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Pseudo-static low cycle test on the mechanical behavior of PHC pipe piles with consideration of soil-pile interaction

机译:考虑土-桩相互作用的PHC管桩力学性能拟静力低周试验

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Pre-stressed high-strength concrete (PHC) pipe piles have been widely used in the pile foundations of buildings and bridges which are usually designed elastic based on the capacity design principle. However, when the PHC pipe pile comes to the foundations of Integral Abutment Jointless Bridges (IAJBs), limited ductility might apply in order to accommodate the relatively large deformation demand under the effect of temperature fluctuations or earthquake. The conventional design methods for PHC pipe piles remain in doubt. This paper focuses on low cycle pseudo-static tests on 4 PHC pipe-pile models with various pre-stress levels to gain insight into their mechanical behaviors with consideration of soil-pile interaction. Medium sand was employed in the tests. The details of the experiments are introduced, including design of the models, instrumentation and loading scheme. The testing results indicate that the damages of the PHC pipe piles are mainly concentrated at 4D to 8D of embedded depths. Moreover, the pre-stress level and reinforcement ratio have a significant influence on the failure mode of PHC pipe piles, especially on the distribution of internal force and moment along piles. It is found that the interaction effect of pile-soil strengthens with the pre-stress level which is beneficial to the seismic performance. Furthermore, the backbone of the PHC pipe piles model has four stages: elastic, elastic-plastic, plastic hardening, and failure. It is concluded that PHC pipe piles perform favorably plastic and ductile behavior, and their failure modes are flexural (bending) not brittle (shear). Finally, the PHC pipe pile has an appreciable energy dissipation and deformation capacity, and hence can be used for pile foundations in IAJBs.
机译:预应力高强度混凝土(PHC)管桩已广泛用于建筑物和桥梁的桩基,这些桩基通常根据承载力设计原理进行弹性设计。但是,当PHC管桩成为整体桥台无接缝桥(IAJB)的基础时,可能会施加有限的延性,以适应在温度波动或地震的影响下相对较大的变形需求。 PHC管桩的常规设计方法仍存在疑问。本文着重于对具有不同预应力水平的4种PHC管桩模型的低周伪静态测试,以在考虑土桩相互作用的情况下深入了解其力学行为。测试中使用中砂。介绍了实验的详细信息,包括模型的设计,仪表和加载方案。测试结果表明,PHC管桩的损伤主要集中在埋深的4D至8D。此外,预应力水平和配筋率对PHC管桩的破坏模式有重要影响,特别是对沿桩的内力和力矩分布有很大影响。结果表明,桩土相互作用的作用随着预应力水平的提高而增强,有利于抗震性能的提高。此外,PHC管桩模型的主干包括四个阶段:弹性,弹塑性,塑性硬化和破坏。结论是,PHC管桩具有良好的塑性和延性性能,其破坏模式是弯曲(弯曲)而不是脆性(剪切)。最后,PHC管桩具有显着的能量消散和变形能力,因此可用于IAJB中的桩基。

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