钢筋混凝土结构剪切传递的计算机模拟与分析预测

IF 2.9 4区 工程技术 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Computers and Concrete Pub Date : 2020-08-01 DOI:10.12989/CAC.2020.26.2.151
M. N. Kataoka, A. Debs, D. Araújo, B. Martins
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引用次数: 0

摘要

本文通过有限元模拟和分析预测对钢筋混凝土裂缝间的剪切传递进行了评价。骨料互锁是裂缝两个滑移面剪切传递的机制之一;其他是销钉作用,当钢筋有助于抵抗一块剪切位移(钢筋)时,以及未开裂的混凝土由剪切阻力组成,直到第一个裂缝的发展。本研究的目的是建立一个描述z型推脱试样行为的三维数值模型,以确定界面在直接剪切作用下的黏聚力和摩擦角的特性。基于试验数据对数值模型进行了验证,并对混凝土强度的变化进行了参数化研究。将数值计算结果与解析预测结果进行了比较,提出了预测开裂混凝土最大剪应力的新公式。
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Computer modeling and analytical prediction of shear transfer in reinforced concrete structures
This paper presents an evaluation of shear transfer across cracks in reinforced concrete through finite element modelling (FEM) and analytical predictions. The aggregate interlock is one of the mechanisms responsible for the shear transfer between two slip surfaces of a crack; the others are the dowel action, when the reinforcement contributes resisting a parcel of shear displacement (reinforcement), and the uncracked concrete comprised by the shear resistance until the development of the first crack. The aim of this study deals with the development of a 3D numerical model, which describes the behavior of Z-type push-off specimen, in order to determine the properties of interface subjected to direct shear in terms cohesion and friction angle. The numerical model was validated based on experimental data and a parametric study was performed with the variation of the concrete strength. The numerical results were compared with analytical predictions and a new equation was proposed to predict the maximum shear stress in cracked concrete.
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来源期刊
Computers and Concrete
Computers and Concrete 工程技术-材料科学:表征与测试
CiteScore
8.60
自引率
7.30%
发文量
0
审稿时长
13.5 months
期刊介绍: Computers and Concrete is An International Journal that focuses on the computer applications in be considered suitable for publication in the journal. The journal covers the topics related to computational mechanics of concrete and modeling of concrete structures including plasticity fracture mechanics creep thermo-mechanics dynamic effects reliability and safety concepts automated design procedures stochastic mechanics performance under extreme conditions.
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