[[abstract]]Ni-P-W alloy coatings were deposited onto AISI420 steel substrates by both RF magnetron sputtering and electroless plating techniques. The coating hardness was investigated through the microhardness testing with a Knoop indenter. The strengthening mechanism of the Ni-P-W coatings in both as-deposited and heat-treated states were described. with respect to compositional distribution and microstructural evolutions. In the as-deposited state, all the coatings exhibited amorphous/nanocrystalline structure. After heat treatment, the amorphous phase of Ni-P-W coatings transformed into Ni3P precipitates and Ni(W) solid solution. The coatings were strengthened by the precipitation of Ni-P compounds and dissolving of W in the crystallize...
Ni–W coatings of different tungsten content (2–50 wt%) were electrodeposited on a steel substrates f...
Ni-P electroless coatings were prepared in nickel sulfate solution at different pH values of 4.5, 5....
Nanostructured Ni-W alloy coatings containing approximately 40 wt.% tungsten were electrodeposited o...
[[abstract]]Ni-P-W alloy coatings were deposited onto AISI420 steel substrates by both RF magnetron ...
[[abstract]]The electroless Ni-P-W coatings were deposited on the mild steel in the alkaline solutio...
Two types of electroless Ni-W-P coatings: nanocrystalline with low P and amorphous with higher P con...
[[abstract]]Ni-P-W composite deposit on the mild steel substrate was derived by the electroless proc...
[[abstract]]Ni-P-W alloy deposit on the mild steel substrate was obtained by the electroless process...
[[abstract]]Ternary Ni–P–W alloy coating was fabricated by the RF magnetron sputtering technique wit...
[[abstract]]Nickel-phosphorus-aluminum-tungsten (Ni-P-Al-W) multicomponent coating was fabricated by...
International audienceThe functional properties of both electrodeposited and sputtered nickel and Ni...
Electroless Ni-P coatings were obtained on steel substrates using different bath compositions, which...
In the present investigation, electroless (EL) ternary Ni–W–P coatings were prepared using hypophosp...
In the present investigation, electroless (EL) ternary Ni–W–P coatings were prepared using hypophosp...
An attempt has been made to deposit ternary Ni-W-P coatings autocatalytically using nickel sulphamat...
Ni–W coatings of different tungsten content (2–50 wt%) were electrodeposited on a steel substrates f...
Ni-P electroless coatings were prepared in nickel sulfate solution at different pH values of 4.5, 5....
Nanostructured Ni-W alloy coatings containing approximately 40 wt.% tungsten were electrodeposited o...
[[abstract]]Ni-P-W alloy coatings were deposited onto AISI420 steel substrates by both RF magnetron ...
[[abstract]]The electroless Ni-P-W coatings were deposited on the mild steel in the alkaline solutio...
Two types of electroless Ni-W-P coatings: nanocrystalline with low P and amorphous with higher P con...
[[abstract]]Ni-P-W composite deposit on the mild steel substrate was derived by the electroless proc...
[[abstract]]Ni-P-W alloy deposit on the mild steel substrate was obtained by the electroless process...
[[abstract]]Ternary Ni–P–W alloy coating was fabricated by the RF magnetron sputtering technique wit...
[[abstract]]Nickel-phosphorus-aluminum-tungsten (Ni-P-Al-W) multicomponent coating was fabricated by...
International audienceThe functional properties of both electrodeposited and sputtered nickel and Ni...
Electroless Ni-P coatings were obtained on steel substrates using different bath compositions, which...
In the present investigation, electroless (EL) ternary Ni–W–P coatings were prepared using hypophosp...
In the present investigation, electroless (EL) ternary Ni–W–P coatings were prepared using hypophosp...
An attempt has been made to deposit ternary Ni-W-P coatings autocatalytically using nickel sulphamat...
Ni–W coatings of different tungsten content (2–50 wt%) were electrodeposited on a steel substrates f...
Ni-P electroless coatings were prepared in nickel sulfate solution at different pH values of 4.5, 5....
Nanostructured Ni-W alloy coatings containing approximately 40 wt.% tungsten were electrodeposited o...