Shear Behavior of Hollow Ferrocement Beam Reinforced by Steel and Fiberglass Meshes

Q3 Environmental Science Tikrit Journal of Engineering Sciences Pub Date : 2022-12-20 DOI:10.25130/tjes.29.4.4
Qutaiba Najm Abdullah Alobaidy, A. I. Abdulla, M. Al-Mashaykhi
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引用次数: 3

Abstract

The purpose of this study is to investigate the shear behavior of hollow ferrocement beams of self-compacting mortar reinforced with various types of metallic (steel wire mesh) and non-metallic (fiber glass mesh) reinforcement. The experimental program consists of casting eight ferrocement beams with dimensions of 150×225×2000 mm, with 50 mm of ferrocement thickness and a polystyrene cork core of 50×125 mm. The study parameters were the type of shear reinforcement and the number of layers of wire mesh. The results showed that the ultimate load of the beams reinforced with several layers of the fiber glass mesh (1, 2, and 3) was decreased by (3.27%, 16.52%, and 9.38%) respectively, compared to the beams reinforced with layers of steel wire mesh (1, 2 and 3). The ultimate load of these beams increased by (33.71%, 73.28%, and 122.11%) respectively, compared to the beams without shear reinforcement. Also, the ultimate load of the beams reinforced with layers of welded wire mesh was increased by (38.23%, 107.56%, and 145.09%) respectively, compared to the beams without shear reinforcement. The ductility and toughness of the beams reinforced with several layers of the fiber glass mesh (1, 2, and three) were decreased by (1.68%, 2.11%, 2.68%) and (29.39%, 25.91%, 16.06%) respectively, compared to beams reinforced with several layers of steel wire mesh (1, 2 and 3). The crack propagation was reduced and its number and crack width decreased by using steel wire mesh and fiber glass wire mesh instead of stirrups, especially in beams with two and three layers of wire mesh. The results also showed that the use of glass fiber or welded wire mesh in the reinforcement of hollow beams instead of steel stirrups has a significant effect on the failure load, deflections, crack patterns, and shear stresses, despite the clear preference for beams reinforced with steel wire mesh.
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钢与玻璃纤维网加固空心铁水泥梁的剪切性能
本研究的目的是研究不同类型的金属(钢丝网)和非金属(玻璃纤维网)加固自密实砂浆空心铁水泥梁的抗剪性能。试验方案包括铸造8根尺寸为150×225×2000 mm的铁层梁,铁层厚度为50 mm,聚苯乙烯软木芯为50×125 mm。研究参数为抗剪钢筋类型和钢丝网层数。结果表明:多层玻璃纤维网(1、2、3)加固梁的极限荷载比单层钢丝网(1、2、3)加固梁的极限荷载分别降低了(3.27%、16.52%、9.38%),比未加剪力加固梁的极限荷载分别提高了(33.71%、73.28%、122.11%)。焊接网层加固梁的极限荷载分别比未加剪力加固梁提高38.23%、107.56%和145.09%。梁钢筋的延性和韧性的几层玻璃纤维网格(1、2和3)减少(1.68%、2.11%、2.68%)和(29.39%、25.91%、16.06%)分别与梁钢筋的几层钢丝网(1、2和3)。减少裂纹及其数量和裂缝宽度减少了使用钢丝网和玻璃纤维钢丝网代替马镫,尤其是梁两和三层钢丝网。结果还表明,在空心梁的加固中,使用玻璃纤维或焊接钢丝网代替钢箍箍对破坏荷载、挠度、裂缝模式和剪应力有显著影响,尽管用钢丝网加固的梁明显更受青睐。
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来源期刊
CiteScore
1.50
自引率
0.00%
发文量
56
审稿时长
8 weeks
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