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The Influence of Diamond Addition to Ni-Al Powder on Oxidation Behavior of Ni-Al During Plasma Spraying for High Performance Ni-Al Intermetallic Coating

  • Xi'an Jiaotong University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

4 Scopus citations

Abstract

Although Ni-Al intermetallics are of excellent corrosion and oxidation resistance, their oxidation during thermal spraying limits the applications as thermal spray coating. Thus, controlling the oxidation is a necessary approach to improve their performances as the coatings. In this study, a novel approach is proposed to exclude oxide of in-flight Ni-Al droplets by introducing diamond as a deoxidizer in Ni/Al powder during plasma spraying. Ni-Al coatings were deposited with Ni/Al/diamond composite powder prepared by mechanical alloying by atmospheric plasma spraying at different spray conditions to study the effect of the diamond addition on the oxidation behavior of in-flight droplets. The phase composition, microstructure, porosity and microhardness of the coatings were characterized by X-ray diffraction, scanning electron microscopy, image analyzing and hardness test, respectively. The oxygen content of the coatings was measured quantitatively. The results show that APS Ni-Al coating prepared by Ni/Al/diamond powder presents significantly lower oxygen content. The measurement yields particle temperatures higher than 2300oC. The low oxygen content in the coating is attributed to the in-situ deoxidizing effect of ultra-high temperature contained droplets. Moreover, the oxide-free droplets promote the deposition of Ni-Al coatings with lower oxygen content and porosity than the conventional Ni-Al coatings.

Original languageEnglish
Title of host publicationInternational Thermal Spray Conference and Exposition
Subtitle of host publicationVersatile Surface Engineering for Environmental Solutions, ITSC 2021 - Proceedings
EditorsFardad Azarmi, Xing Chen, J. Cizek, Cristian V. Cojocaru, Bertrand Jodoin, Y. Lau, Ruben Fernandez, O. Ozdemir, H. Salimi Jazi, F. Toma
PublisherASM International
Pages447-453
Number of pages7
ISBN (Electronic)9781713831303
StatePublished - 2021
Event2021 International Thermal Spray Conference and Exposition, ITSC 2021 - Virutal, Online
Duration: 24 May 202127 May 2021

Publication series

NameInternational Thermal Spray Conference and Exposition: Versatile Surface Engineering for Environmental Solutions, ITSC 2021 - Proceedings

Conference

Conference2021 International Thermal Spray Conference and Exposition, ITSC 2021
CityVirutal, Online
Period24/05/2127/05/21

Keywords

  • Atmospheric plasma spraying
  • Diamond
  • In-situ deoxidizing effect
  • Ni-Al coatings
  • Oxidation

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