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The pressure and shear distribution functions are found in closed form under partial slip condition.
Systematic and controlled experiments with a cylinder-flat contact under partial slip fretting conditions were carried out.
Specimens with an infinite lifetime tested under partial slip condition showed a relatively low oxygen concentration on the center of the wear surface.
Results reveal that more attention should be paid to the mesh size at contact interface, when the contact condition is under partial slip regime.
The study concludes that the use of local magnitudes of interfacial shear stress in the analysis of surface initiated rolling contact fatigue under partial slip conditions is conservative.
In addition, the results suggest an explanation for the observed variations in location of crack initiation within the slip zone under partial slip conditions.
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Furthermore, severe wear under the partial slip regime was avoided.
This paper summarises an attempt to propose a methodology suitable for estimating high-cycle fatigue strength of cylindrical contacts under a partial slip regime.
It is shown that the separate modelling of nucleation and propagation in the presence of wear can significantly affect the prediction of fatigue life under both partial slip and gross sliding conditions.
A well known 35Ni Cr Mo 16 low-alloyed steel was studied under various plain fretting partial slip conditions.
The surface of the cylinder is heated under constant surface temperature with partial slip.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com