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Bonded-particle extraction and stochastic modeling of internal agglomerate structures

机译:内部团聚体结构的键合颗粒提取和随机建模

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The discrete element method (DEM) is an effective computational technique that is used to investigate the mechanical behavior of various particle systems like, for example, agglomerates. However, for systems of perfectly spherical and non-overlapping particles, the structural input is almost always based only qualitatively on experimentally observed structures. In this paper, we consider the case of agglomerates where particles are nearly spherical and connected by bonds. A novel bonded-particle extraction (BPE) method is proposed for the automated approximation of such agglomerate structures from tomographic data sets. This method can be effectively used in conjunction with various commercial or open-source DEM simulation systems. By BPE, sphere-like primary particles are represented each by exactly one (perfect) sphere, and the set of spheres is non-overlapping. Furthermore, the solid bridge bonds between primary particles are retained. Having derived such a simple description of complex tomographic data sets, one can perform DEM simulations with well-established models like the bonded-particle model. Moreover, it is shown that a larger data base of statistically equivalent microstructures can be generated by a stochastic modeling approach. This approach reduces the need for (time-consuming) experimental agglomerate production and characterization. (C) 2016 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:离散元素方法(DEM)是一种有效的计算技术,可用于研究各种粒子系统(例如团聚体)的机械行为。但是,对于具有完美球形和非重叠颗粒的系统,结构输入几乎总是仅在定性上基于实验观察到的结构。在本文中,我们考虑了团聚体的情况,其中颗粒接近球形并通过键连接。提出了一种新颖的键合颗粒提取(BPE)方法,用于从层析数据集中自动逼近此类附聚物结构。该方法可以有效地与各种商业或开源DEM仿真系统结合使用。通过BPE,球形的一次粒子分别由一个(完美)的球表示,并且这组球是不重叠的。此外,保留了初级粒子之间的固体桥键。在获得了对复杂的层析数据集的这种简单描述之后,就可以使用成熟的模型(如键合粒子模型)执行DEM仿真。此外,显示出可以通过随机建模方法来生成统计上等效的微结构的较大数据库。这种方法减少了对(费时的)实验性附聚物生产和表征的需求。 (C)2016日本粉末技术学会。由Elsevier B.V.和日本粉末技术学会出版。版权所有。

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