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首页> 外文期刊>International journal of impact engineering >Nonlinear finite element modeling of dynamic localizations in high strength steel columns under impact
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Nonlinear finite element modeling of dynamic localizations in high strength steel columns under impact

机译:冲击作用下高强度钢柱动力局部化的非线性有限元建模

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摘要

This paper presents a consistent methodology for the assessment of nonlinear behavior of structural steel column under severe loading conditions. Nonlinear finite element analysis is conducted to study localization failure in axially pre-loaded columns made of high strength steel HY-100 and subjected to transverse impact. The thermo-viscoplastic response of high strength steel at low and high strain rates and temperatures is also investigated using a physically based constitutive model. The constitutive model which exhibits dominant performance in describing the thermo-mechanical behavior of metals is then implemented into the commercial finite element code ABAQUS/Explicit via user material subroutine coded as VUMAT. The effect of impact velocity, impactor mass, impact location and pre-loading condition on the localization behavior of the steel columns is also investigated. The outcomes of this study could be utilized to provide some guidelines to design codes to come up with simplified method of analysis for steel structures subjected to impact loading.
机译:本文提出了一种一致的方法,用于评估在重载条件下结构钢柱的非线性行为。进行了非线性有限元分析,以研究由高强度钢HY-100制成并受到横向冲击的轴向预压柱的局部破坏。还使用基于物理的本构模型研究了高强度钢在低应变率和高应变率及温度下的热粘塑性响应。然后,通过编码为VUMAT的用户材料子例程,将在描述金属的热机械行为中表现出主导性能的本构模型实现为商业有限元代码ABAQUS / Explicit。还研究了冲击速度,冲击质量,冲击位置和预压条件对钢柱定位行为的影响。这项研究的结果可以被用来为设计规范提供一些指导,以简化钢结构在冲击载荷下的分析方法。

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