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Fast and non-destructive pore structure analysis using terahertz time-domain spectroscopy

机译:使用太赫兹时域光谱法快速和非破坏性的孔隙结构分析

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Pharmaceutical tablets are typically manufactured by the uni-axial compaction of powder that is confined radially by a rigid die. The directional nature of the compaction process yields not only anisotropic mechanical properties (e.g. tensile strength) but also directional properties of the pore structure in the porous compact. This study derives a new quantitative parameter, S-a, to describe the anisotropy in pore structure of pharmaceutical tablets based on terahertz time-domain spectroscopy measurements. The S-a parameter analysis was applied to three different data sets including tablets with only one excipient (functionalised calcium carbonate), samples with one excipient (microcrystalline cellulose) and one drug (indomethacin), and a complex formulation (granulated product comprising several excipients and one drug). The overall porosity, tablet thickness, initial particle size distribution as well as the granule density were all found to affect the significant structural anisotropies that were observed in all investigated tablets. The S-a parameter provides new insights into the microstructure of a tablet and its potential was particularly demonstrated for the analysis of formulations comprising several components. The results clearly indicate that material attributes, such as particle size and granule density, cause a change of the pore structure, which, therefore, directly impacts the liquid imbibition that is part of the disintegration process. We show, for the first time, how the granule density impacts the pore structure, which will also affect the performance of the tablet. It is thus of great importance to gain a better understanding of the relationship of the physical properties of material attributes (e.g. intragranular porosity, particle shape), the compaction process and the microstructure of the finished product.
机译:药物片剂通常通过粉末的单轴压实,其由刚性模径向受限制。压实过程的产率不仅各向异性的机械性能(例如拉伸强度),而且在多孔质成形体的孔结构的定向特性的定向性质。本研究中导出一个新的量化参数,S-A,以描述在基于太赫兹时域谱测量药片的孔结构的各向异性。萨参数分析应用于三个不同的数据集,包括仅具有一个赋形剂(官能碳酸钙)的片剂,将样品与一种赋形剂(微晶纤维素)和一种药物(吲哚美辛),和一个复合制剂(粒状产品包括若干赋形剂和一个药品)。总孔隙率,片剂厚度,初始颗粒尺寸分布以及颗粒密度均发现影响在所有研究的片剂中观察到的结构显著各向异性。所述S-一个参数提供新的见解成片剂的微观结构和它的电势尤其证明了包括几个部件制剂的分析。结果清楚地表明,材料属性,如颗粒尺寸和颗粒密度,使得所述孔隙结构的变化,其,因此,直接影响到液体吸即崩解过程的一部分。我们发现,第一次,怎么样颗粒密度影响孔隙结构,这也将影响平板电脑的性能。因此,这是非常重要的,以便更好地理解材料属性的物理性质(例如孔隙率颗粒内,颗粒形状),压缩处理和最终产品的显微组织的关系的。

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