Journal of Metallurgy and Materials Science
  • Year: 2012
  • Volume: 54
  • Issue: 4

Chlorobutyl elastomer-multiwalled carbon nanotube nanocomposites as effective barrier materials

  • Author:
  • S.K. Tiwari, P.K. Choubey, S.P. Mahapatra
  • Total Page Count: 11
  • Page Number: 279 to 289

1Department of Chemistry, National Institute of Technology, Raipur-492010, India

2Metal Extraction and Forming Division, CSIR-National metallurgical Laboratory, Jamshedpur -831007, India

*Corresponding Author Email: om_spm@yahoo.com, spmahapatra.chy@nitrr.ac.in

Online published on 13 February, 2013.

Abstract

The field of polymer nanocomposite has attracted attention as a method of enhancing polymer properties and extending their utility by using molecular or nanoscale reinforcements rather than conventional particulate filled composites. These materials exhibit different behavior from conventional composite materials with micro scale structure due to small size of structural unit and high surface to volume ratio. The high aspect ratio of multiwalled carbon nanotube (MWCNT) layer is ideal for reinforcement. Chlorobutyl Elastomer nanocomposites were prepared using MWCNT as filler. These nanocomposites exhibit a threefold increase in tensile strength with MWCNT loadings. Moreover excellent barrier properties were offered by the nanocomposites, due to the presence of the well dispersed MWCNT platelets observed from scanning electron microscopy. The calculation of working times or break through times of the nanocomposite membranes makes them ideal for barrier materials as well as chemical protective clothing material. Moreover the enhanced mechanical, barrier, bound rubber content and diffusion characteristic of the nanocomposites make suitable candidates for advanced applications.

Keywords

Nanocomposites, Elastomer, Carbon nanotube, mechanical properties, barrier properties