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Deterioration of mechanical properties of high strength structural steel S460N under transient state fire condition

机译:瞬态火灾条件下高强度结构钢S460N力学性能的下降

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摘要

911 World Trade Centre Tragedy put fire safety of constructional steel structures into question. Since then, more and more research attention has been paid to the elevated-temperature mechanical properties of structural steels, which is a critical basis of evaluating the fire performance of steel structures. In the literature the available mechanical properties of structural steels under fire conditions were mainly obtained from steady state test method, as steady state test method is easier to perform than transient state test method and offers stress-strain curves directly. However, the transient state fire condition is considered to be more realistic to represent the real condition when constructions are exposed to fire. In order to reveal the deterioration of mechanical properties of the commonly used high strength structural steel S460N under transient state fire condition, tensile tests were conducted under various constant stress levels up to 800 MPa. The reduction factors of elastic modulus, yield and ultimate strengths of S460N under transient state fire condition were obtained and compared with current leading design standards and available literature. The application of such accurate elevated-temperature mechanical properties reduction factors of S460N can ensure a safe fire-resistance design and evaluation of steel structures with high strength steel S460N under transient state fire condition. This experimental study also supports other relative research on fire performance of steel structures with S460N under transient state fire condition.
机译:911世界贸易中心悲剧使建筑钢结构的消防安全受到质疑。从那时起,越来越多的研究关注结构钢的高温力学性能,这是评估钢结构防火性能的关键基础。在文献中,火灾条件下结构钢的可用力学性能主要来自稳态测试方法,因为稳态测试方法比瞬态测试方法更易于执行,并且可以直接提供应力-应变曲线。但是,瞬态火灾条件被认为更现实,可以表示建筑物遭受火灾时的真实情况。为了揭示在瞬态火灾条件下常用的高强度结构钢S460N的机械性能的下降,在高达800 MPa的各种恒定应力水平下进行了拉伸试验。获得了瞬态火灾条件下S460N的弹性模量,屈服强度和极限强度的折减系数,并将其与当前领先的设计标准和现有文献进行了比较。如此精确的S460N高温力学性能降低因子的应用,可以确保在瞬态火灾条件下对高强度钢S460N的钢结构进行安全的防火设计和评估。该实验研究还支持有关S460N钢结构在瞬态火灾条件下的防火性能的其他相关研究。

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