缺口连接位置对木-混凝土组合梁短期性能的影响,TCC梁的建模和最佳位置的研究,数值研究

IF 1.2 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
Hedmessaoud Zinelaabidine, Boudaoud Zeineddine, Ferhoune Noureddine
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引用次数: 0

摘要

木-混凝土组合梁,即TCC梁,已广泛用于修复或新建建筑物,通常在这些建筑物中插入几种类型的连接,以确保木托梁和混凝土板之间的部分组合作用。由于其强度和延展性,缺口连接代表了一个有效的系统,并且很容易从木材托梁上切割。因此,复合梁在抗弯刚度和承载能力方面需要很小的数值来实现高性能。本文旨在建立具有缺口连接的TCC梁的有限元模型。它考虑不同组件之间的实际交互。所建立的有限元模型能较好地预测全跨度荷载-跨中挠度曲线和破坏机理。预测结果与文献报道的试验结果非常吻合,包括刚度和承载能力。验证后,建立了数值研究,旨在研究不同建议位置之间缺口连接的最佳位置,找出必须安装的位置以确保TCC梁的高性能。研究结果表明,安装在P3000位置的缺口是保证最高抗弯刚度的最佳位置。而最大承载能力是在位置P3750。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of notch connection location on the short-term behaviour of timber-concrete composite beams, modelling of TCC beams and research for optimal locations, a numerical study
Timber-concrete composite beams, known as TCC beams, have been widely used in rehabilitation or in new buildings where several types of connections are commonly inserted to ensure partial composite action between the timber joist and the concrete slab. The notched connections represent an effective system due to their strength and ductility and it is simple to cut from timber joists. As a result, a small number is needed for the composite beam to achieve high performance in terms of bending stiffness and load-carrying capacity. This paper aims to develop a FE model for TCC beams with notched connections. It considers realistic interactions between different components. The developed FE model can satisfactorily predict the full range load-mid-span deflection curves and the failure mechanisms. The predictions agree very well with the experimental results reported in the literature, including the stiffness and the load-carrying capacity. After the validation, a numeric study was established, it aimed to research the optimal location of a notch connection between different proposed locations, to figure out which place must be installed to ensure high performance of the TCC beams. As a result of this study, the notch installed at location P3000 was found to be the optimal location to assure the highest bending stiffness. While the maximum carrying capacity was achieved at location P3750.
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来源期刊
Frattura ed Integrita Strutturale
Frattura ed Integrita Strutturale Engineering-Mechanical Engineering
CiteScore
3.40
自引率
0.00%
发文量
114
审稿时长
6 weeks
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