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Elevated-temperature mechanical properties of high strength structural steel S460N: Experimental study and recommendations for fire-resistance design

机译:高强度结构钢S460N的高温力学性能:耐火设计的实验研究和建议

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摘要

Fire-resistance design is one of the most important considerations when structural engineers conduct design of steel structures. As a basis of analyzing fire performance of steel structures, elevated-temperature mechanical properties of structural steels are significant for practical design. The recommendations of current European, American, Australian and British standards were mainly obtained from mild steels, which are in question when used to conduct fire-resistance design of high strength steel structures. In order to reveal the elevated-temperature mechanical properties of high strength steel S460N, tensile tests were conducted at various temperatures ranged 20-700 ℃. The elevated-temperature reduction factors of elastic modulus, yield and ultimate strengths of S460N were obtained and compared with current design standards and available literature. According to the comparison between this research result on S460N and the available research results in literature on S460N, S460M and various mild steels, it is found that the deterioration of mechanical properties of structural steels at elevated temperature is dependent on steel grades. Thus the recommendations in current design standards are not applicable to high strength structural steels. Further unique predictive equations for the deterioration of high strength structural steel S460 at elevated temperatures were proposed and validated with available literature.
机译:当结构工程师进行钢结构设计时,防火设计是最重要的考虑因素之一。作为分析钢结构耐火性能的基础,结构钢的高温机械性能对实际设计具有重要意义。当前的欧洲,美国,澳大利亚和英国标准的建议主要是从低碳钢中获得的,这些低碳钢在进行高强度钢结构的防火设计时存在疑问。为了揭示高强度钢S460N的高温机械性能,在20-700℃的各种温度下进行了拉伸试验。获得了S460N的弹性模量,屈服强度和极限强度的高温降低因子,并将其与当前的设计标准和现有文献进行了比较。通过对S460N的研究结果与文献中有关S460N,S460M和各种低碳钢的现有研究结果进行比较,可以发现结构钢在高温下的力学性能下降取决于钢种。因此,当前设计标准中的建议不适用于高强度结构钢。提出了关于高温下高强度结构钢S460劣化的其他独特预测方程式,并得到了现有文献的验证。

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