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首页> 外文期刊>Comptes rendus. Mecanique >Discrete numerical investigation of the ratcheting phenomenon in granular materials [Analyse numérique discrète du phénomène de cliquet dans les matériaux granulaires]
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Discrete numerical investigation of the ratcheting phenomenon in granular materials [Analyse numérique discrète du phénomène de cliquet dans les matériaux granulaires]

机译:颗粒材料中棘轮现象的离散数值研究

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摘要

Several relevant geotechnical works, such as railway and road embankments, offshore foundations and vibrating machine foundations, are affected by the progressive accumulation of irreversible settlements. These latter represent the macroscopic evidence of the progressive rearrangement of particles under cycling loading, which is commonly referred to, in the literature, as ratcheting. This phenomenon is well known, but it is quite difficult to describe it by means of an appropriate constitutive model. As a consequence, the evaluation of durability of the aforementioned structures remains an open problem. In this article, the phenomenon will be approached by employing a Distinct Element model capable of describing the evolution of the microstructure induced by cyclic mechanical perturbations. Several analyses are performed in order to stress the influence of both the stress level and loading history on the mechanical response of a numerical model of a sand specimen. The numerical analyses are intended to provide an experimental background for conceiving a simplified macro approach based on generalised plasticity theory. In particular by means of probe test the plastic potential and the hardening parameters will be defined as a function of the current stress state and loading history.
机译:不可逆转的沉降物的逐渐堆积会影响一些相关的岩土工程,例如铁路和公路路堤,海上基础和振动机器基础。后者代表了在循环载荷下颗粒逐渐重排的宏观证据,在文献中通常将其称为棘轮。这种现象是众所周知的,但是很难通过适当的本构模型对其进行描述。结果,对上述结构的耐久性的评估仍然是未解决的问题。在本文中,将通过采用能够描述由周期性机械扰动引起的微观结构演变的“离散元”模型来处理该现象。为了强调应力水平和加载历史对砂试样数值模型的机械响应的影响,进行了一些分析。数值分析旨在为基于广义可塑性理论的简化宏观方法提供实验背景。特别地,通过探针测试,可塑性势和硬化参数将被定义为当前应力状态和载荷历史的函数。

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