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首页> 外文期刊>Journal of structural engineering >Coupled Thermomechanical Damage Modeling for Structural Steel in Fire Conditions
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Coupled Thermomechanical Damage Modeling for Structural Steel in Fire Conditions

机译:火灾条件下结构钢耦合热机械损伤

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摘要

This study developed a coupled thermomechanical damage model for structural steel at elevated temperatures. The need for adequate modelling of steel deterioration behavior remains a challenging task in structural fire engineering because of the complexity inherent in the damage states of steel under combined actions of mechanical and fire loading. A fully three-dimensional damage-coupled constitutive model was developed based on the hypothesis of effective stress space and isotropic damage theory. The new coupling model, adapted from an enhanced Lemaitre's ductile damage equation and taking into account temperature-dependent thermal degradation, is a heuristic approach which retains the underlying mechanisms that govern the damage processes. The proposed damage model comprises a limited number of parameters that can be identified using unloading slopes of stress-strain relationships through tensile coupon tests. The proposed damage model was successfully implemented in finite-element software and validated against a comprehensive range of experimental results. The damage-affected structural response was accurately reproduced under various loading conditions and a wide temperature range, demonstrating that the proposed damage model is a useful tool in giving a realistic representation of steel deterioration behavior for structural fire engineering applications. (C) 2020 American Society of Civil Engineers.
机译:该研究在高温下开发了一种用于结构钢的耦合热机械损伤模型。由于机械和火灾载荷的组合作用下,对结构消防工程的适当建模仍然是结构防火工程中的具有挑战性的。基于有效应力空间和各向同性损伤理论的假设开发了全三维损伤耦合的本构模型。从增强的LEMAITRE的延性损伤方程和考虑温度依赖性热降解的新耦合模型是一种启发式方法,它保留了控制损坏过程的潜在机制。所提出的损坏模型包括有限数量的参数,可以通过拉伸优惠券测试使用卸载应力关系的卸载斜率来识别。建议的损坏模型在有限元软件中成功实施,并针对全面的实验结果进行了验证。在各种装载条件下准确地复制了受损受损的结构响应,并且宽温度范围是一种拟议的损坏模型是一种有用的工具,用于制定结构防火工程应用的钢劣化行为的现实表现。 (c)2020年美国土木工程师协会。

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  • 来源
    《Journal of structural engineering 》 |2020年第7期| 04020127.1-04020127.14| 共14页
  • 作者单位

    Design Fire Consultants Ltd Leeds LS2 7JU W Yorkshire England;

    City Univ London Sch Math Comp Sci & Engn Dept Civil Engn London EC1V 0HB England;

    City Univ London Sch Math Comp Sci & Engn Dept Civil Engn London EC1V 0HB England;

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