胶凝的
材料科学
离散元法
开裂
结构工程
粒状材料
Timoshenko梁理论
复合材料
弯曲
计算机科学
机械
梁(结构)
水泥
物理
工程类
作者
Nicholas J. Brown,J.F. Chen,Jin Y. Ooi
出处
期刊:Granular Matter
[Springer Science+Business Media]
日期:2014-04-02
卷期号:16 (3): 299-311
被引量:132
标识
DOI:10.1007/s10035-014-0494-4
摘要
There is an increasing use of the discrete element method (DEM) to study cemented (e.g. concrete and rocks) and sintered particulate materials. The chief advantage of the DEM over continuum based techniques is that it does not make assumptions about how cracking and fragmentation initiate and propagate, since the DEM system is naturally discontinuous. The ability for the DEM to produce a realistic representation of a cemented granular material depends largely on the implementation of an inter-particle bonded contact model. This paper presents a new bonded contact model based on the Timoshenko beam theory which considers axial, shear and bending behaviour of the bond. The bond model was first verified by simulating both the bending and dynamic response of a simply supported beam. The loading response of a concrete cylinder was then investigated and compared with the Eurocode equation prediction. The results show significant potential for the new model to produce satisfactory predictions for cementitious materials. A unique feature of this model is that it can also be used to accurately represent many deformable structures such as frames and shells, so that both particles and structures or deformable boundaries can be described in the same DEM framework.
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