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Volumn 38, Issue , 2008, Pages 27-35
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Simultaneous reduction of wear and corrosion of titanium, magnesium and zirconium alloys by surface plasma electrolytic oxidation treatment
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Author keywords
Cavitation; Coating; Corrosion; Hardness; Magnesium; Plasma electrolytic oxidation; Titanium; Wear resistance; Zirconium alloys
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Indexed keywords
ALLOYS;
ALUMINUM;
ALUMINUM ALLOYS;
ALUMINUM CLADDING;
BIOCHEMICAL ENGINEERING;
CERAMIC COATINGS;
CHEMICAL OXYGEN DEMAND;
COATING TECHNIQUES;
COATINGS;
COMPUTER NETWORKS;
CORROSION;
ELECTRIC DISCHARGES;
ELECTRICITY;
ELECTROLYSIS;
ELECTROLYTES;
HEALTH;
IMPLANTS (SURGICAL);
INDUSTRIAL APPLICATIONS;
LIGHT METALS;
MAGNESIUM;
MAGNESIUM PRINTING PLATES;
METALS;
NEODYMIUM;
OXIDATION;
PAINTING;
PAPER;
PLASMA (HUMAN);
PLASMA ENHANCED CHEMICAL VAPOR DEPOSITION;
PLASMAS;
PROTECTIVE COATINGS;
SURFACE TREATMENT;
TECHNOLOGY;
TERNARY ALLOYS;
THIN FILMS;
TITANIUM;
TITANIUM ALLOYS;
WEAR RESISTANCE;
ZINC PLATING;
ZIRCONIUM;
ZIRCONIUM ALLOYS;
(E ,3E) PROCESS;
(OTDR) TECHNOLOGY;
(PL) PROPERTIES;
ALTERNATIVE APPROACH;
APPLIED (CO);
CATHODIC CURRENTS;
ELECTROLYTE SYSTEMS;
FUNCTIONAL PROPERTIES;
HIGH TEMPERATURE (HT);
HIGH-VOLTAGE (HV);
OPTIMAL PROCESS PARAMETERS;
OXIDE-CERAMIC COATINGS;
PLASMA ELECTROLYTIC OXIDATION (PEO);
SPARK DISCHARGES;
SURFACE PLASMAS;
SYNTHESIS METHODS;
WEAR AND CORROSION RESISTANCE;
CORROSION RESISTANCE;
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EID: 45749117573
PISSN: 10226680
EISSN: None
Source Type: Book Series
DOI: 10.4028/0-87849-390-5.27 Document Type: Conference Paper |
Times cited : (20)
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References (9)
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