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羟丙基纤维素凝胶的流变学特性

Rheological characterization of hydroxypropylcellulose gels.

作者信息

Ramachandran S, Chen S, Etzler F

机构信息

Boehringer Ingelheim Pharmaceuticals, Ridgefield, CT 06877, USA.

出版信息

Drug Dev Ind Pharm. 1999 Feb;25(2):153-61. doi: 10.1081/ddc-100102155.

DOI:10.1081/ddc-100102155
PMID:10065348
Abstract

The present paper describes the rheological properties of hydroxypropylcellulose (HPC) gels formulated in propylene glycol (PG), water, ethanol, and mixtures of these components. The effects of molecular weight, polymer concentration, and solvent composition on the apparent viscosity and flow characteristics have been studied by continuous shear rheometry. The HPC gels are shear thinning and do not exhibit significant yield or hysteresis in their rheograms. The apparent viscosity increases with increasing molecular weight and concentration of the polymer, as expected. Although not so pronounced at lower concentrations (< or = 1.5%), HPC gels tend to become increasingly non-Newtonian with increasing molecular weight at higher polymer concentrations (3%). A mathematical model has been proposed for the prediction of viscosities of HPC gels. There exists a high degree of dependence on molecular interactions between various solvent molecules in the prediction of mixture viscosities in ternary systems. The effects of solvent composition on the viscoelastic behavior of these gels have also been examined by dynamic mechanical analysis. The HPC gels are highly viscoelastic and exhibit greater degrees of elasticity with increased PG content in ternary solvent mixtures with water and ethanol. The study also suggests that dynamic mechanical analysis could prove to be a useful tool in the determination of zero-shear viscosities, viscosities that are representative of most realistic situations.

摘要

本文描述了在丙二醇(PG)、水、乙醇以及这些成分的混合物中配制的羟丙基纤维素(HPC)凝胶的流变特性。通过连续剪切流变学研究了分子量、聚合物浓度和溶剂组成对表观粘度和流动特性的影响。HPC凝胶表现出剪切变稀特性,并且在其流变图中未显示出明显的屈服或滞后现象。正如预期的那样,表观粘度随着聚合物分子量和浓度的增加而增加。尽管在较低浓度(≤1.5%)时不太明显,但在较高聚合物浓度(3%)下,HPC凝胶随着分子量的增加往往变得越来越非牛顿流体。已经提出了一个数学模型来预测HPC凝胶的粘度。在三元体系中混合物粘度的预测中,对各种溶剂分子之间的分子相互作用存在高度依赖性。还通过动态力学分析研究了溶剂组成对这些凝胶粘弹性行为的影响。HPC凝胶具有高粘弹性,并且在与水和乙醇的三元溶剂混合物中,随着PG含量的增加表现出更大程度的弹性。该研究还表明,动态力学分析可能被证明是测定零剪切粘度的有用工具,零剪切粘度代表了大多数实际情况。

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