A coupled approach for rolling contact fatigue cracks in the hydrodynamic lubrication regime: The importance of fluid/solid interactions

Author:

Balcombe Robbie,Fowell Mark T.,Olver Andrew V.,Ioannides Stathis,Dini Daniele

Publisher

Elsevier BV

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanics of Materials,Condensed Matter Physics

Reference34 articles.

1. A rolling contact fatigue crack driven by squeeze fluid film;Bogdanski;Fatigue and Fracture of Engineering Materials and Structures,2002

2. The influence of crack face friction and trapped fluid on surface initiated rolling contact fatigue cracks;Bower;Transaction of the ASME – Journal of Tribology,1988

3. Effects of oil hydraulic pressure on surface crack growth in rolling/sliding contact;Kaneta;Tribology International,1987

4. A pitting model for rolling-contact fatigue;Keer;Transactions of the ASME – Journal of Lubrication Technology,1983

5. Direct observations of a micropit in an elastohydrodynamic contact;Olver;Wear,2004

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