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聚合物流变学中结构的作用:综述

The Role of Structure in Polymer Rheology: Review.

作者信息

Kulichikhin Valery G, Malkin Alexander Ya

机构信息

Institute of Petrochemical Synthesis, Russian Academy of Sciences, 29 Leninsky Prospect, 119991 Moscow, Russia.

出版信息

Polymers (Basel). 2022 Mar 21;14(6):1262. doi: 10.3390/polym14061262.

Abstract

The review is devoted to the analysis of the current state of understanding relationships among the deformation-induced structure transformations, observed rheological properties, and the occurrence of non-linear effects for polymer liquids (melts, solutions, and composites). Three levels of non-linearity are the base for consideration. The first one concerns changes in the relaxation spectra of viscoelastic liquids, which are responsible for weak non-linear phenomena. The second one refers to the strong non-linearity corresponding to such changes in the structure of a medium that leads to the emergence of a new relaxation state of a matter. Finally, the third one describes the deformation-induced changes in the phase state and/or the occurring of bifurcations and instability in flow and reflects the thermodynamic non-linear behavior. From a structure point of view, a common cause of the non-linear effects is the orientation of macromolecules and changes in intermolecular interaction, while a dominant factor in describing fluid dynamics of polymer liquids is their elasticity. The modern understanding of thixotropic effects, yielding viscoplastic materials, deformation-induced phase transition, and the experimental observations, demonstrating direct correlations between the structure and rheology of polymer liquids, are the main objects for discussion. All these topics are reviewed and discussed mainly on the basis of the latest five-year publications.

摘要

这篇综述致力于分析当前对于聚合物液体(熔体、溶液和复合材料)中变形诱导的结构转变、观察到的流变特性以及非线性效应的出现之间关系的理解现状。考虑的基础是三个非线性层次。第一个层次涉及粘弹性液体弛豫谱的变化,这是导致弱非线性现象的原因。第二个层次指的是与介质结构变化相对应的强非线性,这种变化会导致物质出现新的弛豫状态。最后,第三个层次描述了变形诱导的相态变化和/或流动中分支和不稳定性的出现,并反映了热力学非线性行为。从结构角度来看,非线性效应的一个共同原因是大分子的取向和分子间相互作用的变化,而描述聚合物液体流体动力学的一个主导因素是它们的弹性。对触变效应、屈服粘塑性材料、变形诱导相变以及表明聚合物液体结构与流变学之间直接关联的实验观察的现代理解,是讨论的主要对象。所有这些主题主要基于最近五年的出版物进行综述和讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e730/8951770/de8d1451dbc3/polymers-14-01262-g001.jpg

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