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DEM analysis of particle adhesion during powder mixing for dry powder inhaler formulation development

机译:用于干粉吸入器配方开发的粉末混合过程中颗粒附着力的DEM分析

摘要

Understanding the adhesive interactions between active pharmaceutical ingredient (API) particles and carrier particles in dry powder inhalers (DPIs) is critical for the development of formulations and process design. In the current study, a discrete element method, which accounts for particle adhesion, is employed to investigate the attachment processes in DPIs. A critical velocity criterion is proposed to determine the lowest impact velocity at which two elastic autoadhesive spherical particles will rebound from each other during impact. Furthermore, the process of fine API particles adhering to a large carrier in a vibrating container is investigated. It was found that there are optimal amplitude and frequency for the vibration velocity that can maximise the number of particles contacting with the carrier (i.e. the contact number). The impact number and detachment number during the vibration process both increase with increasing vibration amplitude and frequency while the sticking efficiency decreases as the amplitude and frequency are increased. © 2013 Springer-Verlag Berlin Heidelberg.
机译:了解干粉吸入器(DPI)中活性药物成分(API)颗粒与载体颗粒之间的胶粘剂相互作用对于制剂开发和工艺设计至关重要。在当前的研究中,考虑颗粒附着的离散元素方法用于研究DPI中的附着过程。提出了一个临界速度准则,以确定在撞击过程中两个弹性自粘球形颗粒相互反弹的最低撞击速度。此外,还研究了API细颗粒附着在振动容器中的大型载体上的过程。已经发现,对于振动速度而言,存在最佳的振幅和频率,该振幅和频率可以使与载体接触的颗粒的数量(即,接触数量)最大化。振动过程中的冲击次数和脱离次数都随着振动振幅和频率的增加而增加,而粘附效率随着振幅和频率的增加而降低。 ©2013 Springer-Verlag Berlin Heidelberg。

著录项

  • 作者

    Yang J; Wu C-Y; Adams M;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
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