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首页> 外文期刊>Canadian Geotechnical Journal >Shaft resistance of driven cast-in-situ piles in sand
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Shaft resistance of driven cast-in-situ piles in sand

机译:沙子中打入现浇桩的轴心阻力

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摘要

Driven cast-in-situ (DCIS) piles are classified as a large displacement pile, despite sharing certain aspects of their construction with replacement pile types. However, there are relatively few case histories of load tests on DCIS piles in the literature to verify the assumption that they behave as large displacement piles. In particular, the shaft resistance of DCIS piles in sand is uncertain due to the complex interaction between the freshly cast concrete and surrounding displaced soil after extraction of the steel installation tube. This paper describes the installation, curing, and maintained compression load testing of three temporary-cased DCIS test piles at a uniform sand site near Coventry, United Kingdom. The piles were instrumented with vibrating wire strain gauges to enable accurate measurement of the local shear stress generated on the pile shaft during maintained compression loading. The tests showed that the peak average and local shear stresses tended to mobilize at greater shaft displacements than traditional preformed displacement piles during loading. A clear reduction in normalized local shear stresses (and hence radial effective stress) at failure with distance from the pile base, i.e., friction fatigue, was evident for all piles, implying that radial stresses generated during driven installation of the steel tube are not erased upon concreting and tube withdrawal. Furthermore, the inferred normalized radial effective stresses at failure were remarkably similar to those reported for traditional preformed displacement piles in the literature.
机译:尽管现浇驱动桩(DCIS)与替换桩类型共用某些构造方面,但仍被视为大排量桩。但是,文献中很少有对DCIS桩进行载荷测试的案例历史记录,以验证其表现为大位移桩的假设。尤其是,DCIS桩在沙子中的竖井阻力不确定,这是由于刚拔出钢管后刚浇筑的混凝土与周围的置换土壤之间存在复杂的相互作用。本文介绍了在英国考文垂附近的一块均匀的沙子现场,对三个临时装DCIS测试桩的安装,固化和维持压缩载荷测试的方法。用振动线应变仪对桩进行测量,以能够精确测量在保持压缩载荷期间在桩轴上产生的局部剪切应力。测试表明,在加载过程中,峰值平均应力和局部剪应力倾向于在比传统预制位移桩更大的竖井位移下移动。对于所有桩,随着桩距的增加,失效时归一化的局部剪应力(以及径向有效应力)的明显减小(即摩擦疲劳)对于所有桩都是明显的,这意味着在钢管驱动安装过程中产生的径向应力并未消除。在凝结和撤管时。此外,推断的归一化径向有效应力在破坏力上与文献中传统预制位移桩所报告的相似。

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