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There exists a critical contact size, where fatigue lives are longer than 107 cycles.
The experiments reveal there is a contact size effect in fretting fatigue life.
This contact size effect is captured by the finite element approach of the present work.
There are hundreds of papers dealing with the influence of the contact size, non-uniformities and other second order effects.
The contact size, stick-zone size, indenter approach, Coulomb energy dissipation and surface hoop stresses are tracked during fretting.
A series of fretting fatigue experiments are described in which the fatigue life is found to vary with contact size.
In a typical application, a distribution of individual wear resistant islands of small dimension relative to the overall contact size is used.
We report on a study seeking an optimized contact configuration for organic transistors that minimizes contact effects but maintains smallest contact size.
The influences of liquid volume and contact angles are discussed via a scaling law indicating that the adhesive strength can be enhanced by contact size reduction.
Instead they make eye contact, size up other drivers' body language and even take into account what kind of car they are driving in order to gauge who has right of way, and who will yield.
In the network discretization each contact between two particles is substituted by a bond resistance defined by contact size and the type of materials in contact.
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