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A model based on genetic programming for predicting the layer thickness of duplex coating of the specimens has been presented.
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Coating of the Ti6Al4V specimens with TiO2 significantly increased both the fibroblast growth on the sample surfaces (P = 0.01) and the fibroblast mitochondric activity (P = 0.02) (Figs. 4, 5).
Further coating of the grit blasted specimens with a deposit of Metco 447 of approximately 300 μm thick, applied by HVOF thermal spraying, leads to a further reduction in the fatigue strength of the material.
Following sputter gold coating, the surface morphology of the specimens was observed under 500 × magnification.
Fluoride conversion coating increased the corrosion resistance of the specimens.
Using design of experiment technique, an experimental investigation was performed to study physical vapor deposition coating of needle specimens with end tip radii less than 100 nm.
The fractured surfaces of the specimens were coated with platinum and were exposed to accelerating voltage of 20 kV.
The surfaces of the specimens that were coated earlier with carbon for the qBSE measurements were coated with additional carbon using high purity carbon, for better contrast.
Osmium plasma coating was conducted to enhance the conductivity of the specimens.
Argon is preferred for the sputter coating of specimens for scanning electron microscopy.
Both the mechanical behaviour and the corrosion resistance of the specimens have been studied after coating.
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