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The Quantified Characterization Method of the Micro-Macro Contacts of Three-Dimensional Granular Materials on the Basis of Graph Theory

机译:基于图论基于图理论的三维粒状材料微宏触点的量化表征方法

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We have attempted a multiscale and quantified characterization method of the contact in three-dimensional granular material made of spherical particles, particularly in cemented granular material. Particle contact is defined as a type of surface contact with voids in its surroundings, rather than a point contact. Macro contact is a particle contact set satisfying the restrictive condition of a two-dimensional manifold with a boundary. On the basis of graph theory, two dual geometrical systems are abstracted from the granular pack. The face and the face set, which satisfies the two-dimensional manifold with a boundary in the solid cell system, are extracted to characterize the particle contact and the macro contact, respectively. This characterization method is utilized to improve the post-processing in DEM (Discrete Element Method) from a micro perspective to describe the macro effect of the cemented granular material made of spherical particles. Since the crack has the same shape as its corresponding contact, this method is adopted to characterize the crack and realize its visualization. The integral failure route of the sample can be determined by a graph theory algorithm. The contact force is assigned to the weight value of the face characterizing the particle contact. Since the force vectors can be added, the macro contact force can be solved by adding the weight of its corresponding faces.
机译:我们尝试了一种多尺度和量化的表征方法,其具有由球形颗粒制成的三维粒状材料的接触,特别是在粘合的颗粒材料中。粒子接触定义为周围环境中的空隙的表面接触,而不是点接触。宏观触点是一种粒子接触设置,满足具有边界的二维歧管的限制性状态。在图论的基础上,两种双重几何系统从粒状包装抽象。提取具有固体电池系统中的边界的二维歧管的面部和面部,分别分别表征粒子接触和宏接触。该表征方法用于改善DEM(离散元素方法)的后处理,从微观角度来描述由球形颗粒制成的粘合粒状材料的宏观效果。由于裂缝具有与其相应触点相同的形状,因此采用该方法表征裂缝并实现其可视化。样品的积分故障路径可以通过图形理论算法确定。接触力被分配给表征粒子接触的面部的重量值。由于可以添加力矢量,因此可以通过添加其相应面的重量来解决宏接触力。

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