Logo image
Thermo-mechanical properties of polystyrene-based shape memory nanocomposites
Journal article   Peer reviewed

Thermo-mechanical properties of polystyrene-based shape memory nanocomposites

B. Xu, Y. Q. Fu, M. Ahmad, J. K. Luo, W. M. Huang, A. Kraft, R. Reuben, Y. T. Pei, Z. G. Chen and J. Th. M. De Hosson
Journal of materials chemistry, Vol.20(17), pp.3442-3448
2010

Abstract

Chemistry Chemistry, Physical Materials Science, Multidisciplinary Science & Technology Materials Science Physical Sciences Technology
Shape memory nanocomposites were fabricated using chemically cross-linked polystyrene (PS) copolymer as a matrix and different nanofillers (including alumina, silica and clay) as the reinforcing agents. Their thermo-mechanical properties and shape memory effects were characterized. Experimental results revealed that the nanofillers provide significant reinforcement of the PS, and the nanocomposites exhibit better thermal and mechanical properties, including shape memory properties, than unreinforced PS. Both experimental and theoretical analyses have shown that the rod-shaped clay nanofillers offer better reinforcement than spherical nanoparticles, because of their high aspect ratio and ability to reinforce in multiple directions.

Metrics

5 Record Views
92 Times Cited - Scopus
59 readers on Mendeley

Details

Logo image

Usage Policy