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Movement of different-shaped particles in a pan-coating device using novel video-imaging techniques

机译:使用新型视频成像技术在锅包衣设备中移动不同形状的颗粒

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摘要

The purpose of this study was to investigate the effects of particle shape on the movement of particles in a pan-coating device using novel video-imaging techniques. An area scan CCD camera was installed inside a 24-in pan coater at the same location as that of a spray nozzle, and the movement of particle was tracked using machine vision. A white tracer particle was introduced inside a bed of black-coated particles. The effects of pan loading, pan speed, and particle shape on the movement of particles was studied. The response variables were circulation time, surface time, projected area of particle per pass, dynamic angle of repose, cascading velocity, and dispersion coefficient. Experiments were conducted at 3 different pan speeds, 6, 9, and 12 rpm, and 2 fill levels (ratio of bed depth to pan diameter), one eighth and one quarter, and data were collected over a 30-minute time period. The differences in circulation times of spheres and tablets, with similar volume equivalent diameter as that of the sphere, were found to be insignificant at the 95% confidence interval. The circulation time ranged from 2.8 to 10.8 seconds depending on the operating condition and increased with increasing pan load and decreasing pan speed. The distributions of circulation time, surface time, and projected surface area were found to be nonnormal. The dynamic angle of repose for tablets was higher than for spheres. Also, the bed surface for spheres was much flatter in comparison with tablets where the bed shape attained a “wave-like” form. The average velocity of tablets in the cascading layer was found to be significantly higher than spheres. A linear model (R2>0.98) best described the variation of velocity as a function of pan speed for all of the operating conditions.
机译:这项研究的目的是研究使用新型视频成像技术的锅包衣设备中颗粒形状对颗粒运动的影响。将面积扫描CCD相机安装在24英寸锅式涂层机内与喷嘴位于同一位置的位置,并使用机器视觉跟踪颗粒的运动。将白色示踪剂颗粒引入涂有黑色涂层的颗粒床中。研究了锅载荷,锅速度和颗粒形状对颗粒运动的影响。响应变量是循环时间,表面时间,每程粒子的投影面积,动态休止角,级联速度和分散系数。实验以3种不同的锅速,6、9和12 rpm和2种填充水平(床层深度与锅直径的比),八分之一和四分之一进行,并在30分钟的时间内收集了数据。体积和直径与球形相似的球和片剂的循环时间差异在95%置信区间内被发现是微不足道的。循环时间从2.8到10.8秒不等,具体取决于操作条件,并且随着锅负载增加和锅转速降低而增加。发现循环时间,表面时间和投影表面积的分布不正常。平板电脑的动态休止角高于球形。而且,与床形状呈“波状”形式的片剂相比,用于球的床表面要平坦得多。发现片剂在级联层中的平均速度明显高于球体。线性模型(R2> 0.98)最好地描述了在所有工作条件下速度变化与旋转速度的关系。

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