸载荷作用下嵌于各向同性弹性板中的四分之一椭圆形角裂纹周围的平面外应力约束因子T_z。在长径比ale为0.2、0.4、0.5、0.6、0.8和1.0的情况下,在拐角裂纹的前部(0度<= 8 <= 90度)中研究了T_z的分布。在裂纹前线的法线平面中,T_z从裂纹尖端的泊松比径向减小到超过一定的径向距离为零。尽管无应力边界条件距离很远,但沿裂纹前沿的a / c = 0.2-1.0时,在大约4.6-0.7的径向距离r / a内仍存在强3D区域(T_z> 0)。在3D区域中沿着裂纹前沿的相同径向距离处,T_z从一个自由表面上的零增加到内部的峰值,然后在另一个自由表面上减小为零。还讨论了拐点附近的T_z分布。通过拟合数值结果获得描述T_z的3D分布的经验公式,该公式在0.2 <= ale <= 1.0和0 deg <= 9 <= 90 deg的有效范围内具有足够的准确性,但非常接近自由表面T_z极低。结合K-T解决方案,可以更准确地表征表面附近的近似平面应力状态到内部的平面应变状态的过渡。

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