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Modelling of co-rotating twin-screw extruders in the pharmaceutical industry I : single component model

机译:制药行业中同向双螺杆挤出机的建模I:单组分模型

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摘要

Twin-screw extruders are being increasingly applied in the pharmaceutical industry for the manufacture of solid dispersions. In particular, Hot Melt Extrusion (HME) is a viable manufacturing alternative for poorly soluble drugs that are difficult to process. This is due to the high shear stress applied in the process, which enhances mixing of the base polymer with the dispersed API. Delivery systems that can be obtained using this technology include pellets, granules, sustained release tablets and implants. Experiments for HME are typically very labour-intensive, involving the use of highly viscous polymers, high pressures, and require proper cleaning between runs. Identifying the critical experiments to perform based on model simulations would thus be highly desirable. Single-component modelling of twin-screw extrusion processes could be beneficial in the following areas: identifying optimal screw configurations, tracking the degree of melting and when identifying the area within the extruder where the polymer becomes completely melted.
机译:双螺杆挤出机正越来越多地用于制药工业中,用于制造固体分散体。特别是,热熔挤出(HME)是难于处理的难溶性药物的可行制造替代方案。这是由于在该过程中施加了高剪切应力,从而增强了基础聚合物与分散的API的混合。使用该技术可获得的递送系统包括丸剂,颗粒剂,缓释片剂和植入物。 HME的实验通常非常费力,涉及使用高粘度聚合物,高压,并且每次运行之间需要适当清洁。因此,非常需要基于模型仿真来识别要执行的关键实验。双螺杆挤出工艺的单组分建模在以下方面可能是有益的:确定最佳的螺杆配置,跟踪熔融程度以及确定挤出机内聚合物完全熔融的区域。

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