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Effects of nonlinear elevated temperature stress-strain characteristics on the global buckling capacities of cold-formed steel columns

机译:非线性升温温度 - 应变特性对冷成型钢柱全球屈曲能力的影响

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摘要

Losses caused by the recent fire incidents are demanding proper fire safety regulations and fire protection measures around the globe while construction cost and call for environmental protection are increasing. The expansion of cold-formed steel (CFS) construction to mid-rise buildings in recent times has therefore identified the need for the accurate prediction of the load bearing capacities of CFS columns in fire. Despite several useful studies on the compression capacities of CFS columns at elevated temperatures, effects of nonlinear elevated temperature stress-strain characteristics on the global buckling capacities of CFS columns have not been investigated yet. In this research, the effects of nonlinearity between proportional limit stress and yield strength, strain hardening between yield and ultimate strengths and varying yield strength to Young's modulus ratio on the capacities of pinned and fixed ended columns subject to flexural-torsional and flexural buckling were investigated using a detailed numerical parametric study involving 1320 finite element analysis results. The accuracy of current CFS design standards, such as AS/NZS 4600, AS 4100 and EC3 Part 1-2, in predicting the elevated temperature global buckling capacities was investigated, and new design rules were proposed for Australian and European standards.
机译:最近火灾引起的损失要求全球围绕全球防火安全法规和防火措施,而建设成本和环境保护呼吁正在增加。因此,近期冷成型钢(CFS)构造的扩展到中层建筑物,因此确定了需要精确预测CFS柱在火中的承载能力。尽管对高温下CFS柱的压缩容量有几项有用的研究,但尚未研究非线性升高的温度应力 - 应变特性对CFS柱的全球屈曲能力的影响。在该研究中,研究了比例极限应力和屈服强度之间的非线性的影响,产量和最终强度之间的应变硬化以及对杨氏模量比的较小模量比对弯曲和弯曲屈曲来保护的容量和固定结束的柱的容量,并进行了影响使用涉及1320个有限元分析结果的详细数值参数研究。研究了当前CFS设计标准的准确性,例如AS / NZS 4600,AS 4100和EC3部分1-2,预测高温全球屈曲能力,提出了新的设计规则,为澳大利亚和欧洲标准。

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