Matches in SemOpenAlex for { <https://semopenalex.org/work/W2744183035> ?p ?o ?g. }
- W2744183035 endingPage "29" @default.
- W2744183035 startingPage "20" @default.
- W2744183035 abstract "Abstract In this work, the duplex Ni-Zn-Cu-P/Ni-P electroless coating was applied on the AM60B magnesium alloy via new maleic acid pretreatment for potential applications in automobile industry. Also, the binary Ni-P coating was applied using the same pretreatment in order to compare the results. Scanning Electron Microscopy (SEM) images revealed that a cracked conversion film was created on the AM60B alloy after pretreatment in maleic acid solution. The binary Ni-P and duplex Ni-Zn-Cu-P/Ni-P electroless coatings with cauliflower-like micromorphology were successfully applied on the alloy surface after the maleic acid pretreatment. The duplex coating showed more regular and compact surface morphology as compared to the binary coating. The thickness of the electroless coatings were estimated by the cross-sectional SEM images which revealed that the inhibitory action of Zn 2 + ions on the plating rate was fully compensated by the addition of Cu 2 + ions. The microstructure and elemental composition of the electroless coatings were assessed by the X-ray Diffraction (XRD) and Energy Dispersive X-ray Spectroscopy (EDS), respectively. The binary coating demonstrated semi-amorphous microstructure while the duplex coating showed almost fully amorphous structure due to its high phosphorus (10.25 wt%) and considerable zinc (7.55 wt%) contents. Large ennoblement of the corrosion potential after application of the electroless coatings was revealed by Potentiodynamic Polarization (PDP) experiments in 3.5 wt% NaCl solution. Also, the corrosion current density of the bare alloy was significantly diminished after the electroless plating. The duplex coating showed relatively better corrosion protection capacity than the binary coating. The results of the PDP tests were confirmed by Electrochemical Impedance Spectroscopy (EIS) experiments in the same corrosive media. The micro-hardness of the bare alloy was remarkably increased after application of both the binary and duplex electroless coatings. The duplex coating showed relatively higher micro-hardness as compared to the binary coating due to the gain refinement. The applied electroless coatings were adherent which was revealed by the thermal shock and pull-off tests." @default.
- W2744183035 created "2017-08-17" @default.
- W2744183035 creator A5023829557 @default.
- W2744183035 creator A5038185062 @default.
- W2744183035 creator A5061821860 @default.
- W2744183035 creator A5034867883 @default.
- W2744183035 date "2017-11-01" @default.
- W2744183035 modified "2023-10-01" @default.
- W2744183035 title "Duplex Ni-Zn-Cu-P/Ni-P electroless coating on magnesium alloy via maleic acid pretreatment" @default.
- W2744183035 cites W1177781226 @default.
- W2744183035 cites W1574124136 @default.
- W2744183035 cites W1806886336 @default.
- W2744183035 cites W1897520112 @default.
- W2744183035 cites W1967111957 @default.
- W2744183035 cites W1968785512 @default.
- W2744183035 cites W1969228263 @default.
- W2744183035 cites W1972377805 @default.
- W2744183035 cites W1976565980 @default.
- W2744183035 cites W1977297249 @default.
- W2744183035 cites W1979753430 @default.
- W2744183035 cites W1985740305 @default.
- W2744183035 cites W1987873720 @default.
- W2744183035 cites W1989302122 @default.
- W2744183035 cites W1991699135 @default.
- W2744183035 cites W1996931095 @default.
- W2744183035 cites W2003486203 @default.
- W2744183035 cites W2004153007 @default.
- W2744183035 cites W2007759009 @default.
- W2744183035 cites W2008280119 @default.
- W2744183035 cites W2025822803 @default.
- W2744183035 cites W2036865764 @default.
- W2744183035 cites W2047862201 @default.
- W2744183035 cites W2050233668 @default.
- W2744183035 cites W2050804309 @default.
- W2744183035 cites W2050894333 @default.
- W2744183035 cites W2053232796 @default.
- W2744183035 cites W2054611457 @default.
- W2744183035 cites W2059285308 @default.
- W2744183035 cites W2060228692 @default.
- W2744183035 cites W2061529029 @default.
- W2744183035 cites W2061823571 @default.
- W2744183035 cites W2065609618 @default.
- W2744183035 cites W2067105737 @default.
- W2744183035 cites W2068048050 @default.
- W2744183035 cites W2071187109 @default.
- W2744183035 cites W2075601735 @default.
- W2744183035 cites W2076952110 @default.
- W2744183035 cites W2078954044 @default.
- W2744183035 cites W2083707333 @default.
- W2744183035 cites W2084450870 @default.
- W2744183035 cites W2087301390 @default.
- W2744183035 cites W2092675692 @default.
- W2744183035 cites W2093181668 @default.
- W2744183035 cites W2094999126 @default.
- W2744183035 cites W2106327181 @default.
- W2744183035 cites W2117936715 @default.
- W2744183035 cites W2148826195 @default.
- W2744183035 cites W2158933522 @default.
- W2744183035 cites W2162148821 @default.
- W2744183035 cites W2169562818 @default.
- W2744183035 cites W2186017663 @default.
- W2744183035 cites W2215866225 @default.
- W2744183035 cites W2343329573 @default.
- W2744183035 cites W2433013552 @default.
- W2744183035 cites W2481961878 @default.
- W2744183035 cites W2529236534 @default.
- W2744183035 cites W2532141628 @default.
- W2744183035 cites W2561744819 @default.
- W2744183035 doi "https://doi.org/10.1016/j.surfcoat.2017.08.027" @default.
- W2744183035 hasPublicationYear "2017" @default.
- W2744183035 type Work @default.
- W2744183035 sameAs 2744183035 @default.
- W2744183035 citedByCount "49" @default.
- W2744183035 countsByYear W27441830352018 @default.
- W2744183035 countsByYear W27441830352019 @default.
- W2744183035 countsByYear W27441830352020 @default.
- W2744183035 countsByYear W27441830352021 @default.
- W2744183035 countsByYear W27441830352022 @default.
- W2744183035 countsByYear W27441830352023 @default.
- W2744183035 crossrefType "journal-article" @default.
- W2744183035 hasAuthorship W2744183035A5023829557 @default.
- W2744183035 hasAuthorship W2744183035A5034867883 @default.
- W2744183035 hasAuthorship W2744183035A5038185062 @default.
- W2744183035 hasAuthorship W2744183035A5061821860 @default.
- W2744183035 hasConcept C15920480 @default.
- W2744183035 hasConcept C159985019 @default.
- W2744183035 hasConcept C185592680 @default.
- W2744183035 hasConcept C191897082 @default.
- W2744183035 hasConcept C192562407 @default.
- W2744183035 hasConcept C2776797782 @default.
- W2744183035 hasConcept C2780026712 @default.
- W2744183035 hasConcept C2781206178 @default.
- W2744183035 hasConcept C2781448156 @default.
- W2744183035 hasConcept C521977710 @default.
- W2744183035 hasConcept C543218039 @default.
- W2744183035 hasConcept C552990157 @default.
- W2744183035 hasConcept C55493867 @default.
- W2744183035 hasConcept C99611785 @default.