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Transactions of the IMF
The International Journal of Surface Engineering and Coatings
Volume 99, 2021 - Issue 6
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Research Article

Microstructures and corrosion resistance of conversion film-electroless Ni-W-P ternary coatings on AZ91D magnesium alloy

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Pages 292-298 | Received 08 Mar 2021, Accepted 13 Apr 2021, Published online: 02 Aug 2021
 

ABSTRACT

Ni-W-P ternary coating was synthesised on AZ91D magnesium alloy substrates by an integrated method. The corrosion resistance mechanism of conversion film-electroless Ni-W-P coatings on a substrate has been examined. Results revealed that the corrosion resistance of Ni-W-P coating with a phytic acid conversion film was better than that with a stannate film. The surface morphologies of Ni-W-P coatings were of an amorphous cellular structure, uniform and dense. Moreover, it was observed that the corrosion rate of Ni-W-P coating with a phytic acid conversion film heat-treated at 200°C reached the minimum of 0.0345 g m−2·h−1, the self-corrosion potential was −0.335 V, and the capacitive arc radius from electrochemical impedance spectroscopy testing was the largest, which revealed that the corrosion resistance of these Ni-W-P coatings was the best. The results were ascribed to the formation of a stable chelate on the substrates after phytic acid pretreatment, which improved the bonding strength between the Ni-W-P coatings and substrates.

Disclosure statement

No potential conflict of interest was reported by the author(s).

Additional information

Funding

The work was supported by the National Natural Science Foundation of China [grant number 50172023] and the Shaanxi Industrial Science and Technology Research [grant number 2014K08-09] and the Key Research and Development Program of Shaanxi Province of China [grant number 2020GY-115].

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