Effect of cohesion, the friction angle and the time under static loading on the behavior of piles

H. Benyaghla
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Abstract

Abstract The calibration chamber of the 3SR INPG laboratory in Grenoble used to study the point stress and the shear, mobilized along the shaft of the pile under monotonic axial loading. The physical model used for the various tests is a standard mini-pile installed in standard sand: Fontainebleau sand. This article explores the induced effects on the bearing shear capacity of the pile as a function of time, up to the point of failure, under different monotonic loads applied after periods of rest. A series of monotonic static loading tests, were performed on the pile. Tensile load tests, uplift, were performed before and after each series of static loads. A Lateral stress was observed at the start of the experiment at the pile-soil interface. It disappears as soon as the pile is driven into the soil, due to the dilatancy of the soil. This observed phenomenon is probably due to a decrease in non-mobilized lateral friction at the start of the experiment. A study of this phenomenon will be described in this article. Likewise, the effect of the mechanical characteristics of the soil and the effect of time will be presented in the bearing capacity of the soil, as well as the total bearing capacity of the pile under monotonic static loading.
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静力荷载作用下黏聚力、摩擦角和时间对桩体性能的影响
摘要:采用德国格勒诺布尔3SR INPG实验室的标定室,对单调轴向荷载作用下沿桩身的点应力和剪切进行了研究。用于各种测试的物理模型是安装在标准砂中的标准迷你桩:枫丹白露砂。本文探讨了在静息期后施加不同单调荷载的情况下,直到破坏点,对桩的承载剪切能力的诱导效应作为时间的函数。对该桩进行了一系列单调静荷载试验。拉伸载荷试验,提升,在每一系列静载荷之前和之后进行。试验开始时,在桩-土界面处观察到侧应力。由于土的膨胀,一旦桩打入土中,它就消失了。这种观察到的现象可能是由于在实验开始时,非动员侧摩擦的减少。本文将描述对这一现象的研究。同样,土体力学特性的影响和时间的影响也会体现在土体的承载力上,以及单调静荷载作用下桩的总承载力上。
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