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Behavior of hybrid high-strength fiber reinforced concrete slab-column connections under the effect of high temperature

机译:高温影响下混合高强纤维混凝土板-柱连接性能

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Concrete can be modified to perform in a more ductile form by the addition of randomly distributed discrete fibers in the concrete matrix. The combined effect of the addition of two types of fibers (steel fiber and polypropylene fiber with different percentages) to concrete matrix, which is called hybrid effect is currently under investigation worldwide. The current research work presents the conducted experimental program to observe the behavior of hybrid high strength reinforced concrete slab-column connections under the effect of high temperature. For this purpose, ten slab-column connections were casted and tested. The experimental program was designed to investigate the effect of different variables such as concrete mixture, column location and temperature fighting system. All specimens were exposed to a temperature of 500 °C for duration of two hours. To observe the effect of each variable, specimens were divided into four groups according to the studied parameters. The test results revealed that using hybrid high strength concrete HFHSC produced more strength in punching failure compared with high strength concrete HSC when exposed to elevated temperature. Fighting by air had higher initial crack load compared with that for without fighting and fighting by water. On the other hand, fighting by water decreased the ultimate load.
机译:通过在混凝土基体中添加随机分布的离散纤维,可以对混凝土进行改性,使其具有更好的延展性。目前正在全世界范围内研究将两种类型的纤维(具有不同百分比的钢纤维和聚丙烯纤维)添加到混凝土基质中的综合效果,即混合效果。当前的研究工作提出了进行的实验程序,以观察高温下混合高强度钢筋混凝土板-柱连接的行为。为此,铸造并测试了十个平板-柱连接。设计该实验程序来研究不同变量的影响,例如混凝土混合物,立柱位置和温度战斗系统。将所有样品暴露于500°C的温度下两个小时。为了观察每个变量的影响,根据研究的参数将标本分为四组。测试结果表明,与高强度混凝土HSC相比,使用混合高强度混凝土HFHSC在高温下产生的冲压破坏强度更高。与没有水战和空战相比,空战的初始裂纹载荷更高。另一方面,水战减少了最终负荷。

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