Viscoelastic melt rheology and time–temperature superposition of polycarbonate–multi-walled carbon nanotube nanocomposites

被引:0
|
作者
Gabriel Y. H. Choong
Davide S. A. De Focatiis
David G. Hassell
机构
[1] University of Nottingham,Division of Materials, Mechanics and Structures
[2] University of Nottingham Malaysia Campus,Department of Chemical and Environmental Engineering
[3] Institut Teknologi Brunei,Petroleum and Chemical Engineering
来源
Rheologica Acta | 2013年 / 52卷
关键词
Polycarbonate; Multi-walled carbon nanotubes; Melt rheology; Linear viscoelasticity; Non-linear viscoelasticity; Time–temperature superposition;
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中图分类号
学科分类号
摘要
This work investigates the linear and non-linear viscoelastic melt rheology of four grades of polycarbonate melt compounded with 3 wt% Nanocyl NC7000 multi-walled carbon nanotubes and of the matching matrix polymers. Amplitude sweeps reveal an earlier onset of non-linearity and a strain overshoot in the nanocomposites. Mastercurves are constructed from isothermal frequency sweeps using vertical and horizontal shifting. Although all nanocomposites exhibit a second plateau at ∼105 Pa, the relaxation times estimated from the peak in loss tangent are not statistically different from those of pure melts estimated from cross-over frequencies: all relaxation timescales scale with molar mass in the same way, evidence that the relaxation of the polymer network is the dominant mechanism in both filled and unfilled materials. Non-linear rheology is also measured in large amplitude oscillatory shear. A comparison of the responses from frequency and amplitude sweep experiments reveals the importance of strain and temperature history on the response of such nanocomposites.
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页码:801 / 814
页数:13
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