首页> 外文会议>33rd International Annual Conference of ICT, Jun 25-28, 2002, Karlsruhe >SIMULATION OF GRAIN BEHAVIOUR FOR EXPLOSIVE FORMULATIONS
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SIMULATION OF GRAIN BEHAVIOUR FOR EXPLOSIVE FORMULATIONS

机译:爆炸配方的颗粒行为模拟

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For production of high quality PBX charges, it is essential to have low viscosity formulations available during the casting process. As generally known, for a certain filling grade, casting viscosity depends strongly on particle size distribution and on particle shape. We have shown in previous work, that a high tap density of the solid energetic material is one strong requirement to get low viscosities after being mixed with corresponding binder ingredients. So far, the use of particle size distributions in formulation work was based on empirical or semi-empirical approaches, but there was, up to now, no theoretical background to understand in more detail the behaviour of solid energetic material in view of optimised density or flowability. In this paper we present a tool, which enables to perform simulations of packing densities and grain flowability based on a certain particle size distribution. The model used therefore consists of a distinct element method (DEM), observing each particle until its final position in the ensemble is reached. Considering a realistic particle size distribution, spanning several orders of magnitude and reasonable geometric conditions, which allow to neglect vessel border effects, at least several hundred thousands of particles have to be taken into account for a simulation. Therefore a very efficient algorithm to detect particle contacts, based on 3-dimensional Delaunay triangulation had to be established. But to simulate particles behaviour during a pouring or a vibrating process, this contact model had to be combined with an appropriate physical model to describe energy dissipation. Considering the influence of tapping frequency on average movement and segregation of particles we can show our first simulation results. Furthermore we are able to show the influence of different particle distribution on flowability.
机译:为了生产高质量的PBX装料,在铸造过程中必须有低粘度的配方。众所周知,对于一定的填充等级,浇铸粘度在很大程度上取决于粒度分布和颗粒形状。我们在先前的工作中已经表明,固体高能材料的高振实密度是在与相应的粘合剂成分混合后获得低粘度的强烈要求。到目前为止,在配制工作中使用粒度分布是基于经验或半经验方法,但是到目前为止,从优化密度或优化角度来看,还没有理论背景可以更详细地了解固体高能材料的行为。流动性。在本文中,我们介绍了一种工具,该工具能够根据一定的粒度分布执行堆积密度和颗粒流动性的模拟。因此,所使用的模型由独特元素方法(DEM)组成,可观察每个粒子,直到达到其在集合中的最终位置为止。考虑到现实的粒径分布,跨越几个数量级和合理的几何条件,这些条件可以忽略血管边界效应,因此在仿真中必须考虑至少数十万个粒子。因此,必须建立基于3维Delaunay三角剖分的非常有效的检测粒子接触的算法。但是要模拟在浇注或振动过程中的颗粒行为,必须将此接触模型与适当的物理模型结合起来以描述能量耗散。考虑到敲击频率对粒子平均运动和偏析的影响,我们可以展示我们的第一个模拟结果。此外,我们能够显示出不同颗粒分布对流动性的影响。

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