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Viscoelastic behavior of poly(ether imide) incorporated with multiwalled carbon nanotubes
Authors:Kimberly B Shepard  Halil Gevgilili  Miguel Ocampo  Jia Li  Frank T Fisher  Dilhan M Kalyon
Institution:1. Department of Chemical Engineering and Materials Science, Stevens Institute of Technology, Castle Point on Hudson, Hoboken, New Jersey 07030;2. Highly Filled Materials Institute, Stevens Institute of Technology, Castle Point on Hudson, Hoboken, New Jersey 07030;3. Department of Mechanical Engineering, Stevens Institute of Technology Castle Point on Hudson, Hoboken, New Jersey 07030
Abstract:There is significant potential in improving the mechanical, electrical, and thermal properties of engineering plastics, including poly(ether imide) (PEI), with various nanoinclusions such as multiwalled carbon nanotubes (MWCNTs). However, this potential can only be fully realized through a thorough understanding of the rheological behavior and the thermomechanical histories that the nanocomposites are exposed to during their preparation and the resulting effective properties. In this study, nanocomposites of PEI and MWCNTs were prepared using a solution processing method under different dispersion conditions, and the viscoelastic material functions of the nanocomposites were characterized as functions of concentration of CNTs in the 1–5% by weight range (volume fraction, ? = 0.006–0.03) and temperature. The storage modulus and magnitude of complex viscosity values of the PEI nanosuspensions increased by as much as 3500% and 800%, respectively, at ? = 0.03, along with similar orders of magnitude increases observed or predicted in other viscoelastic material functions. Such increases reflect how nanotube incorporation and network formation can drastically alter the flow and deformation behavior of the PEI/CNT nanosuspensions at processing‐relevant temperatures and deformation rates. © 2012 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys, 2012
Keywords:polyethers  processing  relaxation  rheology  thermoplastics  viscoelastic properties
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