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Status已发表Published
TitleMicro-macro modeling of polymeric fluids and shear-induced microscopic behaviors with bond-breaking
Creator
Date Issued2024-10-01
Source PublicationPhysical Review Fluids
ISSN2469-990X
Volume9Issue:10
Abstract

This paper explores the micro-macro modeling of polymeric fluids using the proposed microscopic elastic-plastic (EP) potential energy, in order to illustrate the effects of irreversible bond-breaking of microscopic polymer chains. Precisely, we first revisit the derivation of a thermodynamically consistent micro-macro model using the energy variational method. To demonstrate the model's predictions, we perform numerical simulations using a deterministic particle finite element method. Our numerical investigations reveal the behaviors of polymer chains with irreversible bond breaking at the microscale and their influence on induced shear stresses and macroscale velocities under shear flow. We also conduct numerical investigations with other classical microscopic potential energies as a comparison, including the Hookean, the FENE (finite extensible nonlinear elastic), and the modified Morse potentials, involving pure elastic, finite extension. and reversible bond breaking, respectively. We find that polymer elongation, rotation, and bond breaking contribute to differences in polymer-induced stresses and velocities in the micro-macro models. Additionally, we observe that at high shear rates, polymer rotation induces shear-thinning behavior in the micro-macro models.

DOI10.1103/PhysRevFluids.9.103301
URLView source
Language英语English
Scopus ID2-s2.0-85206607940
Citation statistics
Document TypeJournal article
Identifierhttp://repository.uic.edu.cn/handle/39GCC9TT/11964
CollectionBeijing Normal-Hong Kong Baptist University
Affiliation
1.School of Mathematics, South China University of Technology, Guangzhou, Guangdong, China
2.Zu Chongzhi Center for Mathematics and Computational Sciences (CMCS), Duke Kunshan University, Kunshan, 8 Duke Ave., Jiangsu, 215316, China
3.Guandong Key Lab for Data Science and Technology, BNU -HKBU, United International College, Zhuhai, Guangdong, China
4.Department of Mathematics and Statistics, York University, Toronto, M3J 1P3, Canada
5.Mathematics and Statistics Department, Utah State University, Logan, Old Main Hill, 84322, United States
Recommended Citation
GB/T 7714
Bao, Xuelian,Huang, Huaxiong,Song, Zilonget al. Micro-macro modeling of polymeric fluids and shear-induced microscopic behaviors with bond-breaking[J]. Physical Review Fluids, 2024, 9(10).
APA Bao, Xuelian, Huang, Huaxiong, Song, Zilong, & Xu, Shixin. (2024). Micro-macro modeling of polymeric fluids and shear-induced microscopic behaviors with bond-breaking. Physical Review Fluids, 9(10).
MLA Bao, Xuelian,et al."Micro-macro modeling of polymeric fluids and shear-induced microscopic behaviors with bond-breaking". Physical Review Fluids 9.10(2024).
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