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Shear and extensional rheology of hydroxypropyl cellulose melt using capillary rheometry.

机译:羟丙基纤维素熔体的剪切流变学和延伸流变学使用毛细管流变仪。

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摘要

With increasing interest in hot melt extrusion for preparing polymer-drug systems, knowledge of the shear and extensional rheology of polymers is required for the formulation and process design. Shear and extensional rheology of three commercial grades of hydroxypropyl cellulose (HPC) was examined at 140, 145 and 150 degrees C using twin bore capillary rheometry at range of processing rates. The power law model fitted for shear flow behaviour up to shear strain rates of approximately 1000s(-1), above which measured shear viscosities deviated from the power law and surface instabilities were observed in the extrudate, particularly for higher molecular weight grades. Shear thinning index was found to be relatively independent of temperature and molecular weight, whilst the consistency index, indicative of zero shear viscosity increased exponentially with increase in molecular weight. Extensional viscosity of all grades studied was found to decrease with increasing temperature and increasing processing rate. Foaming of the extrudate occurred especially at low temperatures and with the high molecular weight grade. An understanding of the relationships between shear and extensional flows with temperature, processing rate and molecular weight is a useful tool for process design; optimisation and troubleshooting of Hot melt extrusion (HME) of pharmaceutical formulations.
机译:随着对用于制备聚合物-药物体系的热熔挤出的兴趣日益增加,配制和工艺设计需要聚合物的剪切和拉伸流变学知识。使用双孔毛细管流变仪在加工速率范围内,在140、145和150摄氏度下检查了三种商业级羟丙基纤维素(HPC)的剪切和拉伸流变学。幂律模型适合剪切流率高达约1000s(-1)的剪切流动行为,在该模型上,观察到的挤出物的剪切粘度与幂律和表面不稳定性之间存在偏差,特别是对于较高分子量的产品。发现剪切稀度指数相对独立于温度和分子量,而表示零剪切粘度的稠度指数随分子量的增加呈指数增加。发现所研究的所有牌号的拉伸粘度均随温度升高和加工速率提高而降低。挤出物的发泡特别是在低温和高分子量等级下发生。了解剪切流量和拉伸流量与温度,加工速率和分子量之间的关系是进行工艺设计的有用工具。药物配方的热熔挤出(HME)的优化和故障排除。

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