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Flexural behaviour of UHTCC-layered concrete composite beam subjected to static and fatigue loads

机译:UHTCC层合混凝土组合梁在静载荷和疲劳载荷作用下的抗弯性能

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摘要

As an engineered material, ultra-high toughness cementitious composite (UHTCC) exhibits the characteristics of pseudo strain hardening and multiple cracking under uniaxial tension. It can be applied as the reinforcing and protective material of concrete structures. In this paper, static and fatigue flexural tests were carried out on UHTCC-layered concrete composite beams, for which UHTCC layer was used on the tension side. Under both static and fatigue loads, plane section assumption was suitable for such composite beams, and a good bond strength was achieved between the two layers. For static specimens, the UHTCC layer enhanced the ductility of the concrete layer. While under cyclic loads, because of the reinforcing effect of UHTCC, more than one crack were formed in the concrete layer, which led to a ductile deformation. Furthermore, the fatigue damage process of the composite beam was analysed.
机译:作为一种工程材料,超高韧性水泥基复合材料(UHTCC)在单轴张力下具有拟应变硬化和多次开裂的特征。可用作混凝土结构的增强和保护材料。本文对UHTCC层混凝土组合梁进行了静力和疲劳挠曲试验,在受力侧使用了UHTCC层。在静载荷和疲劳载荷下,均假定平面截面适用于此类复合梁,并且在两层之间获得了良好的粘结强度。对于静态样品,UHTCC层增强了混凝土层的延展性。在循环荷载作用下,由于UHTCC的增强作用,在混凝土层中形成了多个裂纹,导致塑性变形。此外,分析了复合材料梁的疲劳损伤过程。

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