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Numerical Simulations on Mixing Dynamics of Spherical and Non-Spherical Tablets in a Pan Coater

机译:包衣机中球形和非球形片剂混合动力学的数值模拟

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Discrete element simulations provide valuable insight into the mixing dynamics of granular materials in industry. In this paper, numerical work is conducted in order to find the influence of pan rotational velocity and particle shape on mixing behavior. Four types of particles of different shapes were chosen: spherical, non-spherical type 1 (disk shape), non-spherical type 2 (capsule shape), and non-spherical type 3 (triangular shape). The pan mixer was filled with ~ 30 % volume of the same shape with the particles and was rotated at 15 RPM, 30 RPM, 45 RPM, and 60 RPM. The particles were colored as bottom-particles, middle-particles, and top-particles in order to visualize mixing efficiency. The homogeneity of the mixtures was determined by using contact dynamics of particles. The results show that fast-rotating pan (30-60 RPM) provides good mixing for all shapes of particles. However, non-spherical particles do not show as good mixing as spherical particles.
机译:离散元素模拟为工业中颗粒材料的混合动力学提供了宝贵的见识。在本文中,进行了数值研究,以发现锅旋转速度和颗粒形状对混合行为的影响。选择了四种不同形状的颗粒:球形,非球形1型(盘形),非球形2型(胶囊形)和非球形3型(三角形)。在锅式混合器中充满约30%体积的相同形状的颗粒,并以15 RPM,30 RPM,45 RPM和60 RPM旋转。为了可视化混合效率,将这些颗粒着色为底部颗粒,中间颗粒和顶部颗粒。通过使用颗粒的接触动力学确定混合物的均匀性。结果表明,快速旋转锅(30-60 RPM)可为所有形状的颗粒提供良好的混合。但是,非球形颗粒的混合效果不如球形颗粒。

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