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Effect of mechanical connectors on interface shear strength between concrete substrates and UHPC: Experimental and numerical studies and proposed design equation

机译:机械连接器对混凝土基板与UHPC界面剪切强度的影响:实验和数值研究和建议设计方程

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Composite concrete sections are used in new construction such as bridge deck overlay or in repairing and retrofitting existing concrete elements in buildings and bridges. One important property to achieve composite action between two concrete segments is "interface shear strength," which should be sufficient enough to prevent any excessive sliding or slippage. There are sufficient experimental studies and code design equations related to interface shear strength between two concrete segments; however, there is a lack in similar studies and design equations between ultra-high performance concrete (UHPC) and concrete substrates, especially with the presence of mechanical connectors. Thirty-nine specimens were tested using a modified push-off test apparatus to evaluate the interface shear strength for a combination of different surface treatments and different reinforcement ratios for mechanical connectors. These treatments included smooth surface (as-cast) and rough surface with sandblasting. The reinforcement ratio ranged between 0 and 0.012 for each surface treatment. The experimental results showed that surface treatment of the interface and reinforcement ratio of the mechanical connectors significantly affects interface shear strength. The results from experimental testing were used to develop a design equation to estimate interface shear strength following AASHTO-LRFD approach in terms of cohesion (adhesion combined with aggregate interlock) and friction (clamping force). It was concluded that the current AASHTO-LRFD values for cohesion and friction coefficients between two concrete surfaces are considered conservative in the case of UHPC and concrete substrates. Besides, numerical modelling was conducted to calibrate interface model parameters with sufficient acceptance. The findings of the experimental and numerical studies and the proposed design equation can help engineers and researchers to estimate the interface shear strength between UHPC and concrete substrates with the presence of mechanical connectors. (C) 2020 Elsevier Ltd. All rights reserved.
机译:复合混凝土部分用于新的结构,如桥式甲板覆盖或在建筑物和桥梁中修复和改造现有的混凝土元件。在两个混凝土段之间实现复合动作的一个重要性质是“界面剪切强度”,应该足以防止任何过度滑动或滑动。有足够的实验研究和与两个混凝土段之间的界面剪切强度相关的代码设计方程;然而,在超高性能混凝土(UHPC)和混凝土基板之间存在类似的研究和设计方程,特别是在存在机械连接器的情况下。使用改进的推式试验装置测试了三十九种样本,以评估不同表面处理和机械连接器的不同增强比的组合的界面剪切强度。这些处理包括光滑的表面(浇铸)和具有喷砂的粗糙表面。每个表面处理的增强比率范围为0和0.012。实验结果表明,机械连接器的界面和加固率的表面处理显着影响了界面剪切强度。实验测试的结果用于开发设计方程,以在Aashto-LRFD方法方面,在凝聚力(粘合与聚集互锁的粘合)和摩擦(夹紧力)方面之后估计界面剪切强度。得出结论是,在UHPC和混凝土基板的情况下,两个混凝土表面之间的粘合和摩擦系数的当前AASHTO-LRFD值被认为是保守的。此外,对数值建模进行了足够的接受校准界面模型参数。实验和数值研究的结果和所提出的设计方程可以帮助工程师和研究人员估算UHPC和混凝土基板之间的界面剪切强度,并且存在机械连接器。 (c)2020 elestvier有限公司保留所有权利。

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