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- W2912278129 abstract "The incorporation of TiN and Y2O3 nanoparticles together into Ni-W matrix have been investigated by pulse electrodeposition in present study. The microstructural, surface properties and corrosion resistance of Ni-W/TiN-Y2O3 nanocrystalline coating have been studied. It illustrated that the electrodeposited coatings have dense and nodular structure without defects. Results confirmed that TiN and Y2O3 particles were uniformly embedded in the composites. The embedded particles could improve the hardness and anti-corrosion properties of the obtained coating. The crystallite size calculated based on the preferred orientation (111) plane was of 14–17 nm, illustrating the formation of nanocrystalline structure. The mean Ra value was about 84.6 nm. Electrochemical impedance tests revealed that the preferred combination of operating parameters for optimum corrosion resistance was 70%, 1000 Hz, 40 min and 4 A dm−2. However, the best hardness and anti-wear properties were obtained at parameters of 50%, 500 Hz, 6 Adm−2 and 60 min. The extreme values of hardness and corrosion resistance were not realized simultaneously. The operating parameters should be kept in a certain balance to avoid the formation of inferior properties in any aspects of the coating; then the other performance advantages could be brought into full play. The preferred combination of operating parameters was optimized to be duty cycle of 70%, frequency of 1000 Hz, duration time of 40 min and average current density of 4 Adm−2, which enabled the electrodeposited coating optimum corrosion resistance and high mechanical properties." @default.
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- W2912278129 date "2019-05-01" @default.
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- W2912278129 title "Electrodeposition of Ni-W/TiN-Y2O3 nanocrystalline coating and investigation of its surface properties and corrosion resistance" @default.
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- W2912278129 doi "https://doi.org/10.1016/j.jallcom.2019.02.168" @default.
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