Logo Goletty

Theoretical Modelling of Slurry Erosive Wear Testing of HVOF Thermally Sprayed Inconel-Titania Coatings
Journal Title Indian Journal of Science and Technology
Journal Abbreviation indjst
Publisher Group Informatics (India) Limited (gjeis)
Website http://gjeis.org/index.php/indjst
PDF (471 kb)
   
Title Theoretical Modelling of Slurry Erosive Wear Testing of HVOF Thermally Sprayed Inconel-Titania Coatings
Authors Sekhar, N.; Mohan, M. Krishna; Reddy, Bhavish N.; Lakshminarayana Reddy, T.
Abstract Material loss due to slurry erosion is a serious problem in many industrial applications like hydraulic turbines, slurry pumps, pipe lines, etc. where the ideal choice of engineering materials is a real challenge. Lightweight aluminum alloys are finding wide applications in the field of aerospace automobile, defence, etc. due to improved physical, mechanical and tribology properties. HVOF (High velocity oxy fuel) Sprayed coatings provide protection against corrosion, erosion and wear. Inconel - 718 is a metallic coating which has good wear and erosion resistance. This was sprayed on to mild steel substrate and then subjected to slurry erosive wear tests. It is observed that the slurry wear rates of mild steel decreased on coating the substrate material with Inconel - 718. The tests were conducted in a slurry erosive wear tester at varying spindle speeds (500 -1500rpm) at different intervals of time .The wear loss was recorded experimentally compared with theoretical values and graphs are plotted to check accuracy. For this comparison, various parameters such as impinging particle size, velocity of solid particles, concentration of slurry bath, hardness of mild steel, time are correlated to obtain a theoretical formulation. A non-dimensional analysis is also done to reduce the number of parameters influencing the wear rate.
Publisher Indian Society for Education and Environment (ISEE)
Date 2012-06-01
Source Indian Journal of Science and Technology Volume 5, Issue 6, June 2012

 

See other article in the same Issue


Goletty © 2024