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- W2972725123 endingPage "100383" @default.
- W2972725123 startingPage "100383" @default.
- W2972725123 abstract "Application of basic engineering components from bearing and fasteners to complex systems of sheet metal forming, pumps, valves or piston-cylinder assembly of engines exhibits the mating and rubbing of surfaces causing issues like topological roughness, wear and galling. Galling is the surface phenomenon, which involves adhesion of local contact points and creation of protrusions on the surface owing to high friction, inappropriate tribological loading, starved lubrication and high contact pressure (∼1000 kPa). All these factors result in severe plastic deformation varying from 8000µε to 10,000µε (ε- Strain) and diffusion of materials into one another, consequently result in fatigue wear, surface roughness and seizing up of critical parts which in response severely affect the service life and economy of the components and shutting down of the system. The aim of the review is to analyze and summarize the issue of galling caused by various physical and mechanical properties of materials as well as the effect of environmental and different designing parameters. Simultaneously, it also deals with the novel and advanced techniques for the mitigation of galling such as design rectification using FEA models, microstructural variation by alloying or heat treatment to enhance the thermal conductivity, use of solid lubricants, hard ceramic coatings such as Titanium nitride and synergistic PTFE incorporated copper or silver coatings having high proficiency against galling, eventually increasing the service life of components without failure and decreasing the capital invested." @default.
- W2972725123 created "2019-09-19" @default.
- W2972725123 creator A5010452127 @default.
- W2972725123 creator A5074647237 @default.
- W2972725123 date "2019-12-01" @default.
- W2972725123 modified "2023-10-05" @default.
- W2972725123 title "Rudiment of ‘galling: Tribological phenomenon’ for engineering components in aggregate with the advancement in functioning of the anti-galling coatings" @default.
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