首页> 外文期刊>International Journal of Pressure Vessels and Piping >Global limit load solutions for thick-walled cylinders with circumferential cracks under combined internal pressure, axial force and bending moment - Part I: Theoretical solutions
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Global limit load solutions for thick-walled cylinders with circumferential cracks under combined internal pressure, axial force and bending moment - Part I: Theoretical solutions

机译:组合内压,轴向力和弯矩作用下具有周向裂纹的厚壁圆筒的整体极限载荷解决方案-第一部分:理论解决方案

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摘要

Global limit load solutions for thick-walled cylinders with circumferential internal/external surface and through-wall defects under combined positiveegative axial force, positiveegative global bending moment and internal pressure are derived based on the von Mises yield criterion and the net-section collapse principle. Solutions for cases both with/without considering crack face contact when all or part of the crack is located inside the compressive stress zone are obtained. For some limiting cases, the solutions are compared with available solutions and with some published finite element (FE) data, showing good agreement. Systematic validation of the solutions using a wide range of elastic-perfectly plastic 3-D FE data is described in part II.
机译:根据von Mises屈服准则和净净载荷,推导出具有正/负轴向力,正/负全局弯曲力矩和内压组合的具有周向内/外表面和通孔缺陷的厚壁圆筒的整体极限载荷解。断面塌陷原理。当裂纹的全部或部分位于压应力区内时,可以得到有/无考虑裂纹面接触情况的解决方案。对于某些极限情况,将这些解决方案与可用的解决方案以及一些已发布的有限元(FE)数据进行比较,显示出很好的一致性。第二部分介绍了使用范围广泛的弹性完美的塑料3-D FE数据对解决方案进行的系统验证。

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