Alderborn Göran
Department of Pharmacy, Uppsala University, Uppsala, Sweden.
Pharm Dev Technol. 2003;8(4):367-77. doi: 10.1081/pdt-120024690.
In this article, a compression parameter is derived and its physical significance discussed. Tablets were formed from two sodium chloride powders and from two sucrose powders over a wide range of compaction pressures and the tensile strength and the porosity of the tablets were determined. From these data, the novel compression parameter and the Heckel parameter were calculated. Above a lower pressure threshold, the tablet strength increased relatively linear with compaction pressure up to 300-500 MPa and thereafter, the tablet strength leveled off. From the linear region, the compression parameter was derived. The tablet porosity data obeyed reasonably the Heckel function and from the linear region, the yield strength was calculated. For all four powders, a ratio between the compression parameter and the Heckel yield strength of about 3 was obtained. It is concluded that the suggested compression parameter represents an indication of the effective deformability of particles during compression which is suggested to correlate with the hardness of the particles.
在本文中,推导了一个压缩参数并讨论了其物理意义。使用两种氯化钠粉末和两种蔗糖粉末在很宽的压实压力范围内压片,并测定了片剂的抗张强度和孔隙率。根据这些数据,计算了新的压缩参数和赫克尔参数。在较低压力阈值以上,片剂强度随压实压力相对呈线性增加,直至300 - 500MPa,此后片剂强度趋于平稳。从线性区域推导出压缩参数。片剂孔隙率数据合理地符合赫克尔函数,并从线性区域计算出屈服强度。对于所有四种粉末,压缩参数与赫克尔屈服强度之比约为3。得出的结论是,所建议的压缩参数表示压缩过程中颗粒有效变形能力的一个指标,这表明它与颗粒硬度相关。