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Surface wear and adhesive delamination existed.
Surface wear patterns downstream the orifices were also analyzed.
The most common mechanism in total hip arthroplasties has been shown to be surface wear.
Surface wear and subsurface fatigue failure mechanisms both contribute to glenoid implant failure.
The surface wear of MCWR tool and the surface toughness evolution have been investigated.
Wear prediction combined the influences of contact stress, sliding distance and a surface wear coefficient.
Surface wear is investigated after a series of accelerated lifetime tests under high dynamic load.
The achieved service life of the geared unit mainly depends on the gear tooth strength and surface wear.
To more clearly delineate the effects of different types of breakage, surface wear has not been included in these simulations.
Other important factors influencing surface wear are the durability and texture of the rock type selected for tool use.
Technology advancement in surface engineering ensures the minimum surface wear with the introduction of polycrystalline nano nickel coating.
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