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The aim of this work was to study the specific corrosion resistance of Ti 6Al 4V with ceramic coating by MPO and the effects of the coating on the corrosion resistance through the comparison between the coated samples and the Ti 6Al 4V substrate.
The effects of the coating contents and T6 heat-treatment on the bending properties of the composites were investigated.
The thermal cycling effects of the coating were studied using microscopic and accelerated test methods.
The fatigue fractures of the axles and the effects of the coating resistance were investigated.
Increased blasting intensity leads to a significant increase in surface roughness, which promotes mechanical anchoring effects of the coating.
In particular, a methodology was applied to evaluate the effects of the coating thickness and the interlayer on diamond coating delaminations.
Similar(38)
The improved rate capability and cyclic performance of the coated sample have been explained by the protective effect of the coating layer.
However, it clearly shows that the Co concentration of the coated film was maintained stable after storage (Figure 4b), which confirms the protective effect of the coating layer from the reactive electrolyte.
The effect of the coating on interparticle forces was studied.
The effect of the coating on the permeability of KCl brine through coal was measured in a core-flood apparatus.
The effect of the coating thickness on spectral selectivity, including the solar absorptance and thermal emittance, was investigated.
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