A Study of Vertical Load Capacity of Carbon Fiber Concrete Piles Reinforced with Geosynthetics

El-Sayed A. El-Kasaby, Mohab Roshdy, Noaman A. Emara
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Abstract

A compressive static load test was conducted on a total of thirteen end-bearing carbon fiber concrete piles reinforced with geosynthetics, which were divided into four groups and compared to traditional reinforced concrete piles. The tested piles included one reference concrete pipe pile reinforced with traditional steel reinforcement, four concrete pipe piles partially reinforced with carbon fiber bristles with different percentages of 0.75%, 1.00%, 1.25%, and 1.50% of cement weight, four piles partially reinforced with the same carbon fiber bristles percentages and confined with triaxial geogrid, and four piles partially reinforced with the exact carbon fiber bristle percentages and reinforced with carbon fiber bars. Thirteen vertical static loading tests (SLTs) were conducted on 1050-mm-long pipe piles with a diameter of 150 mm to obtain the behavior of these composite piles. Furthermore, the traditional method of stress-strain curves was analyzed. Comparisons between curves were conducted. It was concluded that the use of these composite piles significantly increased the ultimate vertical load capacity by up to 39%. Pile ductility was also significantly improved, and this composite material could be perfectly applied in geotechnical conditions. In addition, an economic analysis was conducted.
土工合成材料加筋碳纤维混凝土桩竖向承载力研究
对13根经土工合成材料加固的端承碳纤维混凝土桩进行静压试验,并将其分为4组,与传统的钢筋混凝土桩进行对比。试验桩包括1根采用传统钢筋加固的参考混凝土管桩,4根采用水泥比重0.75%、1.00%、1.25%、1.50%不同比例碳纤维刷毛部分加固的混凝土管桩,4根采用相同比例碳纤维刷毛部分加固并采用三轴土工格栅约束的混凝土管桩,以及4根采用相同比例碳纤维刷毛部分加固并采用碳纤维棒加固的混凝土管桩。对直径为150mm、长度为1050mm的管桩进行了13次竖向静荷载试验,获得了管桩的受力特性。对传统的应力-应变曲线法进行了分析。曲线之间进行了比较。结果表明,复合桩的使用显著提高了竖向极限承载力,最高可达39%。桩的延性也得到了明显的改善,这种复合材料可以很好地应用于岩土工程。此外,还进行了经济分析。
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