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Design by analysis of ductile failure and buckling in torispherical pressure vessel heads

机译:通过分析球形压力容器头部的延性破坏和屈曲来进行设计

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摘要

Thin shell torispherical pressure vessel heads are known to exhibit complex elastic-plastic deformation and buckling behaviour under static pressure. In pressure vessel Design by Analysis, the designer is required to assess both of these behaviour modes when specifying the allowable static load. The EN and ASME boiler and pressure vessel codes permit the use of inelastic analysis in design by analysis, known as the direct route in the EN Code. In this paper, plastic collapse or gross plastic deformation loads are evaluated for two sample torispherical heads by 2D and 3D FEA based on an elastic-perfectly plastic material model. Small and large deformation effects are considered in the 2D analyses and the effect of geometry and load perturbation are considered in the 3D analysis. The plastic load is determined by applying the ASME twice elastic slope criterion of plastic collapse and an alternative plastic criterion, the Plastic Work Curvature criterion. The formation of the gross plastic deformation mechanism in the models is considered in relation to the elastic-plastic buckling response of the vessels. It is concluded that in both cases, design is limited by formation of an axisymmetric gross plastic deformation in the knuckle of the vessels prior to formation of non-axisymmetric buckling modes.
机译:已知薄壳环形压力容器的头部在静压力下会表现出复杂的弹塑性变形和屈曲行为。在通过分析进行压力容器设计中,要求设计人员在指定允许的静载荷时评估这两种行为模式。 EN和ASME锅炉和压力容器规范允许在设计分析中使用非弹性分析,这在EN规范中称为直接路径。在本文中,基于弹性完全塑性材料模型,通过2D和3D FEA评估了两个样品球形球头的塑性塌陷或塑性变形总载荷。在2D分析中考虑大小变形影响,在3D分析中考虑几何形状和载荷扰动的影响。通过应用ASME两次塌陷的弹性斜率准则和另一种塑性准则(塑性功曲率准则)来确定塑性载荷。考虑模型中总塑性变形机制的形成与容器的弹塑性屈曲响应有关。可以得出结论,在两种情况下,设计都受到在形成非轴对称屈曲模式之前在船舶转向节中形成轴对称大塑性变形的限制。

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