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球形颗粒固体的压缩程度控制着压实过程中微观结构和键合概率的演变。

The degree of compression of spherical granular solids controls the evolution of microstructure and bond probability during compaction.

机构信息

Department of Pharmacy, Uppsala University, Box 580, SE-751 23 Uppsala, Sweden.

出版信息

Int J Pharm. 2013 Feb 14;442(1-2):3-12. doi: 10.1016/j.ijpharm.2012.08.011. Epub 2012 Aug 17.

Abstract

The effect of degree of compression on the evolution of tablet microstructure and bond probability during compression of granular solids has been studied. Microcrystalline cellulose pellets of low (about 11%) and of high (about 32%) porosity were used. Tablets were compacted at 50, 100 and 150 MPa applied pressures and the degree of compression and the tensile strength of the tablets determined. The tablets were subjected to mercury intrusion measurements and from the pore size distributions, a void diameter and the porosities of the voids and the intra-granular pores were calculated. The pore size distributions of the tablets had peaks associated with the voids and the intra-granular pores. The void and intra-granular porosities of the tablets were dependent on the original pellet porosity while the total tablet porosity was independent. The separation distance between pellets was generally lower for tablets formed from high porosity pellets and the void size related linearly to the degree of compression. Tensile strength of tablets was higher for tablets of high porosity pellets and a scaled tablet tensile strength related linearly to the degree of compression above a percolation threshold. In conclusion, the degree of compression controlled the separation distance and the probability of forming bonds between pellets in the tablet.

摘要

研究了压缩过程中颗粒固体的压缩程度对片剂微观结构演化和结合概率的影响。使用了低(约 11%)和高(约 32%)孔隙率的微晶纤维素颗粒。将片剂在 50、100 和 150 MPa 的应用压力下压缩,并测定片剂的压缩程度和拉伸强度。对片剂进行了汞压入测量,并根据孔径分布,计算了空隙直径以及空隙和颗粒内孔的孔隙率。片剂的孔径分布有与空隙和颗粒内孔相关的峰。片剂的空隙和颗粒内孔的孔隙率取决于原始颗粒的孔隙率,而总片剂的孔隙率则是独立的。由高孔隙率颗粒形成的片剂之间的分离距离通常较低,而空隙尺寸与压缩程度呈线性关系。高孔隙率颗粒形成的片剂的拉伸强度较高,并且在超过渗流阈值的情况下,经过比例化处理的片剂拉伸强度与压缩程度呈线性关系。总之,压缩程度控制了片剂中颗粒之间的分离距离和形成键的概率。

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