Malkin A Ya
A.V. Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences, 29, Leninsky Prospect, 119991 Moscow, Russia.
Adv Colloid Interface Sci. 2021 Apr;290:102381. doi: 10.1016/j.cis.2021.102381. Epub 2021 Feb 17.
This review reflects different aspects of wide current studies of the phenomena related to the shear-induced structure transformation in various complex liquids. Experimental data, being the basis of this discussion, were obtained for polymeric liquids (melts, blends, solutions) and different dispersions (colloidal solutions, suspensions, emulsions). The general initial input of shearing is the creation of inhomogeneities which can continue to remain as separate domains, become the nuclei of new phases, or become diffuse, leading to phase separation. The following effects are discussed: diffusion-induced phase separation, phase transitions occurring mainly due to the deformation-driven orientation of polymer chains and worm-like micelles that results in the formation of a liquid-crystal state, as well as self-assembly effects. It can be stressed that the appearance of regular structures takes place in systems that can coexist in different concentrations or phase states at the same stress or shear rate. This is linked with the existence of two-value points on flow curves (part of a flow curve with negative slope) or transient regimes of deformation that lead to instability of the flow. The described experimental facts are briefly discussed on the basis of the application of different constitutive molecular or phenomenological rheological models.
本综述反映了当前广泛开展的关于各种复杂液体中剪切诱导结构转变现象研究的不同方面。作为本次讨论基础的实验数据,是针对聚合液体(熔体、共混物、溶液)以及不同分散体(胶体溶液、悬浮液、乳液)获得的。剪切的一般初始作用是产生不均匀性,这些不均匀性可以继续作为独立区域存在,成为新相的核,或者变得弥散,从而导致相分离。文中讨论了以下效应:扩散诱导相分离、主要由于聚合物链和蠕虫状胶束的变形驱动取向导致液晶态形成的相变,以及自组装效应。需要强调的是,规则结构的出现发生在能够在相同应力或剪切速率下以不同浓度或相态共存的体系中。这与流动曲线上的双值点(流动曲线具有负斜率的部分)或导致流动不稳定的瞬态变形状态的存在有关。基于不同的本构分子或唯象流变模型的应用,对所描述的实验事实进行了简要讨论。