Please use this identifier to cite or link to this item: http://13.232.72.61:8080/jspui/handle/123456789/1153
Title: Experimental Investigation on Erosive Wear Behaviour of Plasma Spray Coated Stainless Steel
Authors: Girisha, K. G.
Rao, K. V. Sreenivas
Anil, K. C.
Sanman, S.
Keywords: Mechanical engineering
Manufacture science
Industrial engineering
Materials science
Issue Date: Apr-2017
Publisher: IOP Publishing
Citation: Girisha, K. G., Rao, K. V. Sreenivas., Anil, K. C., & Sanman, S. (2017, April). Experimental investigation on erosive wear behaviour of plasma spray coated stainless steel. In IOP Conference Series: Materials Science and Engineering (Vol. 191, No. 1, p. 012022). IOP Publishing.
Abstract: Slurry erosion is an implicit problem in many engineering industrial components such as ore carrying pipelines, slurry pumps and extruders. Even the water turbine blades are subjected to erosive wear when the water contains considerable amount of silt. In the present study, Al2O3-40%TiO2 powder particles of average particle size of 50 micrometer were deposited on EN56B martenistic stainless steel by atmospheric plasma spray technique. Ni/Cr was pre coated to work as bond coat for good adhesion between coating and the substrate material. A coating thickness of 200 micrometer was achieved. Coated and un-coated substrates were subjected to slurry erosion test as per ASTM G-119 standard. Slurry erosion test rig was used to evaluate the erosion properties at room temperature condition by varying the spindle speed. Scanning electron microphotographs were taken before and after the slurry erosion test. Microstructures reveal uniform distribution of coating materials. Eroded surface shows lip, groove, and crater formation and dense coating resulting in less porosity. Micro hardness test was evaluated and reported. EDX analysis confirms the presence of Al, Ti and O2 particles. It was observed that, Al2O3-40%TiO2 coated substrates exhibit superior erosion resistance as compared to un-coated substrates due to higher hardness and less coating porosity.
URI: http://13.232.72.61:8080/jspui/handle/123456789/1153
Appears in Collections:Conference Proceedings

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