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首页> 外文期刊>European Journal of Environmental and Civil Engineering >Compressive behaviour of concrete elements confined with GFRP-prefabricated bonded shells
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Compressive behaviour of concrete elements confined with GFRP-prefabricated bonded shells

机译:GFRP预制粘结壳约束的混凝土构件的抗压性能

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摘要

In this paper, a new technique is proposed to confine concrete columns using GFRP-prefabricated bonded shells and a shrinkage-compensating cement mortar. The confinement is performed with three identical shells, each of which contains two stepped lap joints at their ends. The main advantage of this technique is that the shells can be directly assembled on site by structural bonding to cover any column shape. The gap between the shells and the column is filled with shrinkage-compensating cement mortar. To evaluate the efficiency of this technique, several concrete specimens were confined, instrumented and tested under monotonic compression. To simulate the actual strengthening conditions, the load was directly applied on the concrete cross-section. The results show clearly the benefits of an efficient confinement in terms of a noticeable increase in the axial strength and ductility where the stress-strain curves are characterised by a third softening phase and the failure mode which spread over the whole length of the shells.
机译:在本文中,提出了一种新技术来限制使用GFRP预制粘结壳和收缩补偿水泥砂浆的混凝土柱。用三个相同的壳体进行约束,每个壳体的末端都包含两个阶梯搭接接头。该技术的主要优点在于,可以通过结构键合将外壳直接现场组装以覆盖任何圆柱形状。壳与柱之间的间隙填充有补偿收缩的水泥砂浆。为了评估该技术的效率,在单调压缩下对几个混凝土试样进行了密闭,仪器化和测试。为了模拟实际的加固条件,将载荷直接施加到混凝土横截面上。结果清楚地显示了有效限制的好处,即轴向强度和延展性显着提高,其中应力-应变曲线的特征是第三软化阶段和破坏模式遍及壳体的整个长度。

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