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conferenceseries

.com

March 20-22, 2017 Orlando, USA

3

rd

International Conference on

Smart Materials & Structures

Volume 6, Issue 2 (Suppl)

J Material Sci Eng

ISSN: 2169-0022 JME, an open access journal

Smart Materials 2017

March 20-22, 2017

Thermal degradation of two tung oil based reactive diluents and linseed oil alkyd

Satilmis Basan

1

and

Mark D Soucek

2

1

University of Hittite, Turkey

2

University of Akron, USA

T

hermal degradation of two tung oil based reactive diluents, linseed oil alkyd and different amounts of two reactive diluents having

paint formulations were investigated using TGA and DSC under non-isothermal conditions and dynamic nitrogen atmosphere

and air. Activation energies were obtained from Freidman method and Freeman-Carroll method and subsequently the pre-

exponential factor ‘A’ and reaction order ‘n’ for reactive diluents and alkyd were also determined according to general rate equation.

From kinetic analysis of the thermal degradation of using TGA, it was founded that thermal degradation of two diluents and alkyd

has taken place in one stage but thermal degradation of all paint formulations have taken place in more than two stages. As shown

from Freidman method and Freeman-Carroll method, the chemical composition and atmosphere of reactive diluents influenced the

thermal degradation. Increasing reactive diluents decreased slightly the thermal stability of linseed oil alkyd.

Biography

Satilmis Basan has completed his PhD from Hacettepe University and Postdoctoral studies from Glasgow University, Department of Chemistry and Akron University, De-

partment of Polymer Engineering. He is the Head of Department of Chemical Engineering, Founder Dean of Faculty of Engineering at Hittite University and Editor in Chief

of Journal of the Turkish Chemical Society, Section B: Chemical Engineering. He has published more than 24 papers in reputed journals.

satilmisbasan@hitit.edu.tr

Satilmis Basan et al., J Material Sci Eng 2017, 6:2 (Suppl)

http://dx.doi.org/10.4172/2169-0022.C1.061