Flexural behaviour of Steel Timber Composite (STC) beams

IF 4 3区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Steel and Composite Structures Pub Date : 2021-01-01 DOI:10.12989/SCS.2021.41.2.193
Ruyuan Yang, Haitao Li, R. Lorenzo, You-fu Sun, M. Ashraf
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引用次数: 3

Abstract

Structural performance of a new type of lightweight steel-timber composite (STC) beam has been investigated by conducting four-point bending tests on 21 specimens. This paper presents key findings on its structural performance parameters such as failure modes, load-deflection response, load-slip response, load-strain response, and the ultimate bending capacity by grouping 21 specimens into 7 subgroups based on various geometric characteristics. In the proposed STC beams, glulam slabs were connected to the steel beams using high-strength bolts, and the effect of different thickness and width of glulam slabs on the structural behaviour of STC beams were carefully investigated. In addition, the effective bending stiffness, deflection, and bending capacity of the STC beams were theoretically calculated based on elastic theory and compared with experimental values. For all considered specimens, timber slabs and steel beams showed good composite action. Increasing the thickness and width of the timber slabs can effectively limit the lateral deformation of the specimens, improve the bending capacity of the specimens, and provides a secant stiffness to the STC beams. It was observed that for the whole cross section of STC beams, the plane section assumption is not applicable, but the strains on timber and steel seemed to satisfy the plane section assumption individually. r (Gamma) method has been observed to better reflect the deformation capacity of STC beams. Analytical equations were derived to predict the elastic bending capacity of STC beams, and comparison between theoretical and experimental values showed good agreement.
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钢-木复合材料(STC)梁的弯曲性能
通过21个试件的四点弯曲试验,研究了一种新型轻型钢-木组合梁的结构性能。本文根据不同的几何特征,将21个试件分为7个亚组,给出了其结构性能参数,如破坏模式、荷载-挠度响应、荷载-滑移响应、荷载-应变响应和极限弯曲能力。在拟议的STC梁中,胶合板使用高强度螺栓与钢梁连接,并仔细研究了胶合板不同厚度和宽度对STC梁结构性能的影响。基于弹性理论对STC梁的有效抗弯刚度、挠度和抗弯能力进行了理论计算,并与实验值进行了比较。对于所有考虑的试件,木板和钢梁表现出良好的复合作用。增加木材板的厚度和宽度可以有效地限制试件的侧向变形,提高试件的抗弯能力,并为STC梁提供割线刚度。结果表明,对于STC梁的整个截面,平面截面假设不适用,但木材和钢材的应变似乎分别满足平面截面假设。r (Gamma)法更能反映STC梁的变形能力。推导了预测STC梁弹性弯曲能力的解析方程,并将理论值与实验值进行了比较,结果吻合较好。
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来源期刊
Steel and Composite Structures
Steel and Composite Structures 工程技术-材料科学:复合
CiteScore
8.50
自引率
19.60%
发文量
0
审稿时长
7.5 months
期刊介绍: Steel & Composite Structures, An International Journal, provides and excellent publication channel which reports the up-to-date research developments in the steel structures and steel-concrete composite structures, and FRP plated structures from the international steel community. The research results reported in this journal address all the aspects of theoretical and experimental research, including Buckling/Stability, Fatigue/Fracture, Fire Performance, Connections, Frames/Bridges, Plates/Shells, Composite Structural Components, Hybrid Structures, Fabrication/Maintenance, Design Codes, Dynamics/Vibrations, Nonferrous Metal Structures, Non-metalic plates, Analytical Methods. The Journal specially wishes to bridge the gap between the theoretical developments and practical applications for the benefits of both academic researchers and practicing engineers. In this light, contributions from the practicing engineers are especially welcome.
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