Rheology of thixotropic dispersions. Transient phenomena with increasing shear rate
- 作者: Matveenko V.N.1,2, Kirsanov E.A.1,2
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隶属关系:
- M. V. Lomonosov Moscow State University
- State Social and Humanitarian University
- 期: 卷 99, 编号 4 (2025)
- 页面: 595-604
- 栏目: СТРОЕНИЕ ВЕЩЕСТВА И КВАНТОВАЯ ХИМИЯ
- ##submission.dateSubmitted##: 14.06.2025
- ##submission.dateAccepted##: 14.06.2025
- ##submission.datePublished##: 15.06.2025
- URL: https://cardiosomatics.ru/0044-4537/article/view/684396
- DOI: https://doi.org/10.31857/S0044453725040086
- EDN: https://elibrary.ru/FPBOLQ
- ID: 684396
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详细
A structural rheological model is used to describe the thixotropic dispersed system of silicon dioxide in oil. The model includes a kinetic equation of the processes of formation and destruction of particle aggregates and a rheological equation containing a structural parameter (the number of aggregated particles in a unit volume). The case of an equilibrium plastic flow, which corresponds to experimental flow curves, is considered. The coefficients of the rheological equation are calculated. For a stepwise increase in the shear rate from to , the transient process is considered as a transition from one equilibrium state of the flow to another equilibrium state through a certain nonequilibrium state of the flow. The coefficient of deviation from equilibrium is introduced, and its dependence ζ(t) is calculated using exponential functions; the limiting value ζ0 is determined. The transient dependences τ1/2(t) are approximated.
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作者简介
V. Matveenko
M. V. Lomonosov Moscow State University; State Social and Humanitarian University
编辑信件的主要联系方式.
Email: 13121946VNM@gmail.com
M. V. Lomonosov Moscow State University, Department of Chemistry
俄罗斯联邦, Moscow; Kolomna, Moscow Region, 140411E. Kirsanov
M. V. Lomonosov Moscow State University; State Social and Humanitarian University
Email: Kirsanov47@mail.ru
M. V. Lomonosov Moscow State University, Department of Chemistry
俄罗斯联邦, Moscow; Kolomna, Moscow Region, 140411参考
- Barnes H.A. // J. Non-Newtonian Fluid Mech. 1997. V. 70. P. 1.
- Yufei Wei. Investigating and Modeling the Rheology and Flow Instabilities of Thixotropic Yield Stress Fluids. A dissertation submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy (Chemical Engineering). University of Michigan, 2019. 139 p.
- Mujumdar A., Beris A.N., and Metzner A.B. // J. of Non-Newtonian Fluid Mech. 2002. V. 102. P. 157.
- Cross M. // J. Colloid Sci. 1965. Vol. 20. P. 417.
- Кирсанов Е.А., Матвеенко В.Н. Неньютоновское течение дисперсных, полимерных и жидкокристаллических систем. Структурный подход: монография М.: Техносфера, 2016. 384 с. [Kirsanov E.A., Matveenko V.N. Non-Newtonian flow of dispersed, polymer and liquid crystal systems. Structural approach. Moscow: Technosphere, 2016, 384 p. (in Russ.)].
- Кирсанов Е.А., Матвеенко В.Н. Вязкость и упругость структурированных жидкостей: монография М.: Техносфера, 2022. 284 с. [Kirsanov E.A., Matveenko V.N. Viscosity and elasticity of structured liquids. Moscow: Technosphere, 2022, 284 p. (in Russ.)].
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