Rolling bearings are one of the most widely used components in industrial machinery. If suitably mounted, loaded, lubricated and isolated from contamination, rolling contact fatigue (RCF) is believed to be the most probable mode of failure resulting in subsurface originated failures. Over the past several decades many researchers have studied the failure and microstructural alterations in bearings such as dark etching regions and white etching bands and how operating conditions such as pressure, temperature and running time impact them during RCF. This paper aims to provide an overview of such alterations, their properties, formation mechanisms and impact on bearing failure
Microstructural alterations such as dark etching regions (DERs) and white etching bands (WEBs) have ...
Abstract: Rolling bearing operation is affected by friction, wear and lubrication mechanisms, fluid ...
Bearing elements during service are subjected to rolling contact fatigue (RCF) resulting in bearing ...
AbstractThis paper addresses Rolling Contact Fatigue (RCF) occurs due to the result of cyclic stress...
Current understanding of rolling contact fatigue is reviewed. The stress developed in the subsurface...
For over a century, rolling contact fatigue in bearings has been recognised as a key feature limitin...
AbstractThis paper addresses Rolling Contact Fatigue (RCF) occurs due to the result of cyclic stress...
Bearings are vital components that are widely used in modern machinery. Although usually manufacture...
For over a century, rolling contact fatigue in bearings has been recognized as a key feature limitin...
Rolling contact fatigue (RCF) unavoidable mode of failure observed in two surfaces which are rolling...
Bearing elements under rolling contact fatigue (RCF) exhibit microstructural features, known as whit...
Abstract: A review of some of the recent work on the mechanism of rolling contact fatigue (RCF) is p...
This paper presents a new stage of on-going research to fully characterize the rolling contact fatig...
Rolling bearing operation is affected by friction, wear and lubrication mechanisms, fluid dynamics a...
Rolling bearing operation is affected by friction, wear and lubrication mechanisms, fluid dynamics a...
Microstructural alterations such as dark etching regions (DERs) and white etching bands (WEBs) have ...
Abstract: Rolling bearing operation is affected by friction, wear and lubrication mechanisms, fluid ...
Bearing elements during service are subjected to rolling contact fatigue (RCF) resulting in bearing ...
AbstractThis paper addresses Rolling Contact Fatigue (RCF) occurs due to the result of cyclic stress...
Current understanding of rolling contact fatigue is reviewed. The stress developed in the subsurface...
For over a century, rolling contact fatigue in bearings has been recognised as a key feature limitin...
AbstractThis paper addresses Rolling Contact Fatigue (RCF) occurs due to the result of cyclic stress...
Bearings are vital components that are widely used in modern machinery. Although usually manufacture...
For over a century, rolling contact fatigue in bearings has been recognized as a key feature limitin...
Rolling contact fatigue (RCF) unavoidable mode of failure observed in two surfaces which are rolling...
Bearing elements under rolling contact fatigue (RCF) exhibit microstructural features, known as whit...
Abstract: A review of some of the recent work on the mechanism of rolling contact fatigue (RCF) is p...
This paper presents a new stage of on-going research to fully characterize the rolling contact fatig...
Rolling bearing operation is affected by friction, wear and lubrication mechanisms, fluid dynamics a...
Rolling bearing operation is affected by friction, wear and lubrication mechanisms, fluid dynamics a...
Microstructural alterations such as dark etching regions (DERs) and white etching bands (WEBs) have ...
Abstract: Rolling bearing operation is affected by friction, wear and lubrication mechanisms, fluid ...
Bearing elements during service are subjected to rolling contact fatigue (RCF) resulting in bearing ...