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Influence of molybdenum on the mechanical properties, electrochemical corrosion and wear behavior of electrodeposited Ni-Mo alloy
, M. V.N. Vamsi
Published in Elsevier B.V.
2019
Volume: 370
   
Pages: 298 - 310
Abstract
In the present work, the influence of molybdenum (Mo) content on the grain size, hardness, corrosion and wear behavior of Ni-Mo alloy coatings electrodeposited from citrate electrolyte has been studied. Crack free Ni-Mo alloy with different Mo content (3, 5, 6, 9 and 12 at.%) was obtained using direct current and pulsed current electrodeposition. It was observed that the grain size of Ni-Mo alloy decreased with increase in Mo content. Hardness of the coatings increased with Mo content and decreased subsequently above 9 at.% Mo as per inverse Hall-Petch effect. Potentiodynamic polarization tests carried out in 2 N H2SO4 suggested increase in both corrosion current and passive current density with increase in Mo content. In addition, both friction coefficient and dry sliding wear rate of Ni-Mo coatings decreased with increase in Mo content. The results are rationalized based on grain size and Mo content in the coatings. Finally, Ni-Mo and Ni-W coatings were compared with hard chrome with respect to mechanical properties, wear and corrosion resistance. Results indicated that, Ni-Mo coatings exhibit least friction coefficient (0.2–0.3) amongst Ni-W and hard chrome coatings. © 2019
About the journal
JournalData powered by TypesetSurface and Coatings Technology
PublisherData powered by TypesetElsevier B.V.
ISSN02578972
Open AccessNo
Concepts (28)
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    Binary alloys
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    Chromate coatings
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    Corrosion
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    Corrosion resistance
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    CORROSION RESISTANT COATINGS
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    Electrochemical corrosion
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    Electrodeposition
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    Electrodes
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    Electrolytes
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    Friction
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    Grain size and shape
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    Hard coatings
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    Hardness
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    Mechanical properties
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    Nickel alloys
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    Tribology
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    Tungsten alloys
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    Wear of materials
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    Wear resistance
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    Corrosion and wears
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    Friction coefficients
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    Grain size
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    INVERSE HALL-PETCH EFFECTS
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    PASSIVE CURRENT DENSITIES
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    Potentiodynamic polarization tests
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    PULSED-CURRENT ELECTRODEPOSITION
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    WEAR AND CORROSION RESISTANCE
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    Molybdenum alloys