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Coating of magnesium particles yields Viton coated particles with higher thermal stability (632 °C); in comparison with the pure magnesium powder, which commences oxidation in the presence of air atmosphere at a lower temperature of 260 °C.
In this study, Taguchi robust design was employed as a statistical experiment design for coating of magnesium powder with azidodeoxy cellulose nitrate via solvent/non-solvent technique.
The results showed that the coating of magnesium powder with the Viton leads to a higher resistance of metal against oxidation in the presence of air atmosphere.
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To enhance the mechanical properties of TiN coating on magnesium alloy, metal vapor vacuum arc (MEVVA) ion implantation was performed to modify magnesium alloy substrate before TiN film deposition.
Recent studies investigated the suitability of PEO coating on magnesium alloys [ 6, 14, 16, 31].
The effect of azidodeoxy cellulose nitrate coating on magnesium powder thermal stability has been investigated by means of thermogravimetry (TG) coupled with differential scanning calorimetry (DSC).
The results suggest that fabricating a ZrO2 ceramic coating on magnesium alloys is an effective method to decrease the degradation rate of magnesium alloys thereby better matching clinical requirements.
A double-layered conversion coating system, consisting of magnesium hydroxide magnesium/manganese phosphate, was applied to magnesium alloy AZ91D using an acidic manganese nitrate and ammonium dihydrogen phosphate solution.
So to make a super-skinny laser, Zhang and colleagues laid down a micrometer-long, nanometers-wide wire of cadmium sulfide on a silver surface that had been coated with nanometers of magnesium fluoride.
These present results indicating that gradient duplex coating might be a good candidate as protective coating in engineering applications of magnesium alloys.
A columnar structure was observed for the magnesium coating, and crystalline phases of magnesium were detected, with growth preferred in the (002) orientation in 0.8 μm coating gradually changed to mixed orientations in (002), (102), and (103) planes with 9.5 μm coating.
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