Exact(5)
In many cases, similar microstructure was not indicative of corresponding hardness behavior.
The Raman spectra follow the stage 2 of an established model and this structure transition may explain the hardness behavior.
To validate our approach, the hardness behavior of a two-layers coating material (Ni-P) is studied.
On the other hand, the hardness behavior of thicker coatings (8um) was affected by the nitrided layer, as the thicker coatings were soft due to their columnar structure.
The hardness behavior across relatively thin (3 μm) coatings was not affected by the nitrided surface hardness or thickness of the nitride layer in the range of values examined here (80 150 μm).
Similar(55)
Hardness softening behavior was observed for smaller grain size, which supports the GB sliding mechanism.
The film hardness, corrosion behavior, phase composition, and texture were determined.
The density, hardness, tensile behavior and fracture toughness of these composites have been found to be either comparable or superior to the ceramic reinforced composites.
Indentation studies were performed to analyze hardness, cracking behavior, and fracture toughness of bias varied pristine to re-heated specimens.
In this study, the microstructure, mechanical properties (transverse rapture strength and hardness), crack behavior and fracture modes of a low alloy Fe Cr powder (Astaloy CrA) with different amount of copper (0, 1 and 2 wt.%) and carbon, in form of graphite (0.45, 0.6 and 0.8 wt.%) sintered at conventional condition have been investigated.
The hardness and tribological behavior of the coatings were investigated.
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