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Boundary conditions may contain nonlinear contact interfaces.
Failure modes at contact interfaces involve cracking, crushing and sliding.
All of these applications are capable of experiencing stick/slip phenomena at the contact interfaces.
Under high amplitude vibrations, contact interfaces experience micro-vibro-impacts and frictional slips.
Detailed fretting wear phenomena are usually hidden between the two compact contact interfaces.
Friction in contact interfaces of assembled structures is the prime source of nonlinearity and energy dissipation.
The structural model is an assemblage of rigid blocks which interact at contact interfaces.
Machine tool components are connected by joints that provide relative motion between contact interfaces.
Engineering practices have indicated that surface textures and topography greatly affect the mechanical performance of contact interfaces.
In particular, when there are more kinematic constraints then there are degrees of freedom, some contact interfaces must slip.
The flow in the fluidic channels is regulated by crisscrossing control channels with the contact interfaces acting as valves.
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