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Twin Screw Granulation: An Investigation of the Effect of Barrel Fill Level

机译:双螺杆造粒:桶装量影响的调查

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This paper focuses on investigating the influence of varying barrel fill levels on the mean residence time, granule properties (median size, size distribution, and shape), and tensile strength of tablets. Specific feed load (SFL) (powder feed rate divided by screw speed) and powder feed number (PFN) (i.e., powder mass flow rate divided by the product of screw speed, screw diameter, and the material density in the denominator) were considered as surrogates for the barrel fill level. Two type of powders (lactose and microcrystalline cellulose (MCC)) were granulated separately at varying fill levels at different liquid-to-solid ratios (L/S). It was observed that by controlling the barrel fill level, the granule size, shape, and tablet tensile strength can be maintained at specific L/S. It was also noticed that the mean residence time decreased with increasing fill levels in the case of both lactose and MCC powder. However, it was only found to be related to the change in granule size in case of granulating microcrystalline cellulose at varying fill levels. At very high fill levels, granule size decreased, owing to a limited interaction between MCC powder and liquid at high throughput force and short residence time.
机译:本文着重研究不同的桶装量对平均停留时间,颗粒性质(中值粒径,粒径分布和形状)和片剂抗张强度的影响。考虑了进料量(SFL)(粉末进料速度除以螺杆速度)和粉末进料数(PFN)(即粉末质量流量除以螺杆速度,螺杆直径和分母中的材料密度的乘积)作为桶装量的替代物。将两种类型的粉末(乳糖和微晶纤维素(MCC))分别以不同的液固比(L / S)以不同的填充量制粒。观察到,通过控制桶填充水平,可以将颗粒尺寸,形状和片剂拉伸强度维持在特定的L / S。还注意到,对于乳糖和MCC粉末,平均停留时间随填充量的增加而减少。但是,仅在微晶纤维素以不同填充量制粒的情况下才发现与颗粒大小的变化有关。在很高的填充量下,由于MCC粉末和液体在高吞吐力和短停留时间下的相互作用有限,导致颗粒尺寸减小。

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