Effect of specific surface area on the rheological properties of graphene nanoplatelet/poly(ethylene oxide) composites

IF 3 2区 工程技术 Q2 MECHANICS Journal of Rheology Pub Date : 2023-05-01 DOI:10.1122/8.0000531
Haritha Haridas, M. Kontopoulou
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引用次数: 1

Abstract

The rheological properties of poly(ethylene oxide) containing graphene nanoplatelets (GNPs) having different specific surface areas (SSAs) are studied using steady shear and small amplitude oscillatory shear experiments. A series of GNPs having SSAs ranging from 175 ± 5 to 430 ± 13 m2/g was prepared using a thermomechanical exfoliation process. The complex viscosity, moduli, and yield stress of the composites increase with SSA, whereas electrical and rheological percolation threshold concentrations decrease, suggesting that higher SSAs promote filler network formation. Modeling of small amplitude oscillatory shear data using a two-phase model confirms that hydrodynamic effects dominate at low concentrations below 8 wt. %, where the particles are noninteracting. At higher concentrations, the response is dominated by filler-phase contributions. We demonstrate that the two-phase model parameters can be used to track the exfoliation of graphite into GNPs. Fitting of rheological percolation curves using Utracki and Lyngaae–Jørgensen models at low concentrations (noninteracting regime) resulted in aspect ratios between 19 and 76. At high concentrations (interacting particles), the aspect ratios determined by the Krieger–Daugherty model ranged between 5 and 24 due to aggregation. The highest aspect ratios (defined as the ratio of major dimension to minor dimension) were associated with GNPs that had the highest SSA of 430 m2/g. Strain sweeps revealed that the critical strain for the onset of nonlinear viscoelasticity scaled with SSA above the percolation threshold. The scaling relationships of the critical strain and storage modulus with volume fraction were used to infer the fractal dimensions of filler networks.
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比表面积对石墨烯纳米片/聚环氧乙烷复合材料流变性能的影响
采用稳态剪切和小振幅振荡剪切实验研究了不同比表面积(SSAs)的石墨烯纳米片(GNPs)的聚环氧乙烷流变性能。采用热机械式剥离工艺制备了一系列SSAs范围为175±5 ~ 430±13 m2/g的GNPs。复合材料的复合粘度、模量和屈服应力随SSA的增加而增加,而电渗流和流变渗流阈值浓度则降低,表明SSA的增加促进了填料网络的形成。使用两相模型对小振幅振荡剪切数据进行建模证实,在低于8 wt的低浓度下,水动力效应占主导地位。%,其中粒子不相互作用。在较高的浓度下,响应主要由填充相贡献。我们证明了两相模型参数可以用来跟踪石墨的剥落成GNPs。使用Utracki和Lyngaae-Jørgensen模型在低浓度(非相互作用状态)下拟合流变渗流曲线,其纵横比在19 ~ 76之间。在高浓度(相互作用的粒子)下,由Krieger-Daugherty模型确定的纵横比由于聚集在5到24之间。高长宽比(定义为大尺寸与小尺寸之比)与最高SSA (430 m2/g)的GNPs相关。应变扫描显示,非线性粘弹性发生的临界应变随SSA高于渗透阈值而增大。利用临界应变和存储模量随体积分数的标度关系,推导了填料网络的分形维数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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