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Post-fire mechanical properties of base metal and welds of Q235 steel

机译:Q235钢材基础金属后的火灾后力学性能

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摘要

Fire hazard has a non-negligible impact on building structural safety. With reasonable fire resistance design, steel structures would not necessarily cause collapse when suffering fire and cooling down, but the reliability of structures after fire needs to be re-evaluated. Although there have been considerable investigations of the mechanical behaviors of structural steel in fire or at elevated temperatures, only limited study has focused on the post-fire mechanical properties of structural steel especially under different cooling conditions. In this paper, coupon tests of Chinese Q235 structural steel, including base metal and welds, were conducted and the post-fire performance, including appearance, stress-strain curve, elastic modulus, yield strength, tensile strength, percentage elongation after fracture, and percentage reduction of area, was obtained and analyzed. With the condition of cooling in air or in water, post-fire mechanical properties of base metal and welds cooling from different maximum temperatures were analyzed and compared. Based on the test results, it is concluded that cooling in air from temperatures above 600 degrees C increases the ductility of Q235 steel for both base metal and welds, whereas cooling in water causes a significant drop in ductility but clearly increases strength. The post-fire tensile strength of the base metal would be higher than that of welds after cooling in water from 600 degrees C or higher elevated temperatures. Meanwhile, welds would develop poorer ductility than base metal. Accordingly, a set of reasonable predictive formulas is proposed for the post-fire mechanical properties of Q235 steel base metal and welds.& nbsp; (c) 2021 Elsevier Ltd. All rights reserved.
机译:火灾危险对建筑结构安全有不可或缺的影响。采用合理的防火设计,钢结构在遭受火灾和冷却时不一定会导致坍塌,但需要重新评估火灾后的结构可靠性。尽管在火灾或升高的温度下,有可能对结构钢的机械行为进行了相当大的研究,但仅限有限的研究专注于结构钢的火警机械性能,特别是在不同的冷却条件下。在本文中,进行了中国Q235结构钢的优惠券试验,包括基础金属和焊接,以及火灾后性能,包括外观,应力 - 应变曲线,弹性模量,屈服强度,抗拉强度,裂缝后的伸长率百分比,获得并分析面积减小百分比。随着空气或水中冷却的条件,分析了基础金属的后火力学性能和从不同的最大温度冷却的焊缝进行比较。基于测试结果,得出结论,在600摄氏度高于600摄氏度的温度下冷却Q235钢的延展性增加了底座金属和焊缝的延展性,而在水中冷却导致延展性的显着下降,但显然增加了强度。在从600摄氏度或更高的温度下冷却后,基础金属的后火力拉伸强度将高于焊接后的焊缝。同时,焊缝会比贱金属发展较差的延展性。因此,提出了一组合理的预测公式,用于Q235钢基底金属和焊缝的火灾后机械性能。  (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Constructional Steel Research》 |2021年第8期|106767.1-106767.14|共14页
  • 作者单位

    Tsinghua Univ Dept Civil Engn Key Lab Civil Engn Safety & Durabil China Educ Minist Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Civil Engn Key Lab Civil Engn Safety & Durabil China Educ Minist Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Civil Engn Key Lab Civil Engn Safety & Durabil China Educ Minist Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Civil Engn Key Lab Civil Engn Safety & Durabil China Educ Minist Beijing 100084 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Q235 steel; Base metal; Welds; Post-fire; Mechanical properties;

    机译:Q235钢;底金属;焊接;火后;机械性能;

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