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Mechanical behaviour and failure of cohesive granular materials

机译:粘结性粒状材料的力学行为和破坏

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摘要

We investigate the stress-strain behaviour and failure of a cohesive granular material both by experiments and numerical simulations. The material is an assembly of aluminium rods glued together by means of an epoxy resin. The behaviour of cohesive bonds (force-displacement relationship, failure conditions) is characterized by performing simple loading tests (tension/compression, shear...) on a couple of rods. Then, this local behaviour is introduced in a numerical code based on a discrete element method in order to perform numerical compression tests on large samples. The validation of this approach was the main goal of the present investigation that is essentially achieved by a direct comparison between the numerical results and similar experimental tests. As a basic application, we derive the macroscopic cohesion and friction characteristics of random cohesive materials by systematic numerical simulations in a biaxial geometry.
机译:我们通过实验和数值模拟研究了粘性颗粒材料的应力应变行为和破坏。该材料是铝棒的组合,这些铝棒通过环氧树脂粘合在一起。内聚键的行为(力-位移关系,破坏条件)的特征是在几个杆上执行简单的载荷测试(拉伸/压缩,剪切...)。然后,将这种局部行为引入基于离散元素方法的数字代码中,以便对大样本执行数字压缩测试。这种方法的验证是当前研究的主要目标,该目标基本上是通过直接比较数值结果和相似的实验测试来实现的。作为基本应用,我们通过在双轴几何中进行系统的数值模拟,得出了随机内聚材料的宏观内聚和摩擦特性。

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