Prediction of the glass transition temperature and design of phase diagrams of butadiene rubber and styrene-butadiene rubber via molecular dynamics simulations

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To prevent car accidents, it is important to evaluate the thermal stability of tire rubbers, such as natural rubber (NR), butadiene rubber (BR), and styrene-butadiene rubber (SBR). Controlling the glass transition temperature (T-g) is the main factor for obtaining desirable thermal stability. Here, we developed an optimized equation for the prediction of the T-g of the various rubber systems using molecular dynamics (MD) simulations. We modeled a random copolymer system, blended monomers, and calculated the T-g of butadiene isomers in each composition. From these results, we designed the T-g contour of ternary cis-trans-vinyl butadiene and derived an equation of Tg for the ternary system. Moreover, we developed an equation to evaluate the pseudo-ternary T-g of quaternary SBR and plotted it. Our results present a novel way of predicting the T-g of ternary BR and quaternary SBR, which is critical for rational tire design with optimized thermal and mechanical stability.
Publisher
ROYAL SOC CHEMISTRY
Issue Date
2017-07
Language
English
Article Type
Article
Citation

PHYSICAL CHEMISTRY CHEMICAL PHYSICS, v.19, no.25, pp.16498 - 16506

ISSN
1463-9076
DOI
10.1039/c7cp00080d
URI
http://hdl.handle.net/10203/225079
Appears in Collection
MS-Journal Papers(저널논문)
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