A single-chain model for the linear viscoelasticity of unentangled melts of associating polymers

IF 3 2区 工程技术 Q2 MECHANICS Journal of Rheology Pub Date : 2022-11-01 DOI:10.1122/8.0000409
Hongwei Liu, G. Ianniruberto, G. Marrucci
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引用次数: 1

Abstract

Existing single-chain models for unentangled associating polymers account for the association by assigning the sticky junctions a large value of the monomeric friction coefficient, which prevents them from moving in space unless stickers effectively dissociate. With such an assumption, comparison of model predictions with linear viscoelastic data is not fully successful in the intermediate range of frequency. In this work, we improve agreement with data by developing a single-chain model where sticky junctions are allowed to quickly move in space without dissociating. We also account for a random distribution of the stickers but differently from the recent model by Jiang et al. [Macromolecules 53, 3438–3451 (2020)]. Predictions of the model are successfully compared with unentangled melt data for two different copolymer chemistries and different sticker concentrations. Particularly significant are the data by Cui et al. [J. Rheol., 62, 1155–1174 (2018)] of melts of polymers with only two stickers per chain, revealing that sticky junctions are in fact also endowed with fast mobility.
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缔合聚合物无纠缠熔体线性粘弹性的单链模型
现有的未缠结缔合聚合物的单链模型通过为粘性连接赋予大的单体摩擦系数值来解释这种缔合,这阻止了它们在空间中移动,除非贴纸有效地离解。有了这样的假设,模型预测与线性粘弹性数据的比较在中间频率范围内并不完全成功。在这项工作中,我们通过开发一个单链模型来提高与数据的一致性,在该模型中,粘性连接可以在空间中快速移动而不会离解。我们还解释了贴纸的随机分布,但与姜等人最近的模型不同。[大分子534438–3451(2020)]。该模型的预测与两种不同共聚物化学成分和不同贴纸浓度的未缠结熔体数据进行了成功比较。特别重要的是Cui等人[J.Rheol.,621155–1174(2018)]关于每条链只有两个贴纸的聚合物熔体的数据,这表明粘性连接实际上也具有快速的流动性。
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来源期刊
Journal of Rheology
Journal of Rheology 物理-力学
CiteScore
6.60
自引率
12.10%
发文量
100
审稿时长
1 months
期刊介绍: The Journal of Rheology, formerly the Transactions of The Society of Rheology, is published six times per year by The Society of Rheology, a member society of the American Institute of Physics, through AIP Publishing. It provides in-depth interdisciplinary coverage of theoretical and experimental issues drawn from industry and academia. The Journal of Rheology is published for professionals and students in chemistry, physics, engineering, material science, and mathematics.
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