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Analysis on bearing performance of Y-shaped piles under compressive and tensile loading

机译:Y形桩在压拉荷载作用下的承载性能分析

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摘要

Y-shaped piles, characterised by three concave arches, are adopted in practice as they exhibit advantages over conventional circular piles. To facilitate their practical design, eight model tests were conducted in dry sand on Y-shaped piles (Y-1 and Y-2) and circular cross-sectional piles (C-1 with the same section area A(p) as pile Y-2 and C-2 with larger A(p) but the same perimeter as Y-2). Under compressive or tensile load, the tests provided load-settlement (displacement) data and the distributions of resistance along the pile shaft and at the pile base. The tests revealed the expansion (compressive loading) and contraction (tensile loading) effects on the pile capacity for the Y-shaped sections. Pile Y-2 had a 70% larger ultimate capacity than pile C-1. It induced a shaft resistance over 100% larger than that of C-1 and 15% larger than that of C-2. The ratio of ultimate tensile capacity to ultimate capacity (about 0.15) of the short Y-shaped piles was much lower than that of in situ piles. A simple expression considering shape effects was established to estimate the ultimate capacity of a pile under compressive loading and the results compared well with the model tests. Compared with the circular piles, the Y-shaped piles showed increases of 15% and 30% in shaft and base resistance, respectively, for compressive loading.
机译:在实践中采用具有三个凹拱的Y型桩,因为它们具有优于常规圆形桩的优势。为了便于进行实际设计,在干砂中对Y形桩(Y-1和Y-2)和圆形截面桩(C-1,截面面积A(p)与Y桩相同)进​​行了八次模型试验。 -2和C-2,且A(p)较大,但周长与Y-2相同。在压缩或拉伸载荷下,这些测试提供了载荷沉降(位移)数据以及沿桩身和桩基的阻力分布。测试表明,Y形截面的膨胀(压缩荷载)和收缩(拉伸荷载)对桩的承载能力有影响。 Y-2桩的极限承载力比C-1桩大70%。它引起的轴阻力比C-1大100%,比C-2大15%。短Y形桩的极限抗拉承载力与极限承载力之比(约0.15)远低于原位桩。建立了一个考虑形状效应的简单表达式,以估算压缩载荷下桩的极限承载力,并将结果与​​模型测试进行了比较。与圆形桩相比,Y形桩在压缩载荷下的竖井和基础阻力分别增加了15%和30%。

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