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Characterising plastic collapse of pipe bend structures

机译:表征弯管结构的塑性塌陷

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摘要

Two recently proposed design by analysis criteria of plastic collapse based on plastic work concepts, the plastic work (PW) criterion and the plastic work curvature (PWC) criterion, are applied to a strain hardening pipe bend arrangement subject to combined pressure and in-plane moment loading. Calculated plastic pressure-moment interaction surfaces are compared with limit surfaces, large deformation analysis instability surfaces and plastic load surfaces given by the ASME Twice Elastic Slope criterion and the tangent intersection criterion. The results show that both large deformation theory and material strain hardening have a significant effect on the elastic-plastic response and calculated static strength of the component. The PW criterion is relatively simple to apply in practice and gives plastic load values similar to the tangent intersection criterion. The PWC criterion is more subjective to apply in practice but it' allows the designer to follow the development of the gross plastic deformation mechanism in more detail. The PWC criterion indicates a more significant strain hardening strength enhancement effect than the other criteria considered, leading to a higher calculated plastic load.
机译:基于塑性工作概念的塑性塌陷分析标准,最近提出的两种设计,即塑性功(PW)准则和塑性功曲率(PWC)准则,被应用于承受压力和平面内联合作用的应变硬化弯管装置瞬间加载。将计算出的塑料压力矩相互作用面与ASME Twice弹性斜率准则和切线相交准则给出的极限面,大变形分析不稳定性面和塑性载荷面进行比较。结果表明,大变形理论和材料应变硬化对部件的弹塑性响应和计算出的静态强度均具有显着影响。 PW准则在实践中相对容易应用,并给出类似于切线相交准则的塑性载荷值。 PWC标准在实践中更主观地应用,但是它使设计人员可以更详细地跟踪总体塑性变形机制的发展。 PWC准则表明比其他准则更显着的应变硬化强度增强效果,从而导致更高的计算塑性载荷。

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