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Stress intensity factors for interaction of surface crack and embedded crack in a cylindrical pressure vessel

机译:圆柱压力容器中表面裂纹和嵌入裂纹相互作用的应力强度因子

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This paper analyzes the interaction of coplanar semi-elliptical surface crack and embedded elliptical crack in a cylindrical pressure vessel. No numerical solution appears to be available in the literature so far for this kind of interaction. The analyzed ratios of the crack depth to crack length are 0.25, 0.5 and 1.0; the distances between two cracks are 0.5, 1.0 and 2.0. In total 54 crack configurations are analyzed and the stress intensity factors along the crack front are presented. The interaction increases the stress intensity factors along the crack fronts for both the surface crack and the embedded one, compared with the single surface crack and single embedded one. And, for the given crack dimensions, the stress intensity factors for both the surface crack and embedded crack increase with the decrease of the distance between tow cracks. In the end of the text, an interpolating technique is presented for estimating the stress intensity factors for the interaction of cracks whose ratios of crack depth to crack length are different from 0.25, 0.5 and 1.0. The numerical analyses are carried out by the hybrid boundary element method.
机译:本文分析了圆柱压力容器中共面半椭圆形表面裂纹和嵌入的椭圆形裂纹的相互作用。迄今为止,文献中似乎没有针对这种相互作用的数值解。裂纹深度与裂纹长度的分析比率为0.25、0.5和1.0。两个裂纹之间的距离为0.5、1.0和2.0。总共分析了54个裂纹形态,并给出了沿裂纹前沿的应力强度因子。与单个表面裂纹和单个埋入裂纹相比,这种相互作用增加了沿表面裂纹和埋入裂纹沿裂纹前沿的应力强度因子。并且,对于给定的裂纹尺寸,表面裂纹和埋入裂纹的应力强度因子都随着牵引裂纹之间距离的减小而增加。在本文的最后,提出了一种插值技术,用于估算裂纹深度与裂纹长度之比分别为0.25、0.5和1.0的裂纹相互作用的应力强度因子。数值分析采用混合边界元法。

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