Suppr超能文献

冲头直径和曲率对MCC压块在Heckel分析过程中屈服压力的影响。

Influence of the punch diameter and curvature on the yield pressure of MCC-compacts during Heckel analysis.

作者信息

Kiekens Filip, Debunne Ann, Vervaet Chris, Baert Lieven, Vanhoutte Filip, Van Assche Ivo, Menard Francois, Remon Jean Paul

机构信息

Pharmaceutical Development, Johnson & Johnson Pharmaceutical Research & Development, Janssen Pharmaceutica, Turnhoutseweg 30, 2340 Beerse, Belgium.

出版信息

Eur J Pharm Sci. 2004 Jun;22(2-3):117-26. doi: 10.1016/j.ejps.2004.02.010.

Abstract

The volume reduction behaviour of powders has been quantified by means of the 'in-die' yield pressure (YP) using Heckel analysis. However, because different YPs are reported for the same material, the experimental conditions influencing this material-constant were investigated. Silicified microcrystalline cellulose was compressed into flat-faced and convex tablets using a compaction simulator instrumented with load and displacement transducers. During compression, upper and lower punch force and displacement data were recorded and corrected for punch deformation. A symmetrical triangle wave compression profile was used and the instantaneous punch velocity was kept constant (5mm/s). Individual tablet height and weight were used for Heckel analysis. The influence of the 'effective compression pressure' (P(EFF)) (ranging from 10 to 350 MPa), punch diameter (PD) (4, 9.5 and 12 mm) and filling depth (FD) (4.5, 7.5 and 10.5mm) on YP was statistically evaluated using Response Surface Modelling software. A quadratic surface response equation, describing the relationship between P(EFF), PD, FD and YP, was proposed for concave (Adj R(2): 0.8424; S.D.: 14.60 MPa) and flat-faced (Adj R(2): 0.8409; S.D.: 4.49 MPa) punches. YP and tensile strength were mainly determined by P(EFF), irrespective of punch curvature. FD and PD had only a minor influence on the YP, although more pronounced for the concave punches. The method used resulted in reproducible P(EFF) and tensile strength values and the flat-faced tablets showed less weight variation. Flat-faced punches are preferred over punches with a concave surface when investigating the volume reduction behaviour of a powder by means of Heckel analysis and the experimental parameters should be reported.

摘要

通过使用赫克尔分析的“模内”屈服压力(YP)对粉末的体积减小行为进行了量化。然而,由于对于相同材料报道了不同的YP,因此研究了影响该材料常数的实验条件。使用配备有载荷和位移传感器的压实模拟器将硅化微晶纤维素压制成平面和凸面片剂。在压缩过程中,记录上下冲头的力和位移数据,并对冲头变形进行校正。使用对称三角波压缩曲线,并且使瞬时冲头速度保持恒定(5mm/s)。将单个片剂的高度和重量用于赫克尔分析。使用响应曲面建模软件对“有效压缩压力”(P(EFF))(范围为10至350MPa)、冲头直径(PD)(4、9.5和12mm)以及填充深度(FD)(4.5、7.5和10.5mm)对YP的影响进行了统计评估。针对凹形(调整R(2):0.8424;标准差:14.60MPa)和平面对(调整R(2):0.8409;标准差:4.49MPa)冲头,提出了一个描述P(EFF)、PD、FD和YP之间关系的二次曲面响应方程。YP和拉伸强度主要由P(EFF)决定,与冲头曲率无关。FD和PD对YP的影响较小,尽管对于凹形冲头更为明显。所使用的方法产生了可重复的P(EFF)和拉伸强度值,并且平面片剂的重量变化较小。在通过赫克尔分析研究粉末的体积减小行为时,平面冲头比凹面冲头更可取,并且应报告实验参数。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验