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Corrosive wear occurs whenever a gas or liquid chemically attacks a surface left exposed by the sliding process.
As the sliding distance increased, variety of wear mechanisms was seen during the sliding process at different applied loads.
Smaller stresses are generated in sliding conditions between the fault surfaces due to the dissipated energy in the sliding process.
On the other hand, the tribological tests did not show any effect of the embedded TMD nanoclusters in the sliding process.
The fluid lubricating film of a soft solid lubricant on a porous composite surface after a sliding process is analyzed by scanning electron microscopy.
The main attention is aimed at qualitative description of surface and sub-surface modification of the films as the result of the sliding process.
A W-rich patchy-like tribo-layer is present on the wear track, indicating the occurrence of materials transfer during the sliding process.
The graphitized particles can reduce the strong adhesive interaction between contact surfaces, resulting in the low frictional shear resistance during sliding process.
In some cases, the depth reorientation of the originally randomly oriented TMD platelets as a reaction to the sliding process has been observed.
The low value of the stress exponent in the creep law (n = 1 at 1200°C) is associated with diffusion assisted by a sliding process.
At the same time, the Cr/GLC films with low dimple area densities exhibited low surface roughness, which could decrease the resistance in sliding process.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com