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Cr3C2 NiCr coatings were deposited by high velocity oxy-fuel (HVOF) process with different spray parameters to examine dominant microstructural factors in abrasive wear of the coatings.
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The microstructural factors associated with the improvements in the mechanical properties are discussed in detail.
It is suggested that microstructural factors often play a strong role, in addition to their influence on mechanical properties.
The effects of these microstructural factors on the transformation behavior are discussed in the light of transformation thermodynamics.
In nanocrystalline alloys, some microstructural factors are usually tied to grain interior composition, including grain size, grain boundary composition, and grain boundary width.
Microstructural factors related to the inelastic deformation mode characteristics in B2 ordered alloys are discussed.
The influences of microstructural factors on crack growth behavior are examined using in situ experiments.
In materials with similar porosity levels, other microstructural factors became relevant such as, matrix morphology and the amount of alloying elements.
Dielectric constant in ferrites is contributed by several structural and microstructural factors.
Decrease in resistivity with increase in sintering temperature may be attributed to the microstructural factors such as grain size, porosity, grain boundary area, as well as conversion of trivalent Fe3+ ions to the divalent Fe2+ state.
This work investigates various microstructural factors (volume fraction, length scale and yield strength) influencing strain delocalization in a model MGM composite.
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