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文磊等:铝合金表面纳米化一微弧氧化复合涂层摩擦行为 ·1357· alloys.Ceram Int,1998,24(1):1 [14]Baxi J,Kar P,Liang H,et al.Tribological characterization of [5]Gerasimov M V,Nikolaev V A,Shcherbakov A N.Microplasma microarc oxidized alumina coatings for biological applications oxidation of metals and alloys.Metallurgist,1994,38(7-8): Vacuum,2008,83(1):217 179 [15]Deamley P A,Gummersbach J,Weiss H,et al.The sliding 6]Magurova Y V,Timoshenko A V.The effect of a cathodic compo- wear resistance and frictional characteristics of surface modified nent on AC microplasma oxidation of aluminum-alloys.Prot Met, aluminium alloys under extreme pressure.Wear,1999,225-229 1995,31(4):377 (1):127 Rudnev VS,YarovayaTP,Konshin VV.Microplasma oxidation [16]Rama Krishna L,Sudha Pumima A,Sundararajan G.A compar- of an aluminum alloy in aqueous solutions containing sodium cyclo- ative study of tribological behavior of microare oxidation and hard- hexaphosphate and nitrates of lanthanum and europium.Russ anodized coatings.Wear,2006,261 (10):1095 Electrochem,1998,34(6)510 [17]Arslan E,Totik Y,Demirci EE,et al.High temperature wear 8]Timoshenko A V,Magurova Y V.Application of oxide coatings to behavior of aluminum oxide layers produced by AC microarc metals in electrolyte solutions by microplasma methods.Rev oxidation.Surf Coat Technol,2009,204(6-7):829 Metal,2000,36(5):323 [18]Yerokhin A L,Shatrov A,Samsonov V,et al.Fatigue properties Xin S G,Jiang Z H,Wang F P,et al.Effect of current density on of keronite coatings on a magnesium alloy.Surf Coat Technol, Al alloy microplasma oxidation.J Mater Sci Technol,2001,17 2004,182(1):78 (6):657 [19]Rajasekaran B,Raman S GS,Joshi S V,et al.Effect of micro- [10]WeiTB,Yan FY,Tian J.Characterization and wear-and corro- are oxidised layer thickness on plain fatigue and fretting fatigue sion-esistance of microare oxidation ceramic coatings on alumi- behaviour of Al-Mg-Si alloy.Int J Fatigue,2008,30(7): num alloy.J Alloys Compd,2005,389(1-2):169 1259 [1]Liang J,Srinivasan P B,Blawert C,et al.Comparison of 0]Wen L,Wang Y M,Jin Y,et al.Design and characterization of electrochemical corrosion behaviour of Mgo and Zr02 coatings on SMAT-MAO composite coating and its influence on the fatigue AM50 magnesium alloy formed by plasma electrolytic oxidation. property of 2024 Al alloy.Rare Met Mater Eng,2014,43(7): Corros Sci,2009,51(10):2483 1582 [12]Srinivasan P B.Liang J,Blawert C,et al.Effect of current 21]Wen L,Wang Y M,Zhou Y,et al.Microstructure and corrosion density on the microstructure and corrosion behaviour of plasma resistance of modified 2024 Al alloy using surface mechanical electrolytic oxidation treated AM50 magnesium alloy.Appl Surf attrition treatment combined with microarc oxidation process Sci,2009,255(7):4212 Corros Sci,2011,53(1)473 [13]Liang J,Srinivasan P B,Blawert C,et al.Electrochemical 2]Sabatini C.Ceschini L,Martini C,et al.Improving sliding and corrosion behaviour of plasma electrolytic oxidation coatings on abrasive wear behaviour of cast A356 and wrought AA7075 AM50 magnesium alloy formed in silicate and phosphate based aluminium alloys by plasma electrolytic oxidation.Mater Des, electrolytes.Electrochim Acta,2009,54(14):3842 2010,31(2):816文 磊等: 铝合金表面纳米化--微弧氧化复合涂层摩擦行为 alloys. Ceram Int,1998,24( 1) : 1 [5] Gerasimov M V,Nikolaev V A,Shcherbakov A N. Microplasma oxidation of metals and alloys. Metallurgist,1994,38 ( 7--8 ) : 179 [6] Magurova Y V,Timoshenko A V. The effect of a cathodic compo￾nent on AC microplasma oxidation of aluminum-alloys. Prot Met, 1995,31( 4) : 377 [7] Rudnev V S,Yarovaya T P,Kon'shin V V. Microplasma oxidation of an aluminum alloy in aqueous solutions containing sodium cyclo￾hexaphosphate and nitrates of lanthanum and europium. Russ J Electrochem,1998,34( 6) : 510 [8] Timoshenko A V,Magurova Y V. Application of oxide coatings to metals in electrolyte solutions by microplasma methods. Rev Metal,2000,36( 5) : 323 [9] Xin S G,Jiang Z H,Wang F P,et al. Effect of current density on Al alloy microplasma oxidation. J Mater Sci Technol,2001,17 ( 6) : 657 [10] Wei T B,Yan F Y,Tian J. Characterization and wear-and corro￾sion-resistance of microarc oxidation ceramic coatings on alumi￾num alloy. J Alloys Compd,2005,389( 1--2) : 169 [11] Liang J,Srinivasan P B,Blawert C,et al. Comparison of electrochemical corrosion behaviour of MgO and ZrO2 coatings on AM50 magnesium alloy formed by plasma electrolytic oxidation. Corros Sci,2009,51( 10) : 2483 [12] Srinivasan P B,Liang J,Blawert C,et al. Effect of current density on the microstructure and corrosion behaviour of plasma electrolytic oxidation treated AM50 magnesium alloy. Appl Surf Sci,2009,255( 7) : 4212 [13] Liang J,Srinivasan P B,Blawert C,et al. Electrochemical corrosion behaviour of plasma electrolytic oxidation coatings on AM50 magnesium alloy formed in silicate and phosphate based electrolytes. Electrochim Acta,2009,54( 14) : 3842 [14] Baxi J,Kar P,Liang H,et al. Tribological characterization of microarc oxidized alumina coatings for biological applications. Vacuum,2008,83( 1) : 217 [15] Dearnley P A,Gummersbach J,Weiss H,et al. The sliding wear resistance and frictional characteristics of surface modified aluminium alloys under extreme pressure. Wear,1999,225--229 ( 1) : 127 [16] Rama Krishna L,Sudha Purnima A,Sundararajan G. A compar￾ative study of tribological behavior of microarc oxidation and hard￾anodized coatings. Wear,2006,261( 10) : 1095 [17] Arslan E,Totik Y,Demirci E E,et al. High temperature wear behavior of aluminum oxide layers produced by AC microarc oxidation. Surf Coat Technol,2009,204( 6--7) : 829 [18] Yerokhin A L,Shatrov A,Samsonov V,et al. Fatigue properties of keronite coatings on a magnesium alloy. Surf Coat Technol, 2004,182( 1) : 78 [19] Rajasekaran B,Raman S G S,Joshi S V,et al. Effect of micro￾arc oxidised layer thickness on plain fatigue and fretting fatigue behaviour of Al--Mg--Si alloy. Int J Fatigue,2008,30 ( 7 ) : 1259 [20] Wen L,Wang Y M,Jin Y,et al. Design and characterization of SMAT--MAO composite coating and its influence on the fatigue property of 2024 Al alloy. Rare Met Mater Eng,2014,43( 7) : 1582 [21] Wen L,Wang Y M,Zhou Y,et al. Microstructure and corrosion resistance of modified 2024 Al alloy using surface mechanical attrition treatment combined with microarc oxidation process. Corros Sci,2011,53( 1) 473 [22] Sabatini G,Ceschini L,Martini C,et al. Improving sliding and abrasive wear behaviour of cast A356 and wrought AA7075 aluminium alloys by plasma electrolytic oxidation. Mater Des, 2010,31( 2) : 816 ·1357·
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