Ultimate Compressive Strength of Steel Stiffened-Plate Structures Triggered by Brittle Fracture under Cryogenic Conditions

Dong Hun Lee, J. Paik, J. Ringsberg, P. Tan
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Abstract

This chapter presents a practical method to investigate the effects of brittle fracture on the ultimate compressive strength of steel stiffened-plate structures under cryogenic conditions. Computational models are developed to analyse the ultimate compressive strength of steel stiffened-plate structures, triggered by brittle fracture, under cryogenic condition. A phenomenological form of the material model for the high-strength steel at cryogenic condition is proposed, that takes into account the Bauschinger effect, and implemented into a nonlinear finite element solver (LS-DYNA). Comparison between computational predictions and experimental measurements is made for the ultimate compressive strength response of a full-scale steel stiffened-plate structure, showing a good agreement between them.
低温条件下脆性断裂引发的钢加筋板结构极限抗压强度
本章提出了一种研究低温条件下脆性断裂对钢加筋板结构极限抗压强度影响的实用方法。建立了低温条件下钢加筋板结构脆性断裂的极限抗压强度计算模型。提出了一种考虑鲍辛格效应的高强钢低温条件下材料模型的现象学形式,并将其实现到非线性有限元求解器(LS-DYNA)中。对全尺寸钢加筋板结构的极限抗压强度响应进行了计算预测与实验测量的比较,结果表明两者吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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