IEEE Transactions on Components Hybrids and Manufacturing Technology · 1992 · 60 citations · 6 references
EngineeringMechanical EngineeringMechanics ModelingStationary ContactsWear TestingMechanicsContact MechanicWear ModellingComputational GeometryGeometric ModelingContact SpotsSolid MechanicsSurface FinishRough SurfacesContact ForceNatural SciencesRandom VariationsSurface ModelingSurface FeaturesMechanics Of Materials
A statistical model was developed to characterize surface profiles and calculate the density of contact spots produced when rough surfaces are pressed together. This model incorporates contact force, microhardness, and real and apparent contact area as parameters which can be varied. The effects these variables have on the number of contact spots and asperity deformation were calculated. These results were subsequently used to evaluate the impact on electrical performance of aged contacts. This was accomplished using a previously developed degradation model due to the author (1990) that utilizes the concept of a third level of constriction to simulate aging. The results indicate that both contact force and geometry play important roles in electrical performance of aging contacts. The connection between geometry and apparent pressure was estimated using the Hertz theory and indicates that one can view pressure as an important vehicle as well.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">></ETX>
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On area of contact between rough surfaces and flats
Wear · 1967 · 151 citations
The Area of Contact Between Rough Surfaces and Flats
John A. Greenwood · Journal of Lubrication Technology · 1967 · 150 citations
Multispot model of contacts based on surface features
R.D. Malucci · 2002 · 65 citations