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Evolution of stress-strain models of stainless steel in structural engineering applications

机译:结构工程应用中不锈钢应力应变模型的演变

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Stainless steel is a family of steel alloys with a minimum of approximately 10.5% mass of chromium. Unlike carbon steel, it has high corrosion and heat resistant properties. Stainless steel does not easily corrode because it forms an invisible thin passive film of about 5 x 10(-6) mm of chromium oxide (Cr2O3), which is impervious to water and air. If this film is damaged by scratching, it repairs itself as chromium in the steel reacts rapidly with oxygen and moisture in the environment to re-form the oxide layer. Since the early 20th century a lot of research work has been performed to understand the stress-strain response and mechanical properties of materials which exhibit non-linear behaviour over the complete shape of the stress-strain curve. Significant progress was achieved when the Ramberg-Osgood model was developed, however, there is consensus among researchers that this model is only accurate up to the 0.2% proof stress. As designs become more complicated and refined, it is clear that the behaviour of non-linear materials cannot be fully described by the Ramberg-Osgood model. Advanced numerical analysis and design requires knowledge of the stress-strain relationship of the alloys over a full range of the stress-strain curves. This paper provides a detailed review of the evolution of the stress-strain models of stainless steel, in literature. (C) 2018 Elsevier Ltd. All rights reserved.
机译:不锈钢是一种钢合金,其铬含量至少约为10.5%。与碳钢不同,它具有很高的耐腐蚀和耐热性能。不锈钢不易腐蚀,因为它形成了约5 x 10(-6)毫米的氧化铬(Cr2O3)看不见的钝化薄膜,该薄膜不透水和空气。如果该膜被刮擦损坏,它会自我修复,因为钢中的铬会与环境中的氧气和水分快速反应,从而重新形成氧化层。自20世纪初以来,已经进行了许多研究工作来了解材料的应力-应变响应和机械性能,这些材料在应力-应变曲线的完整形状上表现出非线性行为。当开发Ramberg-Osgood模型时,取得了重大进展,但是,研究人员一致认为,该模型仅在0.2%的标准应力下才是准确的。随着设计变得更加复杂和精致,很明显,Ramberg-Osgood模型无法完全描述非线性材料的行为。先进的数值分析和设计需要了解合金在整个应力-应变曲线范围内的应力-应变关系。本文详细介绍了不锈钢应力应变模型的演变。 (C)2018 Elsevier Ltd.保留所有权利。

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