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Experimental and numerical study on bond strength between conventional concrete and Ultra High-Performance Concrete (UHPC)

机译:常规混凝土与超高性能混凝土(UHPC)粘结强度的试验和数值研究

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Ultra High-Performance Concrete (UHPC) has made progress in the bridge and building industry owing to its high strength, ductility, and durability. UHPC is a relatively expensive material and is mostly used in conjunction with conventional concrete. Such composite structures should be designed considering the interaction of different concrete layers. Generally, the simplest interaction model to simulate the complex behavior at the interface is 'tie' model, but simulation results may lead to an overestimation of load capacity.This study investigates a more realistic numerical approach comparing to tie interaction model, and its capability to predict the load capacity of structures where substrate concrete is joined to or repaired with an overlay concrete. This modeling technique uses an interface plane between the concrete layers. By calibrating the interface properties, designers can make a reliable prediction about the behavior of the composite structures. The numerical concept is evaluated when UHPC is employed as an overlay and normal strength concrete as substrate section. First, an experimental test program is performed on a series of composite specimens to characterize the bond performance between conventional concrete layers as well as regular concrete and UHPC. To validate the model, third-point loading beam, direct shear, and slant shear tests were performed. The numerical model is then used to evaluate the mechanism of force transfer at the interface between two materials. The results indicate that employing this modeling approach has the capability to provide a better estimation of the failure loads when compared to the tied model.
机译:超高性能混凝土(UHPC)由于其高强度,延展性和耐用性而在桥梁和建筑行业中取得了进步。 UHPC是一种相对昂贵的材料,通常与常规混凝土一起使用。设计此类复合结构时应考虑不同混凝土层之间的相互作用。通常,模拟界面处复杂行为的最简单的交互模型是``联系''模型,但仿真结果可能会导致高估负载能力。预测将基础混凝土连接到或用表层混凝土修复的结构的承载能力。这种建模技术使用混凝土层之间的界面平面。通过校准界面属性,设计人员可以对复合结构的行为做出可靠的预测。当将UHPC用作覆盖层并将法向强度混凝土用作基材截面时,将评估数值概念。首先,对一系列复合试样进行实验测试,以表征常规混凝土层以及常规混凝土和UHPC之间的粘结性能。为了验证模型,进行了第三点加载梁,直接剪切和倾斜剪切测试。然后使用数值模型来评估两种材料之间的界面处的力传递机制。结果表明,与捆绑模型相比,采用这种建模方法能够更好地估计破坏载荷。

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