Shear Behavior of Slender Ferro cement Box Beams

A. Chkheiwer, M. A. Al-Mazini, M. S. Zewair
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引用次数: 3

Abstract

This study investigated (experimentally and analytically) the influence of mortar compressive strength (37.4, 48.3 and 60.1 MPa) and the number of wire mish layer in web and bottom flange on the shear behavior of ferrocement slender box beams. To achieve these targets, 12 ferrocement box beams with shear span to effective depth ratio(a/d) of 2.8 (slender beams) are equipped, tested and assessed, all beams having cross section of 300*175 mm, length of 2000 mm and hollow core of 180*115 mm. The tested beams were divided into four groups, each group consists of three beams depending on compressive strength value, the first group was without wire mish, the second group was with one layer of wire mish in web and bottom flange, the third group was two layers of wire mish in web and one in bottom flange and the fourth group was with two layers of wire mish in web and bottom flange. As well as ANSYS-11 program was used to analyze these beams by nonlinear finite element method. Test results showed that, the first cracking and ultimate loads increases as the wire mish layers in web and bottom flange increases, the deflection of the tested beams decreases with increasing mortar compressive strength and wire mish layers in web and bottom flange, the finite element model gives good agreement with the experimental results within 9%. ARTICLE INFO
钢筋水泥细长箱梁的抗剪性能
研究了砂浆抗压强度(37.4 MPa、48.3 MPa和60.1 MPa)、腹板和底翼缘钢丝层数对钢筋混凝土细长箱梁抗剪性能的影响。为了实现这些目标,安装了12根剪跨与有效深度比(a/d)为2.8的钢筋混凝土箱梁(细长梁),进行了测试和评估,所有梁的截面均为300*175 mm,长度为2000 mm,空心芯为180*115 mm。试验梁按抗压强度分为四组,每组由三根梁组成,第一组无钢筋丝缺陷,第二组腹板和底翼缘有一层钢筋丝缺陷,第三组腹板有两层钢筋丝缺陷,底翼缘有一层钢筋丝缺陷,第四组腹板和底翼缘有两层钢筋丝缺陷。并利用ANSYS-11程序对这些梁进行了非线性有限元分析。试验结果表明,随着腹板和底翼缘钢丝层数的增加,试验梁的首次开裂和极限荷载增大;随着砂浆抗压强度和腹板和底翼缘钢丝层数的增加,试验梁的挠度减小,有限元模型与试验结果吻合在9%以内。条信息
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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