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Granular material behaviour along proportional strain loading paths

机译:沿比例应变加载路径的颗粒材料行为

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When granular materials are subjected to proportional strain loading paths, they manifest a variety of behaviours depending on the initial void ratio of the specimen as well as on the imposed dilatancy/contractancy rate. The specific behaviour of granular assemblies is linked not only to the local properties but also to the disordered nature of the grain packing. This can be expressed by a micromechanical description of the contact distribution. A micromechanical approach developed earlier for the modelling of granular material behaviour has been used to simulate proportional strain tests on loose and dense sand. The model is based on the description of the contact distribution within the granular assembly. The numerical simulations show that the model can accurately reproduce the macroscopic behaviour and, in addition, provide microstructural information. The results of the simulations show that the mechanical state of each contact - and therefore the overall behaviour of the granular assembly - is dependent on the direction of the macroscopic loading as well as on the geometrical description of the packing.
机译:当粒状材料经受成比例的应变加载路径时,它们会表现出多种行为,这取决于样品的初始空隙率以及所施加的膨胀率/收缩率。粒状组件的特定行为不仅与局部特性有关,而且与谷物包装的无序特性有关。这可以通过接触分布的微机械描述来表达。较早开发的用于模拟粒状材料行为的微机械方法已被用来模拟在松散和稠密的砂土上进行的比例应变测试。该模型基于粒状组件内接触分布的描述。数值模拟表明,该模型可以准确地再现宏观行为,并提供微观结构信息。仿真结果表明,每个触点的机械状态-进而是颗粒组件的整体行为-取决于宏观载荷的方向以及填料的几何形状。

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