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Mixing Behaviour of Cohesive and Non-cohesive Particle Mixtures in a Ribbon Mixer

机译:带搅拌机中粘性和非粘性颗粒混合物的混合行为

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Ribbon mixers are used in a wide range of applications involving pharmaceuticals, ceramics and cosmetics, to name a few. Here, the discrete element method is used to investigate the effect of impeller speed on the mixing behaviours of cohesive as well as non-cohesive particle mixtures in a ribbon mixer, which has a horizontal cylindrical vessel. The mixing behaviours are characterized by particle-scale and macroscopic mixing indexes. Simulations show that the mixing rate increases with the impeller speed for both the cohesive and non-cohesive mixtures up to a certain speed, beyond which it showed a reduction. There is a possibility that the mixture quality becomes poorer at higher impeller speeds for the non-cohesive particles, but it was not the case with the cohesive particles. Inspection of velocity fields shows that many local recirculation regions exist in the case of non-cohesive particle mixing, preventing the overall mixing. By contrast, in the case of the cohesive mixture, there exists a circumferential motion about the shaft and a convective motion in the horizontal axial direction, improving the particle mixing. Force analyses are also carried out, which show that the particle contact forces increase with the impeller speed for non-cohesive particles, but in the case of cohesive particles, they increase initially with the impeller speed, and then show a reduction after a certain speed. The results will be useful in selecting operation conditions of a ribbon mixer.
机译:带搅拌机用于涉及药品,陶瓷和化妆品的各种应用,以命名几个。这里,离散元件方法用于研究叶轮速度对具有水平圆柱形容器的带搅拌器中的内聚的混合性和非粘性颗粒混合物的影响。混合行为的特征在于颗粒级和宏观混合指标。模拟表明,混合速率随着血管速度而增加,均多粘合和非粘性混合物的速度达到一定的速度,超出其显示减少。在较高的非粘性颗粒的较高叶轮速度下,混合物质量可能变得更差,但是粘性颗粒并非如此。速度场检查表明,在非粘性颗粒混合的情况下存在许多局部再循环区域,防止总混合。相比之下,在粘合混合物的情况下,围绕轴的圆周运动和水平轴向的对流运动,改善颗粒混合。还进行了力分析,表明颗粒接触力随着非粘性颗粒的叶轮速度而增加,但在粘性颗粒的情况下,它们最初随着叶轮速度而增加,然后在一定速度后显示减少。结果可用于选择带式混合器的操作条件。

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