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Strain rate behaviour in tension of 5355 steel: Base for progressive collapse analysis

机译:5355钢在张力下的应变率行为:逐步倒塌分析的基础

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This paper presents the strain rate behaviour in tension of the 5355 structural steel using a modified Split Hopkinson Tensile Bar for the mechanical characterisation at high strain rates (300 s(-1), 500 s(-1) and 850 s(-1)), and a Hydro Pneumatic Machine for intermediate strain rates (5 s(-1) and 25 s(-1)). These data are collected with the intention of setting down the basis for the enhancement of a progressive collapse analysis, that is, by the way, a dynamic event. Results show that the structural steel S355 is strain rate sensitive, keeping its strain hardening capacity with increasing strain-rates. Also the strain energy and the ductility show a marked influence to increasing strain rates. Two of the most used constitutive laws (Johnson-Cook and Cowper-Symonds) are considered and the accuracy of these models is demonstrated. The results can be of great interest for the assessment of robustness in structures where progressive collapse may be triggered by the failure of parallel steel members like, e.g., in the case of cable-stayed or suspension bridges and of large-span 3D trusses subjected to high strain-rate events. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了使用改进的Split Hopkinson拉伸棒对5355结构钢进行拉伸时的应变速率行为,以便在高应变速率(300 s(-1),500 s(-1)和850 s(-1)下进行机械表征)和用于中等应变率(5 s(-1)和25 s(-1))的液压气动机器。收集这些数据的目的在于确定增强渐进式崩溃分析(即顺便说一句动态事件)的基础。结果表明,结构钢S355对应变率敏感,随着应变率的增加保持其应变硬化能力。应变能和延展性也显示出对增加应变率的显着影响。考虑了两个最常用的本构定律(Johnson-Cook和Cowper-Symonds),并证明了这些模型的准确性。该结果对于评估可能因平行钢构件的破坏而触发逐步倒塌的结构的稳健性非常感兴趣,例如,在斜拉桥或悬索桥以及承受大跨度3D桁架的情况下高应变率事件。 (C)2016 Elsevier Ltd.保留所有权利。

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