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微晶纤维素压块机械性能的无损评估

Non-destructive assessment of mechanical properties of microcrystalline cellulose compacts.

作者信息

Palomäki Emmi, Ehlers Henrik, Antikainen Osmo, Sandler Niklas, Yliruusi Jouko

机构信息

Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, University of Helsinki, P.O. Box 56 (Viikinkaari 5E), FIN-00014, Finland.

Division of Pharmaceutical Chemistry and Technology, Faculty of Pharmacy, University of Helsinki, P.O. Box 56 (Viikinkaari 5E), FIN-00014, Finland.

出版信息

Int J Pharm. 2015 Nov 30;495(2):633-41. doi: 10.1016/j.ijpharm.2015.09.051. Epub 2015 Sep 26.

Abstract

In the present study the mechanical properties of microcrystalline cellulose compacts compressed were studied. The resistance to crushing was tested using diametral compression testing and apparent Young's modulus was determined using consecutive uniaxial compression of the full cross-sectional area of single tablets. As non-elastic deformation during the first compression cycle and reverse plasticity were discovered, the loading phase of the second compression cycle was used to determine Young's modulus. The relative standard deviation of 10 consecutive measurements was 3.6%. The results indicate a direct correlation between crushing strength and Young's modulus, which found further support when comparing surface roughness data and radial recovery of the tablets to Young's modulus. The extrapolated elastic modulus at zero-porosity was found to be 1.80±0.08 GPa, which is slightly lower than previously reported values, confirming the complexity of measuring the elastic properties of microcrystalline cellulose compacts. The method can be used for non-destructive assessment of mechanical properties of powder compacts for example during storage studies.

摘要

在本研究中,对压制的微晶纤维素压块的力学性能进行了研究。使用径向压缩试验测试抗压碎性,并通过对单个片剂的整个横截面积进行连续单轴压缩来测定表观杨氏模量。由于发现了第一次压缩循环中的非弹性变形和反向可塑性,因此使用第二次压缩循环的加载阶段来测定杨氏模量。连续10次测量的相对标准偏差为3.6%。结果表明抗压强度与杨氏模量之间存在直接相关性,在将片剂的表面粗糙度数据和径向恢复与杨氏模量进行比较时,这一相关性得到了进一步支持。零孔隙率下的外推弹性模量为1.80±0.08 GPa,略低于先前报道的值,这证实了测量微晶纤维素压块弹性性能的复杂性。该方法可用于例如在储存研究期间对粉末压块力学性能的无损评估。

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