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A perspective of microplasma oxidation (MPO) and vapor deposition coatings in surface engineering of aluminum alloys
作者姓名:AWAD  Samir  Hamid
作者单位:College of
基金项目:theDoctorateScholarshipFoundationofChineseScholarshipCouncil(CSCNo.2001368020)
摘    要:IntroductionInrecentyears,improvingthewearlifeofAl-basedalloyscomponentsinheavysurfacecontactconditionsbytheapplicationofmicroplasmaoxidation(MPO)coatingshasprovensuccessfulundertechnicalandeconomicconsideration.MPOtechnologyhasrecentlybeentakenasarapid,novelandeffectivemeanstoprovidethickceramiccoatingswithexcellenthardnessandload-bearingcapacityforlightalloymaterials,particularlyaluminumalloys1].TheMPO,alsocalledplasmaelectrolyticoxidation(PEO),isanadvancedtechnologyforroutineanodizing…

关 键 词:铝合金  表面处理  微等粒子体氧化  MPO  蒸气淀积涂布  双层涂层

A perspective of microplasma oxidation (MPO) and vapor deposition coatings in surface engineering of aluminum alloys
AWAD Samir Hamid.A perspective of microplasma oxidation (MPO) and vapor deposition coatings in surface engineering of aluminum alloys[J].Journal of Chongqing University,2004,3(2):4-11.
Authors:AWAD Samir Hami  QIAN Han-cheng
Abstract:Over the past years, great achievements have been made in the development of coating technologies for surface improvement of aluminum alloys. Despite these achievements, the role in the market strongly depends on the ability of surface coating technology under technical and economic considerations to meet the increased demands for heavy tribological applications of aluminum alloys. Microplasma oxidation (MPO) technology has recently been studied as a novel and effective means to provide thick and hard ceramic coating with improved properties such as excellent load-bearing and wear resistance properties on aluminum alloys. The present work covers the evaluation of the performances of current single and duplex coatings combining MPO, physical vapor deposition (PVD), and plasma assisted chemical vapor deposition (PACVD) coatings on aluminum alloys. It suggests that the MPO coating is a promising candidate for design engineers to apply aluminum alloys to heavy load-bearing applications. The prospective future for the research on MPO coatings is introduced as well.
Keywords:aluminum alloys  microplasma oxidation (MPO)  duplex coating  physical vapor deposition (PVD)  plasma assisted chemical vapor deposition (PACVD)  microplasma oxidation  perspective  aluminum alloys  surface engineering  duplex coatings  prospective  future  research  introduced  promising  candidate  design  apply  chemical vapor deposition  physical  present  work  evaluation  performances  current
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