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Numerical investigation and design rules for flexural capacities of H-section high-strength steel beams with and without web openings

机译:H-Section高强度钢梁弯曲能力的数值调查与设计规则,无论有网络开口

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This paper presents a finite-element (FE) investigation on the flexural capacities of H-section high-strength steel beams with web openings. A non-linear finite-element model (FEM) was developed for H-section high-strength steel beams with web openings, which included initial geometric imperfections. The FEMs were validated against the test results available in the literature for H-section high-strength steel beams with web openings. The validated FEMs were then used to conduct a parametric study comprising 180 FEMs to investigate the effects of different cross-sections, the opening diameter, the number of opening and the type of loadings on flexural capacities of H-section high-strength steel beams. The flexural capacities predicted from the finite-element analysis (FEA) were also used to study the performance of the current design guidelines for steel structures. A comparison of numerical strengths and design strengths found that the American National Standard (AISC) is over-conservative by as much as 61%, whereas the North American Specification (NAS) and Chinese Code (CC) are conservative by 34% on average, when predicting the flexural capacities of H-section high-strength steel beams with web openings. In addition, the Steel Design Guide Series 2 (SDGS-2) and Continuous Strength Method (CSM) for cold-formed steel (CFS) members with openings are generally appropriate for H-section high-strength steel beams with web openings subjected to flexural failure. Moreover, the design rules from Direct Strength Method (DSM) were found to be over-conservative by around 40%. Accordingly, this paper proposes modified design equations over the existing design rules of SDGS-2. The proposed design equations have predicted closely the flexural capacities of H-section high-strength steel beams with web openings, being only 1% conservative to the FEA strengths.
机译:本文提出了关于H型高强度钢梁弯曲能力的有限元(FE)调查。为具有幅材开口的H型高强度钢梁开发了非线性有限元模型(FEM),包括初始几何缺陷。针对具有卷网开口的H型高强度钢梁的文献中的测试结果验证了有限元。然后,经过验证的有限元件进行包括180例Fems的参数研究,以研究不同横截面,开口直径,开口数,开口数量的效果,以及负载的弯曲能力对H型高强度钢梁的弯曲能力。从有限元分析(FEA)预测的弯曲能力也用于研究当前钢结构设计指南的性能。数值优势和设计优势的比较发现,美国国家标准(AISC)过度保守高达61%,而北美规范(NAS)和中国代码(CC)平均保守34%,当预测H型高强度钢梁的弯曲容量时用幅材开口。此外,具有开口的冷成型钢(CFS)构件的钢设计引导系列(SDGS-2)和连续强度法(CSM)通常适用于H型高强度钢梁,其具有弯曲的卷材开口失败。此外,发现来自直接强度法(DSM)的设计规则将过度保守约为40%。因此,本文提出了通过SDGS-2的现有设计规则的修改设计方程。所提出的设计方程已经预测了H-Section高强度钢梁的弯曲能力,具有幅材开口,仅为FEA强度保守1%。

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