集中荷载作用下奥氏体不锈钢梁抗力模型的比较分析

IF 0.3 Q4 ENGINEERING, MULTIDISCIPLINARY
Carlos Alberto Graciano-Gallego, Nelson Loaiza, Euro Casanova
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引用次数: 0

摘要

不锈钢在建筑中的使用越来越多,因此需要开发由这种材料制成的结构元件的阻力模型。与碳钢不同,不锈钢合金表现出应力-应变曲线,具有显著的应变硬化能力和设计中应考虑的合理延展性。这种行为上的差异使得在使用不锈钢进行设计时,用于碳钢的配方是保守的。因此,本文对细长奥氏体不锈钢梁在集中荷载作用下的阻力模型进行了比较分析。首先,采用非线性有限元模型对不锈钢梁的破坏机理进行了分析。从这个经过验证的数值模型中,给出了一个从参数分析中获得的数据库,该数据库涵盖了广泛的几何形状。随后,使用该数据库对文献中可用的各种阻力模型进行比较。这些模型既符合国际设计规范,也符合通过机器学习获得的模型。最后,数值结果表明,在贴片荷载作用下,细长不锈钢板梁的极限抗力预测值有了显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comparative analysis of resistance models for austenitic stainless steel girders subjected to concentrated loads
The increasing use of stainless steel in construction has led to the need of developing resistance models for structural elements made of this material. Unlike carbon steels, stainless steel alloys exhibit stress-strain curves with a pronounced strain hardening capacity and reasonable ductility that should be considered in the design. This difference in behavior makes the formulations used for carbon steel conservative when designing with stainless steel. Therefore, this paper presents a comparative analysis of resistance models for slender austenitic stainless-steel beams subject to concentrated loads. First, the failure mechanisms of stainless-steel beams are presented using a nonlinear finite element model. From this validated numerical model, a database obtained from a parametric analysis that covers a wide range of geometries is presented. Subsequently, this database is used to perform a comparison between various resistance models available in the literature. These models correspond to both international design codes and models obtained through machine learning. Finally, the numerical results show considerable improvement in the predicted ultimate resistances for slender stainless steel plate girders subjected to patch loading.
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来源期刊
UIS Ingenierias
UIS Ingenierias ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
27
审稿时长
12 weeks
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