首页> 外文会议>2002 ASME Pressure Vessels and Piping Conference, Aug 5-9, 2002, Vancouver, British Columbia, Canada >ELASTIC SHAKEDOWN IN PRESSURE VESSEL COMPONENTS UNDER NON-PROPORTIONAL LOADING
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ELASTIC SHAKEDOWN IN PRESSURE VESSEL COMPONENTS UNDER NON-PROPORTIONAL LOADING

机译:非比例载荷下压力容器组件的弹性减振

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Bounding techniques for calculating shakedown loads are of great importance in design since this eliminates the need for performing full elasto-plastic cyclic loading analyses. The classical melan's lower bound theorem is widely used for calculating shakedown loads of pressure vessel components under proportional loading. Polizzotto extended the Melan's theorem to the case of non-proportional loading acting on a structure. This paper presents a finite element method, based on Polizzotto's theorem, to estimate the elastic shakedown load for a structure subjected to a combination of steady and cyclic mechanical loads. This method, called non-linear superposition, is then applied to investigate the shakedown behaviour of a pressure vessel component - a nozzle/cylinder intersection and that of a biaxially loaded square plate with a central hole. Results obtained for both problems are compared with those available in the literature and are verified by means of cyclic elasto-plastic finite element analysis.
机译:计算减震载荷的边界技术在设计中非常重要,因为这消除了执行完整的弹塑性循环载荷分析的需要。经典的melan下界定理被广泛用于计算比例载荷下压力容器部件的减振载荷。 Polizzotto将Melan定理扩展到作用在结构上的非比例载荷的情况。本文提出了一种基于Polizzotto定理的有限元方法,用于估算结构在稳态和循环机械载荷作用下的弹性减振载荷。然后将这种方法称为非线性叠加,以研究压力容器部件(喷嘴/气缸相交点)和带有中心孔的双轴加载方形板的振动特性。将针对这两个问题获得的结果与文献中的结果进行比较,并通过循环弹塑性有限元分析对其进行验证。

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