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The abrupt increase in hardness was caused by the increased number of sp3 bonds in the carbon nitride coating.
An increase in hardness observed on Mo-coated steel indicates potential to produce hard surfaces by EPT, leading to many advanced applications.
That yields an increase in hardness towards the head region.
It is thus found that irradiation results in a loss of ductility and an increase in hardness.
On the other hand, samples tested at high loads showed a 73% increase in hardness.
Compared with annealed AZ31, a 30% increase in hardness was observed for the composites.
The significant increase in hardness and yield stress after ECAP was discussed by two strengthening mechanisms.
Hardness measurements show a considerable increase in hardness of the material after the processing, which confirms the microstructural evolutions.
The uniform dispersion of nanoparticles in the polymer led to significant increase in hardness and Young's modulus of the composites.
In MCD coating (sp3 C-C) the wear rate increases with increase in hardness.
The increasing boron content leads to an increase in hardness and wear resistance.
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