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通过无粘性弹性颗粒模型系统的应力传递。

Stress transmission through a model system of cohesionless elastic grains.

作者信息

Rajchenbach J

机构信息

Laboratoire des Milieux Desordonnes et Heterogenes (UMR 7603 CNRS), Case 86, Universite P. et M. Curie, Paris, France.

出版信息

Nature. 2000 Aug 17;406(6797):708-10. doi: 10.1038/35021023.

Abstract

Understanding the mechanical properties of granular materials is important for applications in civil and chemical engineering, geophysical sciences and the food industry, as well as for the control or prevention of avalanches and landslides. Unlike continuous media, granular materials lack cohesion, and cannot resist tensile stresses. Current descriptions of the mechanical properties of collections of cohesionless grains have relied either on elasto-plastic models classically used in civil engineering, or on a recent model involving hyperbolic equations. The former models suggest that collections of elastic grains submitted to a compressive load will behave elastically. Here we present the results of an experiment on a two-dimensional model system--made of discrete square cells submitted to a point load--in which the region in which the stress is confined is photoelastically visualized as a parabola. These results, which can be interpreted within a statistical framework, demonstrate that the collective response of the pile contradicts the standard elastic predictions and supports a diffusive description of stress transmission. We expect that these findings will be applicable to problems in soil mechanics, such as the behaviour of cohesionless soils or sand piles.

摘要

了解颗粒材料的力学性能对于土木和化学工程、地球物理科学以及食品工业中的应用,以及对雪崩和山体滑坡的控制或预防而言都很重要。与连续介质不同,颗粒材料缺乏内聚力,无法抵抗拉应力。目前对于无粘性颗粒集合体力学性能的描述,要么依赖于土木工程中经典使用的弹塑性模型,要么依赖于一个涉及双曲线方程的最新模型。前一种模型表明,承受压缩载荷的弹性颗粒集合体将表现出弹性行为。在此,我们展示了在一个二维模型系统上进行的实验结果,该系统由承受点载荷的离散方形单元组成,其中应力受限的区域通过光弹性被可视化为一条抛物线。这些结果可以在一个统计框架内得到解释,表明桩体的集体响应与标准弹性预测相矛盾,并支持对应力传递的扩散描述。我们预计这些发现将适用于土壤力学中的问题,例如无粘性土壤或砂桩的行为。

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