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Stress intensity factors of semi-elliptical surface cracks in pressure vessels by global-local finite element methodology

机译:整体局部有限元方法在压力容器中半椭圆形表面裂纹的应力强度因子

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摘要

In the present study the problem of calculation of the stress intensity factors (SIF) of semi-elliptical cracks located in the stress concentration areas of a pressure vessel is numerically solved by advanced global-local finite element (FE) analysis. The common characteristic of the cases solved is that the stress field at the crack area varies along the axial, the circumferential, as well as, the through-the-thickness directions. SIF solutions for such problems are not available, neither analytically, nor numerically, as the currently existing solutions in the literature (numerical results, Newman-Raju empirical equations, weight function solutions, etc.) are only valid for uniform stress distribution along the axial and circumferential directions of the pressure vessel and allow variation only through-the-thickness. The crack locations considered are the intersection of the cylinder to a nozzle and the connection of the cylinder with its hemi-spherical ends. The stress intensity factors are presented in a suitable table format for various geometrical configurations of both the pressure vessel and the semi-elliptical crack, thus providing a useful tool for the fracture mechanics design of cracked pressure vessels. The modeling details of the sub-structuring methodology, employed in the analysis, are extensively discussed and the numerical approach is proven to be very efficient for the SIF calculation of pressure vessel semi-elliptical cracks.
机译:在本研究中,通过高级全局局部有限元(FE)分析以数值方式解决了位于压力容器应力集中区域的半椭圆形裂纹的应力强度因子(SIF)的计算问题。解决的情况的共同特征是,裂纹区域的应力场沿轴向,周向以及整个厚度方向变化。对于此类问题的SIF解决方案既无分析方法,也无数值方法,因为文献中当前存在的解决方案(数值结果,Newman-Raju经验方程式,权函数解等)仅对沿轴向的均匀应力分布有效。和压力容器的圆周方向,并且仅允许在整个厚度范围内变化。所考虑的裂纹位置是圆柱体与喷嘴的交点以及圆柱体与半球形端部的连接。应力强度因子以合适的表格格式显示了压力容器和半椭圆形裂纹的各种几何构造,从而为裂纹压力容器的断裂力学设计提供了有用的工具。分析中使用的子构造方法的建模细节已得到广泛讨论,并且数值方法被证明对于压力容器半椭圆形裂纹的SIF计算非常有效。

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