Shear behavior of shallow-wide beams strengthened by external SHCC jacket

Q2 Engineering
Yasser Tosson Mohamed, S. Taher, A. Nagy, S. Mahfouz
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引用次数: 2

Abstract

ABSTRACT Shallow wide beams in structural systems are a good solution for many architectural constraints. In addition, these beams give construction time saving because of the simplicity of formwork and reinforced placement. Structural deficiency arises in the ultimate shear capacity of such beams as some codes neglect the contribution of shear reinforcement. Shear strengthening by Strain-Hardening Cementations Composites (SHCC) in form of a 2-sided or u-shaped jacket along shear spans provides a reliable solution.SHCC is an engineered cementitious composite having far superior to conventional cement mortar and has ingredients to contribute most optimally and efficiently to the various properties. The objective of this research is to study the shear behavior of shallow wide beams strengthened in shear with external SHCC layers along with the effect of vertical stirrups on the shear strength of shallow wide beams. An experimental program consisting of eleven specimens divided into three groups has been carried out. The investigation focused on studying the shear behavior of shallow wide beam with and without stirrups, examining the effect of thickness and grade of SHCC as a shear strengthening technique with various jacketing patterns with and without inserted external stirrups. The experimental results are further compared with predictions of particular international code provisions. Based on the comparative analysis of the conservative code's predictions for shallow beams, a modification is proposed to improve the predictions of the Egyptian code’s provisions for ultimate shear. The suggested equations account for the shear span to depth ratio, longitudinal reinforcement ratio, size effect, jacketing confinement, inclination of the compressive stresses to the beam axis besides the concrete/SHCC grades.
SHCC外护套加固浅宽梁的剪切性能
结构系统中的浅宽梁是解决许多建筑约束的好方法。此外,由于模板和钢筋浇筑的简单性,这些梁可以节省施工时间。由于某些规范忽略了抗剪钢筋的作用,此类梁的极限抗剪承载力出现了结构缺陷。通过应变硬化水泥基复合材料(SHCC)沿着剪切跨度以双面或u形夹套的形式进行剪切加固提供了可靠的解决方案。SHCC是一种工程水泥基复合材料,其性能远远优于传统水泥砂浆,其成分对各种性能的贡献最为优化和有效。本研究的目的是研究外SHCC层加固的浅宽梁的抗剪性能,以及竖向箍筋对浅宽梁抗剪强度的影响。已经执行了一个由11个样本组成的实验程序,这些样本被分为三组。研究的重点是研究有箍筋和无箍筋的浅宽梁的剪切性能,检验SHCC作为一种具有不同夹套模式的抗剪加固技术(有无插入外部箍筋)的厚度和等级的影响。实验结果进一步与特定国际规范条款的预测进行了比较。在对保守规范对浅梁的预测进行比较分析的基础上,提出了一种修改方案,以改进埃及规范对极限剪力规定的预测。建议的方程考虑了剪力跨深比、纵向配筋率、尺寸效应、夹套约束、压应力相对于梁轴线的倾斜,以及混凝土/SHC等级。
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
CiteScore
2.00
自引率
0.00%
发文量
9
审稿时长
52 weeks
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