Steel beam upstands as a strengthening approach for doubly symmetric I-shaped sections

IF 3.9 2区 工程技术 Q1 ENGINEERING, CIVIL Structures Pub Date : 2024-09-05 DOI:10.1016/j.istruc.2024.107154
Kenny Mudenda, Alphose Zingoni
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Abstract

Sustainable design with minimization of carbon footprint requires the consideration of opportunities for optimal material use as well as for re-use and repurposing existing steel members. For steel beams susceptible to lateral-torsional buckling one such opportunity is the use of flange upstands to strengthen existing beams if a change in use requires that the member have more bending strength or stiffness. Flange upstands employed in the study convert a doubly symmetric section into a monosymmetric section. The monosymmetry effect is studied and reveals the existence of a range of upstand heights that can be exploited for increased critical elastic buckling moment. Beyond a given upstand height, the effect of monosymmetry then reduces the critical elastic buckling moment. It is shown that the critical upstand height relates closely to the point at which the monosymmetric section attains a coincident shear center and centroid, a property typically associated with doubly symmetric sections. Elastic and elastic-plastic analysis approaches are used to demonstrate how the stiffeners influence flexural capacity and stiffness properties of the beams. Application of a desirable range of upstand heights for strengthening I-shaped doubly symmetric beams is demonstrated with an example.
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作为双对称工字形截面加固方法的钢梁上支架
要实现碳足迹最小化的可持续设计,就必须考虑优化材料使用以及重新使用和再利用现有钢构件的机会。对于易受侧向扭转屈曲影响的钢梁而言,如果用途发生变化,需要提高构件的抗弯强度或刚度,则可以利用翼缘上支撑来加固现有钢梁。研究中使用的翼缘支撑可将双对称截面转换成单对称截面。通过研究单对称效应,可以发现存在一定范围的上立高度,可以利用这些高度提高临界弹性屈曲力矩。超过给定的上立高度后,单对称效应会降低临界弹性屈曲力矩。研究表明,临界上立高度与单对称截面达到剪切中心和中心点重合的点密切相关,这一特性通常与双对称截面相关。采用弹性和弹塑性分析方法来说明加劲件如何影响梁的抗弯能力和刚度特性。通过一个实例演示了加固工字形双对称梁的理想立柱高度范围。
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来源期刊
Structures
Structures Engineering-Architecture
CiteScore
5.70
自引率
17.10%
发文量
1187
期刊介绍: Structures aims to publish internationally-leading research across the full breadth of structural engineering. Papers for Structures are particularly welcome in which high-quality research will benefit from wide readership of academics and practitioners such that not only high citation rates but also tangible industrial-related pathways to impact are achieved.
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