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首页> 外文期刊>International journal of geomechanics >Shaft Friction Characteristics of Two FRP Seawater Sea-Sand Concrete Piles in a Rock Socket with or without Debris
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Shaft Friction Characteristics of Two FRP Seawater Sea-Sand Concrete Piles in a Rock Socket with or without Debris

机译:两个FRP海水海砂混凝土桩轴摩擦特性,有或没有碎片的岩石插座

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摘要

The existence of debris at the bottom of a rock socket significantly influences the mechanical behavior of a rock-socketed pile. To investigate the effects of debris on shaft friction and load transfer characteristics of a rock-socketed fiber-reinforced polymer (FRP) seawater sea-sand concrete (SSC) pile, two physical model tests will be conducted in this study. Cyclic and monotonic loadings will be applied on the top of FRP-SSC model piles along the axial direction. The vertical strains inside the model piles will be monitored by embedded fiber Bragg grating (FBG) sensors, which will be used to calculate axial stress inside the pile and shaft friction at the pile-rock interface. From the monitoring results, the detailed distribution of load transfer and shaft friction in each model pile is obtained. A comparison of the results from the two model pile tests indicates that the shaft friction and the end-bearing stress were significantly influenced by debris at the bottom of the rock socket. Under cyclic loading and static loading, the mobilization of shaft friction is more dominant when debris existed than when it does not. The end-bearing stress was reduced due to the existence of debris.
机译:岩石插座底部的碎屑的存在显着影响岩石插座桩的力学行为。为了探讨碎屑对岩石纤维增强聚合物(FRP)海水海砂混凝土(SSC)桩的轴摩擦和载荷特性的影响,将在本研究中进行两项物理模型试验。循环和单调载荷将沿轴向施加在FRP-SSC模型桩的顶部上。型号桩内部的垂直菌株将由嵌入式光纤布拉格光栅(FBG)传感器监测,该传感器将用于计算桩岩界面内桩和轴摩擦内的轴向应力。从监测结果中,获得了每个模型桩中的负载转移和轴摩擦的详细分布。两种模型桩试验结果的比较表明,轴摩擦和终端承担的应力受到岩石底部底部的碎屑的显着影响。在循环载荷和静电负载下,当碎屑存在时,轴摩擦的动员更占主导地位。由于碎片存在,终端承受应力降低。

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