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Load-Bearing Characteristics of Large-Diameter Rock-Socketed Piles Based on Ultimate Load Tests

机译:基于极限载荷测试的大直径摇杆桩承载特性

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As part of a large converter project in Shandong Province, vertical static load tests and internal force tests were conducted on three large-diameter rock-socketed piles, their load transfer mechanism was clarified, and the ultimate side resistance and ultimate resistance performance characteristics of the rock-socketed sections were analyzed. The test results showed that the three test piles were damaged under maximum loading, the Q-s curve exhibited a steep drop, the pile compression was around 1.2 times the pile diameter, and the bearing capacity of a single pile did not meet the design requirements. The side and end resistances of the three test piles all reached their ultimate values, but the ultimate side resistance was lower than the lower limit of the recommended value in the current technical code for building pile foundations. The end resistance under maximum loading accounted for 38.4–53.8% of the peak load, which was relatively high. By comparing it with other studies, there was no significant correlation between the coefficient of rock ultimate side resistance of the rock-socketed segment and the pile diameter of the rock-socketed segment. However, the coefficient of ultimate resistance increased gradually with the pile diameter. However, the latter correlation was not significant when the pile diameter was less than 1000?mm.
机译:作为山东省大型转换器项目的一部分,垂直静载试验和内部力试验在三个大直径摇杆桩上进行,澄清了其负载转移机制,以及最终的侧电阻和最终阻力性能特征分析了岩石插座部分。测试结果表明,三个试验桩在最大负荷下损坏,Q-S曲线表现出陡坡,桩压缩约为桩直径约为1.2倍,单桩的承载力不符合设计要求。三个测试桩的一侧和最终电阻都达到了最终的值,但最终的侧电阻低于建立桩基础的当前技术代码中推荐值的下限。最大负荷的最终电阻占峰值负荷的38.4-53.8%,这相对较高。通过将其与其他研究进行比较,岩石插座段的岩石终极侧电阻系数与岩石插座段的桩直径之间没有显着的相关性。然而,通过桩直径逐渐增加最终电阻系数。然而,当桩直径小于1000Ωmm时,后一种相关性并不重要。

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