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On the use of Bernstain-Bezier functions for modelling the post-fire stress- strain relationship of ultra-high strength steel (Grade 1200)

机译:关于使用Bernstain-Bezier函数建模超高强度钢的火后应力-应变关系(1200级)

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摘要

Ultra-high strength steels (UHSS) have significant potential applications in the engineering fields due to their unique specifications. In recent years, it has been experimentally shown that the post-fire stress-strain response of this material is highly dependent on the maximum steel temperature and the sustained load applied to it during fire. This paper employs the Bernstain-Bézier functions to present the relationship between the stress, strain, the maximum fire temperature and the sustained axial load ratio (β) for Grade 1200 UHSS cooled for fire temperatures to room temperature. The experimental results are used to verify and validate the proposed model throughout the paper. The model showed to be capable of not only interpolating the stress-strain curves, but also extrapolating them out of the range of the available experimental tests data. Also, taking advantage of the stress-strain-temperature response of the UHSS tested at elevated temperatures, the instantaneous stress-induced strain and consequently the creep strain of UHSS subjected to different constant sustained load values during transient fire are obtained.
机译:超高强度钢(UHSS)具有独特的规格,在工程领域具有巨大的潜在应用。近年来,实验表明,这种材料在火灾后的应力-应变响应高度依赖于最高钢温和着火期间承受的持续载荷。本文利用Bernstain-Bézier函数来介绍在火灾温度降至室温时冷却的1200级UHSS的应力,应变,最大燃烧温度与持续轴向载荷比(β)之间的关系。实验结果在整个论文中用于验证和验证所提出的模型。该模型显示不仅能够内插应力-应变曲线,而且还能将其外推到可用的实验测试数据范围之外。而且,利用在高温下测试的UHSS的应力-应变-温度响应,可以获得瞬时火灾期间承受不同持续荷载值的UHSS的瞬时应力诱发应变和蠕变应变。

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