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Phase transitions in liquid crystalline solutions of hydroxypropyl cellulose under deformation
Authors:E. V. Rusinova  S. A. Vshivkov  M. S. Alekseeva
Affiliation:(1) Ural State University, pr. Lenina 51, Yekaterinburg, 620083, Russia
Abstract:Phase transitions and the physical state of the hydroxypropyl cellulose-dimethylacetamide system under static conditions and in a shear field were studied by the cloud-point and polarized optical microscopy techniques with a polarization-photoelectric setup and a modified plasticorder. The deformation of solutions leads to a change in their structure and elevation of liquid-crystalline phase formation temperatures, a result that is due to the additional orientation of macromolecules in the flow direction. The ability of macromolecules to be oriented in a shear field decreases with an increase in the molecular mass of the polymer. The influence of deformation on phase transitions in hydroxypropyl cellulose solutions is nonmonotonic in character.
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