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The above analysis indicates that the minimum wear depth is closely associated with the initiation of plasticity.
It is indicated that the minimum wear depth is equivalent to the critical penetration depth associated with the first force-drop observed in the force-depth curve.
While the contact pressure for the nucleation of initial dislocation is independent on probe radius, the minimum wear depth increases with probe radius.
In summary, we perform MD simulations to investigate the atomic scale origin of the minimum wear depth of single crystalline Cu(111) during single asperity friction.
In the present work, we investigate the minimum wear depth of single crystalline Cu(111) under single asperity friction by means of molecular dynamics simulations.
Our simulations demonstrate that the minimum wear depth is determined by the formation of permanent defects such as dislocations and vacancies and is strongly probe radius-dependent.
Similar(51)
Proper design and reliable operation of nuclear power generating plants require accurate prediction of fretting wear failure criteria, which include the volumetric wear losses, the maximum wear depth and minimum root radius of the scar.
The correlation between the maximum wear depth hmax and the minimum root radius Rr, has been established, an aspect that has never been investigated before.
The maximum wear depth was approximately 8 µm in water.
The maximum wear depth was determined by "blowing up" virtual bullets within the surface of abrasion.
The arrow in Fig. 3 shows the maximum wear depth after CS.
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