Suppr超能文献

混杂铁纤维增强混凝土板的结构性能研究

Research on Structural Performance of Hybrid Ferro Fiber Reinforced Concrete Slabs.

作者信息

Saeed Hafiz Zain, Saleem Muhammad Zubair, Chua Yie Sue, Vatin Nikolai Ivanovich

机构信息

School of Engineering, Monash University, Jalan Lagoon Selatan, Bandar Sunway 47500, Malaysia.

Department of Civil Engineering, University of Engineering and Technology, Taxila 47080, Pakistan.

出版信息

Materials (Basel). 2022 Sep 29;15(19):6748. doi: 10.3390/ma15196748.

Abstract

Reinforced concrete structures, particularly in cold areas, experience early deterioration due to steel corrosion. Fiber-Reinforced Concrete (FRC) is an emerging construction material and cost-effective substitute for conventional concrete to enhance the durability and resistance against crack development. This article examines the structural performance of hybrid ferro fiber reinforced concrete slabs (mix ratio of mortar 1:2) comprising silica fume, layers of spot-welded mesh and different ratios of polypropylene fibers. The ferrocement slabs are compared with a conventional Reinforced Cement Concrete (RCC) slab (mix ratio of 1:2:4). The experimental work comprised a total of 13 one-way slabs, one control specimen and three groups of ferrocement slabs divided based on different percentages of Poly Propylene Fibers (PPF) corresponding to 0.10%, 0.30% and 0.50% dosage in each group. Furthermore, in each group, the percentage of steel ratio in ferrocement slabs varied between 25% and 100% of the steel area in the reinforced concrete control slab specimen. For evaluating the structural performance, the observation of deflection, stress-strain behavior, cracking load and energy absorption are critical parameters assessed using LVDTs and strain gauges. At the same time, the slabs were tested in flexure mode with third point loading. The experimental results showed that the first cracking load and ultimate deflection for fibrous specimens with 0.5% fiber and 10% silica fume increased by 15.25% and 13.2% compared with the reference RCC control slab. Therefore, by increasing the percentage of PPF and steel wire mesh reinforcement in the ferrocement slab, the post-cracking behavior in terms of deflection properties and energy absorption capacity was substantially enhanced compared to the RCC control slab.

摘要

钢筋混凝土结构,尤其是在寒冷地区,会因钢材腐蚀而提前劣化。纤维增强混凝土(FRC)是一种新兴的建筑材料,是传统混凝土具有成本效益的替代品,可提高耐久性并抵抗裂缝发展。本文研究了混合铁纤维增强混凝土板(砂浆配合比为1:2)的结构性能,该混凝土板包含硅灰、点焊网层和不同比例的聚丙烯纤维。将钢丝网水泥板与传统钢筋水泥混凝土(RCC)板(配合比为1:2:4)进行比较。试验工作共包括13块单向板、1个对照试件和3组钢丝网水泥板,每组根据不同百分比的聚丙烯纤维(PPF)划分,分别为0.10%、0.30%和0.50%的用量。此外,在每组中,钢丝网水泥板的含钢率在钢筋混凝土对照板试件钢面积的25%至100%之间变化。为了评估结构性能,使用线性可变差动变压器(LVDT)和应变片评估挠度、应力-应变行为、开裂荷载和能量吸收等关键参数。同时,这些板在三分点加载的弯曲模式下进行测试。试验结果表明,与参考RCC对照板相比,含0.5%纤维和10%硅灰的纤维试件的初裂荷载和极限挠度分别增加了15.25%和13.2%。因此,通过增加钢丝网水泥板中PPF的百分比和钢丝网增强,与RCC对照板相比,在挠度性能和能量吸收能力方面的开裂后行为得到了显著增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c516/9572473/fae59979e761/materials-15-06748-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验