Effects of Carbon Nanotube Dispersion on the Material Properties of Polymer Matrix Composites: Crimson Publishers
Effects of Carbon Nanotube Dispersion on the Material Properties of Polymer Matrix Composites by Azadeh Tavousi Tabatabaei, Seyed Hossein Mamanpush* and Bahareh Tavousi Tabatabaei in Crimson Publishers: International Journal of Mechanical Engineering
Carbon nanotubes (CNTs) constitute a prominent example of structural nanomaterials, with
many potential applications due to their unique mechanical properties.
Substantial improvements in mechanical properties of polymers have been
attained through the addition of small amounts of carbon nanotubes. The way in
which CNTs are distributed inside the matrix can be divided into two main
categories namely: aligned and randomly distributed. Modeling of carbon
nanotube dispersion in the polymer
matrix is an important step for understanding the characteristics of
composites. For modeling CNTs dispersion in the polymer, a numerical
homogenization technique based on the finite element method (FEM) is used.
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