Issue 79, 2016

A scratch resistant yet healable automotive clearcoat containing hyperbranched polymer and POSS nanostructures

Abstract

In this paper a typical acrylic melamine clearcoat has been modified with hyperbranched polymer and polyhedral oligomeric silsesquioxane nanostructures to simultaneously enhance its scratch resistance and healing ability. Scratch behaviour and healing performance of clearcoats were investigated by micro-scratching and confocal profilometry techniques. Various techniques were employed to correlate scratch resistance and healing enhancements to the various mechanical and structural characteristics of nano clearcoats. Enhanced scratch resistance was attributed to the increased elastic recovery of the clearcoats in the presence of nano-structured modifiers. In addition, the improved self-healing performance was assigned to the partial replacement of covalent cross-links with physical ones i.e. H-bonding. Simultaneous reinforcement with covalent and physical linkages led to the formation of a more flexible network which maintains its mechanical integrity at ambient temperature and also provides dynamic chain movements for thermal healing treatments at high temperature.

Graphical abstract: A scratch resistant yet healable automotive clearcoat containing hyperbranched polymer and POSS nanostructures

Article information

Article type
Paper
Submitted
25 Mar 2016
Accepted
30 Jul 2016
First published
01 Aug 2016

RSC Adv., 2016,6, 76028-76041

A scratch resistant yet healable automotive clearcoat containing hyperbranched polymer and POSS nanostructures

H. Yari, M. Mohseni and M. Messori, RSC Adv., 2016, 6, 76028 DOI: 10.1039/C6RA07824A

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