Kakimi Kazuyuki, Niwa Toshiyuki, Danjo Kazumi
Faculty of Pharmacy, Meijo University, Tempaku-ku, Nagoya, Japan.
Chem Pharm Bull (Tokyo). 2010 Dec;58(12):1565-8. doi: 10.1248/cpb.58.1565.
A rotary tablet machine fitted with 8-mm diameter flat-faced punches was used to measure scraper pressure (SCR), a type of shear stress, to evaluate sticking behavior. The shear stress between the surfaces of the tablet and lower punch was determined using an SCR detection system. Mean surface roughness (R(a)) of tablets, measured by a scanning laser-microscope, was used to estimate the magnitude of sticking. Tablet tensile strength tended to increase with compression pressure at either of the tablet production velocities tested, which was consistent with previous reports. SCR decreased with increasing compression pressure for samples at all compression velocities, and showed a tendency to increase with binder concentration. SCR also tended to increase with compression velocity for samples at all compression pressures, suggesting that the frequency of tablet sticking increased as compression velocity increased. R(a) associated with sticking increased with SCR, indicating that the adhesive force between the particles of the tablet surface and the lower punch surface plays an important role in sticking.
使用配备有直径8毫米平面冲头的旋转压片机来测量刮刀压力(SCR),这是一种剪切应力,以评估黏附行为。片剂表面与下冲头之间的剪切应力使用SCR检测系统来测定。通过扫描激光显微镜测量的片剂平均表面粗糙度(R(a))用于估计黏附程度。在所测试的任何一种片剂生产速度下,片剂的拉伸强度都倾向于随着压缩压力的增加而增加,这与先前的报道一致。在所有压缩速度下,样品的SCR随着压缩压力的增加而降低,并且显示出随着粘合剂浓度增加而增加的趋势。在所有压缩压力下,样品的SCR也倾向于随着压缩速度的增加而增加,这表明片剂黏附的频率随着压缩速度的增加而增加。与黏附相关的R(a)随着SCR的增加而增加,表明片剂表面颗粒与下冲头表面之间的粘附力在黏附中起重要作用。