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Analytical and numerical investigation of strain-hardening viscoplastic thick-walled cylinders under internal pressure by using sequential limit analysis

机译:序贯极限分析在内部压力下应变硬化粘塑性厚壁圆筒的分析和数值研究

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摘要

Plastic limit load of strain-hardening viscoplastic thick-walled cylinders subjected to internal pressure is investigated numerically and analytically in the paper. The paper applies sequential limit analysis to deal with the quasi-static problem involving hardening material properties and weakening behavior corresponding to the strain-rate sensitivity and widening deformation. By sequential limit analysis, the paper treats the plasticity problems as a sequence of limit analysis problems stated in the upper bound formulation. Rigorous upper bounds are acquired iteratively through a computational optimization procedure-with the internal pressure factor as the objective function. Especially, rigorous validation was conducted by numerical and analytical studies of thick-walled cylinders in terms of the plastic limit load as well as the onset of instability. It is found that the computed limit loads are rigorous upper bounds and agree very well with the analytical solutions.
机译:本文通过数值和分析方法研究了应变硬化粘塑性厚壁圆筒在内部压力作用下的塑性极限载荷。本文应用顺序极限分析法来解决准静态问题,该问题涉及硬化材料的性能和对应于应变率敏感性和变宽变形的弱化行为。通过顺序极限分析,本文将可塑性问题视为上限公式中所述的一系列极限分析问题。通过计算优化过程以内部压力因子为目标函数,反复获取严格的上限。特别是,通过对厚壁圆柱体的塑性极限载荷以及不稳定性的开始进行了数值和分析研究,进行了严格的验证。发现计算得出的极限载荷是严格的上限,并且与解析解非常吻合。

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