The Effect of Platinum Layer and Aluminizing Process on Surface Roughness of Coated Superalloy by Pt-Al

In this study, the effect of platinum-aluminide coating parameters on surface roughness of nickel-based superalloy Rene®80 was evaluated. For this purpose, different thicknesses of Pt-layer (2, 4, 6 and 8µm) were plated on the Samples. Then diffusion aluminide coating in two types, high tempeature-l...

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Main Authors: M. Barjesteh, K. Zangeneh Madar, S. M. Abbasi, K. Shirvani
Format: Article
Language:fas
Published: Isfahan University of Technology 2019-09-01
Series:Journal of Advanced Materials in Engineering
Subjects:
Online Access:http://jame.iut.ac.ir/article-1-1000-en.html
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spelling doaj-15ecfd0af62440cba80270f054a1163c2021-03-08T09:59:05ZfasIsfahan University of TechnologyJournal of Advanced Materials in Engineering2251-600X2423-57332019-09-013823553The Effect of Platinum Layer and Aluminizing Process on Surface Roughness of Coated Superalloy by Pt-AlM. Barjesteh0K. Zangeneh Madar1S. M. Abbasi2K. Shirvani3 1. Metallic Materials Research Center, Malek Ashtar University of Technology (MUT), Tehran, Iran. 1. Metallic Materials Research Center, Malek Ashtar University of Technology (MUT), Tehran, Iran. 1. Metallic Materials Research Center, Malek Ashtar University of Technology (MUT), Tehran, Iran. 2. Department of Advanced Materials and New Energies, Iranian Research organization for Science and Technology (IROST), Tehran, Iran. In this study, the effect of platinum-aluminide coating parameters on surface roughness of nickel-based superalloy Rene®80 was evaluated. For this purpose, different thicknesses of Pt-layer (2, 4, 6 and 8µm) were plated on the Samples. Then diffusion aluminide coating in two types, high tempeature-low activity and low temperature-high activity was performed. The results of structural investigations by scanning electron microscope and X-Ray diffraction indicated a three-zone structure of coating in all thicknesses of platinum layer, as well as in the two methods of aluminizing. Surface roughness of coatings was measured in three steps: 1-after Pt plating, 2-after Pt diffusion, and 3-after aluminizing and final aging. The results showed that the thickness of Pt and the final thickness of the coating   directly affected the surface roughness. The minimum surface roughness was created by high temperature low activity with 2µ of Pt-layer (2.6μm) and the maximum of surface roughness was obtained in low-temperature high activity with 8µ of the Pt-layer (8.8 μm).http://jame.iut.ac.ir/article-1-1000-en.htmlrene80platin-aluminidecoating microstructuresurface roughness.
collection DOAJ
language fas
format Article
sources DOAJ
author M. Barjesteh
K. Zangeneh Madar
S. M. Abbasi
K. Shirvani
spellingShingle M. Barjesteh
K. Zangeneh Madar
S. M. Abbasi
K. Shirvani
The Effect of Platinum Layer and Aluminizing Process on Surface Roughness of Coated Superalloy by Pt-Al
Journal of Advanced Materials in Engineering
rene80
platin-aluminide
coating microstructure
surface roughness.
author_facet M. Barjesteh
K. Zangeneh Madar
S. M. Abbasi
K. Shirvani
author_sort M. Barjesteh
title The Effect of Platinum Layer and Aluminizing Process on Surface Roughness of Coated Superalloy by Pt-Al
title_short The Effect of Platinum Layer and Aluminizing Process on Surface Roughness of Coated Superalloy by Pt-Al
title_full The Effect of Platinum Layer and Aluminizing Process on Surface Roughness of Coated Superalloy by Pt-Al
title_fullStr The Effect of Platinum Layer and Aluminizing Process on Surface Roughness of Coated Superalloy by Pt-Al
title_full_unstemmed The Effect of Platinum Layer and Aluminizing Process on Surface Roughness of Coated Superalloy by Pt-Al
title_sort effect of platinum layer and aluminizing process on surface roughness of coated superalloy by pt-al
publisher Isfahan University of Technology
series Journal of Advanced Materials in Engineering
issn 2251-600X
2423-5733
publishDate 2019-09-01
description In this study, the effect of platinum-aluminide coating parameters on surface roughness of nickel-based superalloy Rene®80 was evaluated. For this purpose, different thicknesses of Pt-layer (2, 4, 6 and 8µm) were plated on the Samples. Then diffusion aluminide coating in two types, high tempeature-low activity and low temperature-high activity was performed. The results of structural investigations by scanning electron microscope and X-Ray diffraction indicated a three-zone structure of coating in all thicknesses of platinum layer, as well as in the two methods of aluminizing. Surface roughness of coatings was measured in three steps: 1-after Pt plating, 2-after Pt diffusion, and 3-after aluminizing and final aging. The results showed that the thickness of Pt and the final thickness of the coating   directly affected the surface roughness. The minimum surface roughness was created by high temperature low activity with 2µ of Pt-layer (2.6μm) and the maximum of surface roughness was obtained in low-temperature high activity with 8µ of the Pt-layer (8.8 μm).
topic rene80
platin-aluminide
coating microstructure
surface roughness.
url http://jame.iut.ac.ir/article-1-1000-en.html
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