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Effect of concrete cover on the bond-slip behavior between steel section and concrete in SRC structures

机译:混凝土覆盖层对SRC结构中钢截面与混凝土粘结滑移性能的影响

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The concrete cover is one of the key factors affecting the bond performance of steel reinforced concrete (SRC) structures. The main objective of this paper was to study the effect of concrete cover on the bond-slip behavior between steel section and concrete in SRC structures. Firstly, push-out tests on SRC specimens were conducted and the failure modes, bond stress-slip curves as well as strain distribution of the specimens were investigated. The experimental results indicated that the bond strength of steel section encased in concrete could be significantly improved by increasing the concrete cover due to the enhancement in the concrete confining effect. As the concrete cover increased from 90 mm to 170 mm, the initial bond stress, ultimate bond stress, and residual bond stress increased by 76.9%, 46.6%, and 97.2%, respectively. The concrete cover also had a considerable impact on the initial and residual slips between the steel section and concrete. Further, nonlinear finite element models of push-out tests were established and verified against the test results. The numerical results demonstrated that there were three shear mechanisms including chemical adhesion, static friction, and sliding friction performing differently at each loading stage. Finally, a parametric study was carried out based on the verified FE models. Four cracking patterns of the concrete surface were observed with the variation of the ratio of concrete cover to the clear distance between the flange tip and the web side surface of concrete. (C) 2019 Elsevier Ltd. All rights reserved.
机译:混凝土保护层是影响钢筋混凝土结构粘结性能的关键因素之一。本文的主要目的是研究混凝土覆盖层对SRC结构中钢截面与混凝土之间的粘结滑移行为的影响。首先,对SRC试件进行了推拉试验,研究了试件的破坏模式,粘结应力-滑移曲线以及应变分布。实验结果表明,由于提高了混凝土围护效果,可以通过增加混凝土覆盖率来显着提高混凝土中钢截面的粘结强度。随着混凝土覆盖层从90毫米增加到170毫米,初始粘结应力,极限粘结应力和残余粘结应力分别增加了76.9%,46.6%和97.2%。混凝土覆盖层还对钢型材和混凝土之间的初始滑移和残余滑移产生了很大影响。此外,建立了推出试验的非线性有限元模型,并针对测试结果进行了验证。数值结果表明,在每个加载阶段存在三种剪切机制,包括化学粘附,静摩擦和滑动摩擦。最后,基于已验证的有限元模型进行了参数研究。观察到混凝土表面的四个开裂模式,随混凝土覆盖率与法兰顶边和混凝土腹板侧面之间的净距离的变化而变化。 (C)2019 Elsevier Ltd.保留所有权利。

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