Malkin Alexander Ya, Kulichikhin Valery G, Khashirova Svetlana Yu, Simonov-Emelyanov Igor D, Mityukov Anton V
A.V. Topchiev Institute of Petrochemical Synthesis, Russian Academy of Science, 29. Leninsky Prospect, 119991 Moscow, Russia.
Kh.M. Berbekov Kabardino-Balkarsky State University, Chernyshevsky Str. 273, 36000 Nal'chik, Russia.
Polymers (Basel). 2024 Feb 5;16(3):442. doi: 10.3390/polym16030442.
The current state of the rheology of various polymeric and other materials containing a high concentration of spherical solid filler is considered. The physics of the critical points on the concentration scale are discussed in detail. These points determine the features of the rheological behavior of the highly filled materials corresponding to transitions from a liquid to a yielding medium, elastic-plastic state, and finally to an elastic solid-like state of suspensions. Theoretical and experimental data are summarized, showing the limits of the most dense packing of solid particles, which is of key importance for applications and obtaining high-quality products. The results of model and fine structural studies of physical phenomena that occur when approaching the point of filling the volume, including the occurrence of instabilities, are considered. The occurrence of heterogeneity in the form of individual clusters is also described. These heterogeneous objects begin to move as a whole that leads to the appearance of discontinuities in the suspension volume or wall slip. Understanding these phenomena is a key for particle technology and multiphase processing.
本文考虑了各种含有高浓度球形固体填料的聚合物及其他材料的流变学现状。详细讨论了浓度尺度上临界点的物理特性。这些点决定了高填充材料流变行为的特征,对应于从液体到屈服介质、弹塑性状态,最终到悬浮液的弹性固体状状态的转变。总结了理论和实验数据,展示了固体颗粒最紧密堆积的极限,这对应用和获得高质量产品至关重要。考虑了接近体积填充点时发生的物理现象的模型和精细结构研究结果,包括不稳定性的出现。还描述了以单个聚集体形式出现的不均匀性。这些不均匀物体开始整体移动,导致悬浮液体积或壁面滑移出现不连续性。理解这些现象是颗粒技术和多相加工的关键。