An overview of slurry erosion control by the application of high velocity oxy fuel sprayed coatings

Author:

Goyal D K1,Singh H2,Kumar H3

Affiliation:

1. Mechanical and Industrial Engineering Department, Baba Banda Singh Bahadur Engineering College, Fatehgarh Sahib, Punjab, India

2. School of Mechanical, Material and Energy Engineering, Indian Institute of Technology Ropar, Roopnagar, Punjab, India

3. Department of Mechanical Engineering, University Institute of Engineering and Technology, Punjab University, Chandigarh, India

Abstract

Slurry erosion of turbine components is a serious problem in most of the hydraulic power plants all around the world. Although some counter measures such as catchment area treatment to reduce the amount of sand particles going through the turbine components and modifying the hydraulic shape of turbine to reduce slurry erosion have been taken, still slurry erosion is responsible for heavy economic losses. Research is also in progress for improving the surface properties of the turbine components by the application of thermal sprayed coatings. Among various thermal spray processes, high-velocity oxy fuel (HVOF) spray process is a relatively industrially established and economical process. In this paper, an attempt has been made to describe HVOF thermal spray technology. Further, this paper presents a tutorial introduction, comprehensive history, and review of research work done on the use of this technique to provide protection against slurry erosion of some metals and alloys with a special emphasis on the hydraulic turbine steels.

Publisher

SAGE Publications

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering

Reference38 articles.

1. Numerical prediction of erosion on guide vanes and in labyrinth seals in hydraulic turbines

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3. Slurry erosion of thermal spray coatings and stainless steels for hydraulic machinery

4. High-energy particle impact wear resistance of hard coatings and their application in hydroturbines

5. Abrasive and erosive wear characteristics of plasma nitriding and HVOF coatings: their application in hydro turbines

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