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Uniaxial Compaction of Pharmaceutical Powders.

机译:药物粉末的单轴压实。

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摘要

A thorough understanding and precise characterization of powdered excipients and drugs are of great importance to enhance the quality of the final product. Powder compression is a common method to evaluate their properties and behavior. It is essential to understand the elastic, viscoelastic and plastic response of powder to the compression force. A new instrument, the University of Alberta Density Tester, was developed for this purpose. It can be used to measure the Compressed Bulk Density of pharmaceutical powders along with other parameters. A measurement method using low-pressure compaction was implemented. This type of powder characterization method has several advantages. A very small amount of sample is needed which is important when dealing with expensive or scarce samples. Secondly, poorly compactable powders can be analyzed accurately. The importance of the former is evident as powder characterization using traditional methods are restricted by the high amount of sample required. The latter allows analysis of respirable samples where interparticle forces rather than inertial forces become dominant for the compaction behavior. For the same reasons the applicability of the conventional methods like tapped density measurements is questionable. Another advantage of this technique is that the developed instrument is very sensitive and shows significant response to any changes in the testing conditions even if the changes are very slight. Experimental results were fitted to two empirical models, the Heckel and Kawakita models, to evaluate mechanistic behavior of the powders under different levels of compaction. In this study, a novel modulated compaction technique was developed that helps in the interpretation of different compaction stages. Modulated Compression Profiles differentiate between elastic and plastic behavior of powders under compression, which may lead to further development or refinement of compression models that can provide a better understanding of the different compression mechanisms.
机译:对粉末状赋形剂和药物的透彻了解和精确表征对于提高最终产品的质量至关重要。粉末压缩是评估其性能和行为的常用方法。了解粉末对压缩力的弹性,粘弹性和塑性响应至关重要。为此,开发了一种新的仪器,即阿尔伯塔大学的密度测试仪。它可用于测量药物粉末的压缩堆积密度以及其他参数。实施了使用低压压实的测量方法。这种粉末表征方法具有几个优点。需要非常少量的样品,这在处理昂贵或稀缺的样品时很重要。其次,可压实性差的粉末可以得到准确分析。前者的重要性显而易见,因为使用传统方法进行粉末表征受到所需样品量的限制。后者允许分析可吸入样品,其中颗粒间力而非惯性力成为压实行为的主导。出于同样的原因,像抽头密度测量这样的常规方法的适用性令人怀疑。该技术的另一个优点是,开发的仪器非常灵敏,即使测试条件发生很小的变化,也能对测试条件的任何变化显示出明显的响应。将实验结果拟合到两个经验模型(Heckel和Kawakita模型),以评估粉末在不同压实水平下的机械性能。在这项研究中,开发了一种新颖的调制压实技术,可帮助解释不同的压实阶段。调制压缩曲线可以区分粉末在压缩状态下的弹性和塑性行为,这可能导致压缩模型的进一步发展或完善,从而可以更好地理解不同的压缩机制。

著录项

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Engineering Chemical.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2013
  • 页码 225 p.
  • 总页数 225
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

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