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双面压片过程中的摩擦功。

Frictional work in double-sided tablet compression.

作者信息

Muñoz-Ruiz A, Wihervaara M, Hakkinen M, Juslin M, Paronen P

机构信息

Department of Pharmaceutics, University of Kuopio, Finland.

出版信息

J Pharm Sci. 1997 Apr;86(4):481-6. doi: 10.1021/js960287r.

Abstract

The aim of this study was to evaluate the friction during double-sided tablet compression. Dicalcium phosphate dihydrate and lactose were tabletted with a compaction simulator with symmetrical and asymmetrical double-sided sawtooth punch displacement profiles. The estimation of force transmission in a powder column was based on an exponential equation, including the material parameter consisting of both the friction coefficient and Poisson's ratio. This parameter was predetermined from a single-sided compression. A novel equation was derived from a previously presented equation for friction work in single-sided tablet compression. The basic assumption was drawn from the linearly decreasing movement of infinitely thin particle layers, which are produced as the compressing punch surface approaches the other punch. This calculation was also based on the assumption that the equilibrium point, where the particles do not move, is halfway between the punches in the symmetrical profile and at a distance proportional to the amplitudes of the asymmetrical upper and lower sawtooth profiles. The tensile strength of tablets compressed with single-double-sided profiles was identical, and thus the behavior of the materials studied under compression was independent of the compression profiles. The friction work values that were calculated with the proposed expression for double-sided profiles were close to the theoretical values, as estimated by calculations based on compressions with single-sided profiles. In conclusion, the novel mathematical expression opens new possibilities for the evaluation of friction in double-sided compression; for example, in rotary press tabletting.

摘要

本研究的目的是评估双面压片过程中的摩擦力。使用具有对称和不对称双面锯齿冲头位移曲线的压片模拟器对二水磷酸氢钙和乳糖进行压片。基于一个指数方程来估计粉末柱中的力传递,该方程包含由摩擦系数和泊松比组成的材料参数。此参数是通过单面压缩预先确定的。从先前给出的单面压片摩擦功方程推导出一个新方程。基本假设源自无限薄颗粒层的线性递减运动,这些颗粒层是在压缩冲头表面接近另一个冲头时产生的。该计算还基于这样的假设,即在对称曲线中颗粒不移动的平衡点位于冲头之间的中点,而在不对称上下锯齿曲线中,平衡点与上下锯齿曲线振幅成比例的距离处。单面 - 双面曲线压片的片剂抗张强度相同,因此所研究材料在压缩下的行为与压缩曲线无关。用所提出的双面曲线表达式计算的摩擦功值接近基于单面曲线压缩计算估计的理论值。总之,这种新的数学表达式为评估双面压缩中的摩擦力开辟了新的可能性;例如,在旋转压片机压片方面。

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