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Melt pelletization with polyethylene glycol in a rotary processor.

机译:在旋转处理器中用聚乙二醇熔融制粒。

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摘要

The purpose of this study was to investigate the effect of the airflow, the binder concentration, the massing time, the friction plate rotation speed, and the surface structure of the friction plate on melt pelletization in a laboratory scale rotary processor. Lactose monohydrate was melt agglomerated with polyethylene glycol (PEG) 3000 as meltable binder. The study was performed as a full factorial design. An increase in agglomerate size was found when the binder concentration, the massing time, or the friction plate rotation speed was increased. The agglomerate size was also increased when increasing the shearing forces by using a friction plate with a different surface structure. The size distribution of the agglomerates was significantly narrowed when the binder concentration or the shearing forces caused by the friction plate were increased. An increase in the adhesion of material to the friction plate was found when the shearing forces of the friction plate were increased either by the rotation speed or by the surface structure. Generally, the rotary processor was found to be a suitable alternative to melt pelletization in a high shear mixer.
机译:这项研究的目的是在实验室规模的旋转处理器中研究气流,粘合剂浓度,质量时间,摩擦板旋转速度以及摩擦板的表面结构对熔融造粒的影响。将一水合乳糖与作为可熔粘合剂的聚乙二醇(PEG)3000熔融团聚。该研究是作为完整的因子设计进行的。当增加粘合剂浓度,聚集时间或摩擦板旋转速度时,发现附聚物尺寸增加。当通过使用具有不同表面结构的摩擦板增加剪切力时,附聚物的尺寸也增加了。当增加粘合剂浓度或由摩擦板引起的剪切力时,附聚物的尺寸分布明显变窄。当通过旋转速度或通过表面结构增加摩擦板的剪切力时,发现材料对摩擦板的粘附性增加。通常,发现旋转处理器是在高剪切混合器中熔融造粒的合适替代方案。

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