Calculating shear lag in steel-concrete composite beams under combined compression and bending

被引:3
作者
Giaccu, Gian Felice [1 ]
Maiorana, Emanuele [2 ]
Fenu, Luigi [3 ]
Briseghella, Bruno [4 ]
机构
[1] Univ Sassari, Dept Architecture Design & Urban Planning, Alghero, Italy
[2] Univ Republ San Marino, Dept Econ Sci Engn & Design, Citta Di San Marino, San Marino
[3] Univ Cagliari, Dept Civil & Environm Engn & Architecture, Cagliari, Italy
[4] Fuzhou Univ, Coll Civil Engn, Fuzhou, Peoples R China
关键词
Axial force and bending; Effective width; Non-linear analysis; Steel-concrete composite beam; Shear-lag; EFFECTIVE SLAB WIDTH;
D O I
10.1016/j.engstruct.2024.119101
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Long and complex composite steel-concrete structures are becoming common, requiring a deep understanding of the effects induced by the simultaneous action of axial forces and bending. In fact, the axial force generated, for instance, by cable inclination in cable-supported structures can modify the stress distribution within the elements compared to bending scenarios, thereby necessitating a revision of the effective width to be utilized. Nonetheless, current design codes, including Eurocode specifications and others, lack provisions for addressing the combined effects of axial force and bending, as they are exclusively tailored for bending. This limitation can introduce design complexities, necessitating the implementation of intricate Finite Element (FE) models, which impose substantial computational loads and design efforts. The methodology proposed in this paper overcomes these challenges allowing to assess the stress distribution and resistance of composite deck at Serviceability Limit State (SLS) and Ultimate Limit States (ULS) by leveraging results obtained from standard beam models typically used by structural designers or practitioners. A comprehensive parametric analysis using nonlinear finite element models is performed to validate the developed methodology. A comparison with the Eurocode 4 formulations highlights that the proposed method provides superior accuracy in estimating peak stress in concrete slabs under combined compression and bending. Additionally, it facilitates straightforward verification at the ULS in compliance with Eurocode requirements.
引用
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页数:20
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