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Corrosion Engineering, Science and Technology
The International Journal of Corrosion Processes and Corrosion Control
Volume 53, 2018 - Issue 7: International Symposium on Coatings and Corrosion (ISCC2016)
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International Symposium on Coatings and Corrosion (ISCC2016)

The effect of atmospheric plasma spray distance of the agglomerated maerogel coated on Inconel 625 substrate

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Pages 487-491 | Received 31 Oct 2016, Accepted 22 Aug 2017, Published online: 03 Sep 2018
 

ABSTRACT

Nano-structured silica aerogel, which is also known as maerogel, was synthesised from rice husk ash (RHA) by a Universiti Teknologi Malaysia (UTM) research team. This super lightweight solid (powder) material with low thermal conductivity was agglomerated into micro-size particles for use as a coating material. Sprayable maerogel coating has high potential for use in various thermal insulating applications such as in aeroengine turbine blade. The maerogel was coated on Inconel 625 via the atmospheric plasma spray (APS) method. Since the APS can deposit a wide range of coating powders and particle sizes with high deposition temperature, it has become a more suitable coating technique for maerogel coating. The coating spray distance of the APS was varied to study its effect on the maerogel coating in terms of microstructure, coating thickness, adhesion strength and thermal conductivity. The coating spray distance of 10 cm was the best spray distance, a parameter by which a homogenous microstructure with adequate coating thickness, adhesion strength and thermal conductivity was obtained.

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

The authors thank Universiti Teknologi Malaysia and Ministry of Education (MOE) for funding this project through the Research University Grant (RUG) under grant no. 04H78, 09H81 and Fundamental Research Grant Scheme (FRGS) under grant no. 4F340.

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