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Fatigue crack growth behaviour of semi-elliptical surface cracks for an API 5L X65 gas pipeline under tension

机译:张力下API 5L X65气体管道半椭圆形表面裂纹的疲劳裂纹生长行为

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The paper is presenting the fatigue crack growth (FCG) behavior of semi-elliptical surface cracks for API X65 gas pipeline using S-version FEM. A method known as global-local overlay technique was used in this study to predict the fatigue behavior that involve of two separate meshes each specifically for global (geometry) and local (crack). The pre-post program was used to model the global geometry (coarser mesh) known as FAST including the material and boundary conditions. Hence, the local crack (finer mesh) will be defined the exact location and the mesh control accordingly. The local mesh was overlaid along with the global before the numerical computation taken place to solve the engineering problem. The stress intensity factors were computed using the virtual crack closure-integral method (VCCM). The most important results is the behavior of the fatigue crack growth, which contains the crack depth (a), crack length (c) and stress intensity factors (SIF). The correlation between the fatigue crack growth and the SIF shows a good growth for the crack depth (a) and dissimilar for the crack length (c) where stunned behavior was resulted. The S-version FEM will benefiting the user due to the overlay technique where it will shorten the computation process.
机译:本文使用S-Version FEM呈现API X65气体管道的半椭圆形表面裂缝的疲劳裂纹生长(FCG)行为。在该研究中使用了一种称为全局局部覆盖技术的方法,以预测涉及两个独立网格的疲劳行为,每个啮合物专门用于全局(几何)和局部(裂缝)。邮寄前程序用于模拟已知的全局几何(较粗糙网格),包括材料和边界条件。因此,局部裂缝(更精细的网格)将定义确切的位置和网格控制相应。本地网格与全局一起覆盖,然后在数值计算到解工程问题之前。使用虚拟裂缝闭合 - 积分法(VCCM)计算应力强度因子。最重要的结果是疲劳裂纹生长的行为,其含有裂纹深度(a),裂缝长度(c)和胁迫强度因子(sif)。疲劳裂纹生长与SIF之间的相关性显示出裂缝深度(a)和裂缝长度(c)产生的良好生长,其中震动的行为是导致的。由于它将缩短计算过程,S-Version FEM将使用户受益于用户。

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