Search Results - "Thompson, G E"

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  1. 1

    Corrosion resistance of WE43 and AZ91D magnesium alloys with phosphate PEO coatings by Arrabal, R., Matykina, E., Viejo, F., Skeldon, P., Thompson, G.E.

    Published in Corrosion science (01-06-2008)
    “…The corrosion performance of WE43-T6 and AZ91D magnesium alloys with and without treatment by plasma electrolytic oxidation (PEO) was investigated by…”
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    Journal Article
  2. 2

    Investigation of the growth processes of coatings formed by AC plasma electrolytic oxidation of aluminium by Matykina, E., Arrabal, R., Skeldon, P., Thompson, G.E.

    Published in Electrochimica acta (30-11-2009)
    “…The formation of alumina-based coatings on aluminium by AC plasma electrolytic oxidation (PEO) has been investigated using a silicate electrolyte with…”
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    Journal Article
  3. 3

    Characterization of AC PEO coatings on magnesium alloys by Arrabal, R., Matykina, E., Hashimoto, T., Skeldon, P., Thompson, G.E.

    Published in Surface & coatings technology (30-05-2009)
    “…Optical emission spectroscopy, fast video imaging and coating characterization are employed to investigate AC plasma electrolytic oxidation (PEO) of magnesium…”
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    Journal Article
  4. 4

    Incorporation of zirconia particles into coatings formed on magnesium by plasma electrolytic oxidation by Arrabal, R., Matykina, E., Skeldon, P., Thompson, G. E.

    Published in Journal of materials science (01-03-2008)
    “…The incorporation of particles of monoclinic zirconia into coatings formed on magnesium by plasma electrolytic oxidation has been examined in order to…”
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    Journal Article
  5. 5

    Tribological behavior of electroless Ni–B coatings on magnesium and AZ91D alloy by Correa, E., Zuleta, A.A., Guerra, L., Gómez, M.A., Castaño, J.G., Echeverría, F., Liu, H., Skeldon, P., Thompson, G.E.

    Published in Wear (01-07-2013)
    “…Ni–B coatings have been deposited directly on commercial purity magnesium and AZ91D alloy and characterized using glow discharge optical emission spectroscopy,…”
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    Journal Article
  6. 6

    Anodic growth of titanium oxide: Electrochemical behaviour and morphological evolution by Mazzarolo, A., Curioni, M., Vicenzo, A., Skeldon, P., Thompson, G.E.

    Published in Electrochimica acta (30-07-2012)
    “…The mechanism of growth of anodic titanium oxide in sulphuric acid has been investigated by potentiostatic and potentiodynamic anodizing, electrochemical…”
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    Journal Article
  7. 7

    Susceptibility of rare-earth-magnesium alloys to micro-galvanic corrosion by Coy, A.E., Viejo, F., Skeldon, P., Thompson, G.E.

    Published in Corrosion science (01-12-2010)
    “…► SKPFM provided information about galvanic interactions existing in Mg alloys. ► Galvanic interactions depended on the Volta potential differences of the…”
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    Journal Article
  8. 8

    Real-time imaging of coating growth during plasma electrolytic oxidation of titanium by Matykina, E., Berkani, A., Skeldon, P., Thompson, G.E.

    Published in Electrochimica acta (31-12-2007)
    “…The microdischarge characteristics during dc plasma electrolytic oxidation (PEO) of titanium at 20 mA cm −2 in orthophosphate electrolyte at 293 K have been…”
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    Journal Article Conference Proceeding
  9. 9

    Plasma electrolytic oxidation of pre-anodized aluminium by Matykina, E., Arrabal, R., Mohamed, A., Skeldon, P., Thompson, G.E.

    Published in Corrosion science (01-12-2009)
    “…The influence of an anodizing pre-treatment in sulphuric acid is investigated on plasma electrolytic oxidation (PEO) of aluminium in silicate electrolyte under…”
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    Journal Article
  10. 10

    Influence of water content on nanotubular anodic titania formed in fluoride/glycerol electrolytes by Valota, A., LeClere, D.J., Skeldon, P., Curioni, M., Hashimoto, T., Berger, S., Kunze, J., Schmuki, P., Thompson, G.E.

    Published in Electrochimica acta (01-07-2009)
    “…A study has been carried out of nanotubular anodic films formed on titanium at 20 V in fluoride/glycerol electrolyte, containing up to 50 vol.% water…”
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    Journal Article
  11. 11

    AC plasma electrolytic oxidation of magnesium with zirconia nanoparticles by Arrabal, R., Matykina, E., Viejo, F., Skeldon, P., Thompson, G.E., Merino, M.C.

    Published in Applied surface science (30-08-2008)
    “…The incorporation of monoclinic zirconia nanoparticles and their subsequent transformation is examined for coatings formed on magnesium by plasma electrolytic…”
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    Journal Article
  12. 12

    Microstructure, corrosion and wear performance of plasma electrolytic oxidation coatings formed on Ti–6Al–4V alloy in silicate-hexametaphosphate electrolyte by Cheng, Ying-liang, Wu, Xiang-Quan, Xue, Zhi-gang, Matykina, E., Skeldon, P., Thompson, G.E.

    Published in Surface & coatings technology (25-02-2013)
    “…Coatings have been produced on Ti–6Al–4V alloy by plasma electrolytic oxidation (PEO) using an aqueous solution of Na2SiO3 and (NaPO3)6 with a pulsed…”
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    Journal Article
  13. 13

    Broad ion beam serial section tomography by Winiarski, B., Gholinia, A., Mingard, K., Gee, M., Thompson, G.E., Withers, P.J.

    Published in Ultramicroscopy (01-01-2017)
    “…Here we examine the potential of serial Broad Ion Beam (BIB) Ar+ ion polishing as an advanced serial section tomography (SST) technique for destructive 3D…”
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    Journal Article
  14. 14

    Development of anodic coatings on aluminium under sparking conditions in silicate electrolyte by Monfort, F., Berkani, A., Matykina, E., Skeldon, P., Thompson, G.E., Habazaki, H., Shimizu, K.

    Published in Corrosion science (01-02-2007)
    “…Spark anodizing of aluminium at 5 A dm −2 in sodium metasilicate/potassium hydroxide electrolytes is studied, with particular emphasis on the mechanism of…”
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    Journal Article
  15. 15

    Corrosion of AA2024-T3 Part II: Co-operative corrosion by Hughes, A.E., Boag, A., Glenn, A.M., McCulloch, D., Muster, T.H., Ryan, C., Luo, C., Zhou, X., Thompson, G.E.

    Published in Corrosion science (2011)
    “…► Corrosion of AA2024 in 0.1 M NaCl was examined for immersion times up to 120 min. ► Rings of corrosion products with H 2 evolution developed as early as 5…”
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    Journal Article
  16. 16

    A quantitative three-dimensional in situ study of a short fatigue crack in a magnesium alloy by Marrow, T.J., Mostafavi, M., Hashimoto, T., Thompson, G.E.

    Published in International journal of fatigue (01-09-2014)
    “…[Display omitted] •Destructive 3D analysis is compared with non-destructive X-ray Computed micro-tomography.•Serial Block Face Scanning Electron Microscopy of…”
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    Journal Article
  17. 17

    Formation of zirconium-based conversion coatings on aluminium and Al–Cu alloys by George, F.O., Skeldon, P., Thompson, G.E.

    Published in Corrosion science (01-12-2012)
    “…► Formation of zirconium-based conversion coatings is investigated on aluminium. ► Copper alloying is shown to reduce the rate of coating growth. ► Copper is…”
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    Journal Article
  18. 18

    Effect of fluoride on plasma electrolytic oxidation of AZ61 magnesium alloy by Němcová, A., Skeldon, P., Thompson, G.E., Pacal, B.

    Published in Surface & coatings technology (01-10-2013)
    “…Plasma electrolytic oxidation has been carried out on AZ61 magnesium alloy in a silicate–phosphate electrolyte under pulsed current conditions. It is shown…”
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    Journal Article
  19. 19

    Wear-resistant coatings formed on Zircaloy-2 by plasma electrolytic oxidation in sodium aluminate electrolytes by Cheng, Yingliang, Cao, Jinhui, Peng, Zhaomei, Wang, Qun, Matykina, E., Skeldon, P., Thompson, G.E.

    Published in Electrochimica acta (10-01-2014)
    “…•PEO of Zircaloy-2 is investigated in different concentrations of aluminate.•“Soft” sparks enhance the growth of the inner coating layer in dilute…”
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    Journal Article
  20. 20

    Crystallization of anodic titania on titanium and its alloys by Habazaki, H., Uozumi, M., Konno, H., Shimizu, K., Skeldon, P., Thompson, G.E.

    Published in Corrosion science (01-09-2003)
    “…Crystallization of amorphous anodic films grown at constant current density on sputtering-deposited titanium, and Ti–Si and Ti–Al alloys, in ammonium…”
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    Journal Article