首页> 外文会议>PVP2010;ASME Pressure Vessels and Piping Division/K-PVP conference >EXPRESSIONS OF LOAD AND STRUCTURAL DEFORMATION RELATIONSHIP FOR CYLINDRICAL AND SPHERICAL VESSELS UNDER INTERNAL PRESSURE
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EXPRESSIONS OF LOAD AND STRUCTURAL DEFORMATION RELATIONSHIP FOR CYLINDRICAL AND SPHERICAL VESSELS UNDER INTERNAL PRESSURE

机译:内压作用下圆柱和球形容器的载荷与结构变形关系的表达

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Large deformation analysis for pressure vessel is much more complex than small deformation analysis, therefore, right now, there is no common recognized direct solution for load bearing capacity of pressure vessel yet, and this restrict the application of large deformation analysis in pressure vessel design. This paper based on elastic-plastic theory and considered material strain hardening and structural deformation effects, expressions of load and structural deformation relationship were the first time being derived for cylindrical and spherical vessels under internal pressure. And its practical value is equivalent to principal stress equations of thin-walled cylindrical and spherical vessels with considering non-linear structural deformation effect. Based on the study above and by introducing true stress-strain relationship of materials, analytical solutions of plastic instability pressure for thin-walled cylindrical and spherical vessels were derived.
机译:压力容器的大变形分析比小变形分析要复杂得多,因此,目前尚无公认的直接方法来解决压力容器的承载能力,这限制了大变形分析在压力容器设计中的应用。本文基于弹塑性理论,考虑材料的应变硬化和结构变形效应,首次推导了圆柱和球形容器在内部压力下的载荷和结构变形关系的表达式。考虑到非线性结构变形效应,其实用价值等效于薄壁圆柱和球形容器的主应力方程。在上述研究的基础上,通过引入材料的真实应力-应变关系,推导了薄壁圆筒形和球形容器塑性不稳定性压力的解析解。

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