Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/7202
Title: Influence of process parameters on the formation of phases and mechanical properties of plasma sprayed Al2O3–Cr2O3 coatings
Authors: Chatterjee, Satyajit
Sabiruddin, Kazi
Keywords: Aluminum coatings;Black coatings;Composite coatings;Flow of gases;Flow rate;Hydrogen;Mechanical properties;Plasma jets;Plasma spraying;Rietveld method;Rietveld refinement;Scanning electron microscopy;Surface roughness;Wear resistance;X ray diffraction;X ray diffraction analysis;Atmospheric plasma spray process;Feedstock materials;Hydrogen flow rate;Influence of process parameters;Plasma sprayed;Refinement techniques;Scanning electron micrographs;Steel substrate;Aluminum
Issue Date: 2017
Publisher: Taylor and Francis Ltd.
Citation: Dhakar, B., Chatterjee, S., & Sabiruddin, K. (2017). Influence of process parameters on the formation of phases and mechanical properties of plasma sprayed Al2O3–Cr2O3 coatings. Materials Research Innovations, 21(6), 367-376. doi:10.1080/14328917.2016.1265246
Abstract: Atmospheric plasma spray process is used to develop Al2O3–Cr2O3 composite coating on AISI 1020 steel substrate by spraying mechanically mixed Al2O3–Cr2O3 feedstock material. The influence of hydrogen gas flow rate on the formation of α-Al2O3 phase in the coating is studied. Effect of changing hydrogen flow rate on the mechanical properties (hardness, wear resistance, porosity and surface roughness) of the coating is also judged. Scanning electron micrograph and X-ray diffraction analyses of the coating are carried out for studying the micro-structure and phases, respectively. Rietveld refinement technique is used to quantify the different phases present in the coating. From the results, it is found that α-Al2O3 phase content in the Al2O3–Cr2O3 coating is decreased with increase in hydrogen gas flow rate. The reduction in α-Al2O3 phase content by the increase in hydrogen flow rate is mainly due to the rise in enthalpy of plasma, causing improvement in the melting of the Al2O3 particles. © 2016 Informa UK Limited, trading as Taylor & Francis Group.
URI: https://doi.org/10.1080/14328917.2016.1265246
https://dspace.iiti.ac.in/handle/123456789/7202
ISSN: 1432-8917
Type of Material: Journal Article
Appears in Collections:Department of Mechanical Engineering

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