Structural behavior of concrete walls reinforced with ferrocement laminates

IF 2.2 4区 工程技术 Q2 ENGINEERING, CIVIL
Y. Shaheen, H. M. Refat, A. M. Mahmoud
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引用次数: 2

Abstract

The present work focuses on experimental and numerical performance of the ferrocement RC walls reinforced with welded steel mesh, expanded steel mesh, fiber glass mesh and tensar mesh individually. The experimental program comprised twelve RC walls having the dimensions of 450 mmx100 mmx1000 mm under concentric compression loadings. The studied variables are the type of reinforcing materials, the number of mesh layers and volume fraction of reinforcement. The main aim is to assess the influence of engaging the new inventive materials in reinforcing the composite RC walls. Non-linear finite element analysis; (NLFEA) was carried out to simulate the behavior of the composite walls employing ANSYS-10.0 Software. Parametric study is also demonstrated to check out the variables that can mainly influence the mechanical behavior of the model such as the change of wall dimensions. The obtained numerical results indicated the acceptable accuracy of FE simulations in the estimation of experimental values. In addition, the strength gained of specimens reinforced with welded steel mesh was higher by amount 40% compared with those reinforced with expanded steel mesh. Ferrocement specimens tested under axial compression loadings exhibit superior ultimate loads and energy absorbing capacity compared to the conventional reinforced concrete one.
钢筋层板加固混凝土墙体的结构性能
本文主要研究了焊接钢网、膨胀钢网、玻璃纤维网和张拉网分别加固钢筋混凝土墙的试验和数值性能。实验方案包括12个RC墙,尺寸为450mmx100mmx1000mm,在同心压缩载荷下。研究的变量是增强材料的类型、网格层数和增强材料的体积分数。主要目的是评估参与新的发明材料在增强复合RC墙的影响。非线性有限元分析;采用ANSYS-10.0软件对复合墙体的受力特性进行了模拟。通过参数化研究,找出了墙体尺寸变化等主要影响模型力学行为的变量。得到的数值结果表明,有限元模拟对实验值的估计具有可接受的精度。此外,焊接钢网加固试件的强度比膨胀钢网加固试件的强度提高了40%。在轴压荷载作用下,钢筋混凝土试件表现出比普通钢筋混凝土更强的极限荷载和吸能能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Structural Engineering and Mechanics
Structural Engineering and Mechanics 工程技术-工程:机械
CiteScore
3.80
自引率
18.20%
发文量
0
审稿时长
11 months
期刊介绍: The STRUCTURAL ENGINEERING AND MECHANICS, An International Journal, aims at: providing a major publication channel for structural engineering, wider distribution at more affordable subscription rates; faster reviewing and publication for manuscripts submitted; and a broad scope for wider participation. The main subject of the Journal is structural engineering concerned with aspects of mechanics. Areas covered by the Journal include: - Structural Mechanics - Design of Civil, Building and Mechanical Structures - Structural Optimization and Controls - Structural Safety and Reliability - New Structural Materials and Applications - Effects of Wind, Earthquake and Wave Loadings on Structures - Fluid-Structure and Soil-Structure Interactions - AI Application and Expert Systems in Structural Engineering. Submission of papers from practicing engineers is particularly encouraged.
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