Nagarajan R, Chung SI, Wasan DT
Department of Chemical Engineering, Illinois Institute of Technology, Chicago, Illinois, 60616
J Colloid Interface Sci. 1998 Aug 1;204(1):53-60. doi: 10.1006/jcis.1998.5583.
This paper describes a biconical bob oscillatory interfacial rheometer designed to measure the dynamic viscoelastic response of a liquid-liquid interface subjected to a small amplitude oscillatory shear stress. This instrument is used to examine the rheological behavior of interfaces in the presence of surfactants, especially macromolecular types. Rheological parameters are calculated from a hydrodynamic analysis incorporating a linear viscoelastic interfacial rheological model. The general response of this instrument is compared with the oscillatory deep channel interfacial rheometer which is also capable of similar measurements. Measurements of interfacial viscoelasticity for the same liquid-liquid system with the two rheometers, the biconical bob and the deep channel rheometers, are shown to be comparable. This study demonstrates the intrinsic nature and, therefore, the instrument independence of these dynamic interfacial rheological properties. Accurate measurements of interfacial shear viscoelasticity can be carried out over a wide range of systems by combining measurements with the oscillatory interfacial rheometers. The limitations and regime of usefulness of these instruments are discussed. Copyright 1998 Academic Press.
本文描述了一种双锥摆式振荡界面流变仪,该仪器旨在测量承受小振幅振荡剪切应力的液 - 液界面的动态粘弹性响应。此仪器用于研究在表面活性剂(尤其是大分子类型)存在下界面的流变行为。流变参数通过结合线性粘弹性界面流变模型的流体动力学分析来计算。将该仪器的一般响应与同样能够进行类似测量的振荡深槽界面流变仪进行了比较。使用双锥摆流变仪和深槽流变仪这两种流变仪对同一液 - 液系统的界面粘弹性测量结果显示具有可比性。本研究证明了这些动态界面流变性质的内在本质,因此也证明了其与仪器无关性。通过结合使用振荡界面流变仪进行测量,可以在广泛的系统范围内准确测量界面剪切粘弹性。讨论了这些仪器的局限性和适用范围。版权所有1998年,学术出版社。