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Three dimensional stress intensity factor for large arrays of radial internal surface cracks in a cylindrical pressure vessel

机译:圆柱形压力容器内大径向内表面裂纹的三维应力强度因子

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摘要

The objective of this study is to present the mode I stress intensity factor distribution (SIF) along the crack-front for a wide array of semicircular and semi-elliptical surface cracks inside of a pressurized thick-walled cylinder. A three-dimensional finite element package ANSYS is used to evaluate the SIF for multicracked cylinder with number of cracks from n=1 to 128, the ratio of crack-depth to the wall thickness a/t=0.05 to 0.6, the ellipticity of the crack (the crack-depth to the semi-crack length) a/c=0.2 to 1.5, the ratio of the outer to the inner radius ro/ ri=2.A substructuring technique is introduced which solved a coarse model meshed with ten-node isoparametric elements and applied the resulting displacements in the boundary surface of a submodel which is built employing singular elements along the crack-front to produce the 1/√r singularity . The SIF is evaluated using nodal-displacement method.To validate the modeling and analysis procedure of the present results various configurations were solved using this method and compared to other finite element solutions. The present results were in very good agreement: less than 5 % comparing with Raju and Newmanu27s results and within 8 % of Kirkhopeu27s results.An empirical equation to calculate the maximum SIF, was developed in this study. The equation was obtained by nonlinear fitting of the finite element results and the error was within ± 5.7 %.
机译:这项研究的目的是为加压厚壁圆柱体内的各种半圆形和半椭圆形表面裂纹沿裂纹前沿的模式I应力强度因子分布(SIF)。三维有限元程序包ANSYS用于评估裂纹数从n = 1到128,裂纹深度与壁厚之比a / t = 0.05到0.6,椭圆形的多裂纹圆柱体的SIF。裂纹(裂纹深度与半裂纹长度之比)a / c = 0.2到1.5,外半径与内半径之比ro / ri = 2。引入了一种子结构化技术,解决了与十节点等参单元,并将结果位移应用到子模型的边界表面中,该子模型使用沿裂纹前沿的奇异元素构建,以产生1 /√r奇异性。使用节点位移法对SIF进行评估。为验证本结果的建模和分析过程,使用此方法求解了各种配置,并与其他有限元解决方案进行了比较。目前的结果非常吻合:与Raju和Newman的结果相比不到5%,在Kirkhope的结果中不到8%。本研究建立了计算最大SIF的经验方程。该方程是通过有限元结果的非线性拟合获得的,误差在±5.7%之内。

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    Pierola Javier;

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  • 年度 1993
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