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Mechanical properties of High and Very High Steel at elevated temperatures and after cooling down

机译:高温和冷却后高和超高钢的机械性能

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High-strength steels (HSS) are produced using special chemical composition or/and manufacturing processes. Both aspects affect their mechanical properties at elevated temperatures and after cooling down, and particularly the residual strength and the ductility of the structural members. As HSS equates the design of lighter structural elements, higher temperatures are developed internally compared to the elements designed with conventional carbon steel. Therefore, the low thickness members, along with the severe effect of high temperature on the mechanical properties of the HSS, constitute to the increased vulnerability of such structures in fire. Moreover, the re-use and reinstatement of these structures are more challenging due to the lower residual mechanical properties of HSS after the cooling down period. This paper presents a review of the available experimental studies of the mechanical properties of HSS at elevated temperatures and after cooling down. The experimental results are collected and compared with the proposed material model (reduction factors) of EN1993–1-2. Based on these comparisons, modified equations describing the effect of elevated temperatures on the mechanical properties of HSS are proposed. Also, the post-fire mechanical properties of HSS are examined. A comprehensive discussion on the effect of influencing parameters, such as manufacturing process, microstructure, loading conditions, maximum temperature, and others is further explored.
机译:高强度钢(HSS)使用特殊的化学成分或/和制造工艺生产。这两个方面都会影响它们在高温和冷却后的机械性能,特别是影响结构构件的残余强度和延展性。由于HSS等同于设计更轻的结构元件,因此与使用常规碳钢设计的元件相比,内部会产生更高的温度。因此,低厚度的构件以及高温对HSS的机械性能的严重影响,构成了这种结构在火灾中的增加的脆弱性。此外,由于冷却后HSS的残余机械性能较低,因此这些结构的重新使用和恢复更具挑战性。本文介绍了在高温和冷却后HSS力学性能的可用实验研究的综述。收集了实验结果,并与EN1993–1-2的建议材料模型(减少因子)进行了比较。基于这些比较,提出了描述高温对HSS力学性能影响的修正方程。另外,还检查了高速钢的射击后机械性能。进一步探讨了影响参数的影响,例如制造过程,微观结构,加载条件,最高温度等。

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