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Lubrication potential of magnesium stearate studied on instrumented rotary tablet press

机译:仪器旋转压片机研究硬脂酸镁的润滑潜力。

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摘要

The aim of this study was to investigate the lubrication potential of 2 grades of magnesium stearate (MS) blended with a mix of dicalcium phosphate dihydrate and microcrystalline cellulose. Force-displacement, force-time, and ejection profiles were generated using an instrumented rotary tablet press, and the effect of MS mixing time (10, 20, and 30 minutes) and tableting speed (10.7, 13.8, and 17.5 rpm) was investigated. The packing index (PI), frictional index (FI), and packing energy (PE) derived from the force-displacement profiles showed that MS sample I performed better than sample II. At higher lubricant mixing times, the values of PI were observed to increase, and values of FI and PE were observed to decrease for both MS samples. Lower values of area under the curve (AUC) calculated from force-time compression profiles also showed sample I to be superior to sample II in lubrication potential. For both the samples, the values of AUC were observed to decrease with higher lubricant mixing times. Tapping volumetry that simulates the initial particle rear-rangement gave values of parameter a and Cmax that were higher for sample I than sample II and also increased with lubricant mixing time. The superior lubrication potential of sample I was also established by the lower values of peak ejection force encountered in the ejection profile. Lower ejection forces were also found to result from higher tableting speeds and longer lubricant mixing times. The difference in lubrication efficacy of the 2 samples could be attributed to differences in their solid-state properties, such as particle size, specific surface area, and d-spacing.
机译:这项研究的目的是研究将2级硬脂酸镁(MS)与磷酸二钙二水合物和微晶纤维素的混合物混合后的润滑潜力。使用仪器式旋转压片机产生力-位移,力-时间和喷射曲线,并研究了MS混合时间(10、20和30分钟)和压片速度(10.7、13.8和17.5 rpm)的影响。由力-位移曲线得出的堆积指数(PI),摩擦指数(FI)和堆积能量(PE)表明,MS样品I的性能优于样品II。在较高的润滑剂混合时间下,两个MS样品的PI值均增加,而FI和PE的值均降低。从力时压缩曲线计算出的曲线下面积(AUC)的较低值也显示出,样品I的润滑潜力优于样品II。对于这两个样品,观察到随着润滑剂混合时间的增加,AUC值均降低。模拟初始粒子重排的攻丝容积法得出的参数a和Cmax值,样品I比样品II高,并且随着润滑剂混合时间的增加而增加。样品I的优异润滑潜力也由喷射曲线中遇到的峰值喷射力的较低值确定。还发现较低的顶出力是由较高的压片速度和较长的润滑剂混合时间引起的。这两个样品润滑效果的差异可归因于其固态性能的差异,例如粒径,比表面积和d间距。

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