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钛及钛合金具有高比强度、优良的耐蚀性、良好的高温性能,在现代航空航天、军事工业、民用工业中占据越来越重要的位置。但是,钛及钛合金自身硬度低、耐磨性能差的缺点限制了它的进一步应用。介绍了几种能改善表面性能的表面处理技术在钛及钛合金上的应用以及这些处理技术的特点和最新进展。包括:激光熔覆表面处理、CVD、PVD、热扩散法和表面纳米化,以及多组元和多层涂层技术。
Abstract:Titanium and titanium alloys possessed many advantages, including high strength and low density, good corrosion-resistance and good high temperature properties. Titanium and titanium alloys were widely used in the space flight and aeronautic industries, the martial industry and domestic industry. But the low hardness and wear-resistance confined the further application of these materials. It was possible to improve the surface properties of these materials by proper surface treatment. The application and newly progress of several surface treatment technologies were summarized, including laser remelting, CVD, PVD, thermo-diffusion and nanostructured surface. The multi-composition and multi-layer were also mentioned.
[1]R.R.Boyer.Anoverviewontheuseoftitaniumintheaerospace industry.MaterialsscienceandengineeringA.1996,213:103~114
[2]L.Lebedeva,G.N.Presnyakova.Adhesionwearmechanisms underdryfictionoftitaniumalloysinvacuum.Wear.1991,148:203~210
[3]梁成浩.钛的缝隙腐蚀行为研究.稀有金属材料与工程.1994,23:41~45
[4]胡树兵,李志章,梅志.物理气相沉积TiN复合涂层研究进展.材料科学与工程.2000,18:110~114
[5]刘江龙,邹至荣.高能束热处理.机械工业出版社.1997
[6]YoshiakiSuda,HiroharuKawasaki,TsuyoshiUeda.Preparationof highqualitynitrogendopedTiOthinfilmasaphotocatalystusinga pulsedlaserdepositionmethod.ThinSolidFilms.2004,453~454:162~166
[7]A.Mehlmann,S.F.Dimfeld,I.Minkoff.Laser Meltinjection ofB4Contitanium.SurfaceandCoatingsTechnology.1990,42:275~281
[8]武万良,黄文荣,杨德庄,孙荣禄.激光技术.2003,27(4):307~310
[9]J.SenthilSelvan,K.Subramanian,etc.LaserboronisingofTi6Al4Vasaresultoflaseralloyingwithpre placedBN.Materials ScienceandEngineering.1999,A260:178~187
[10]V.M.Weerasinghe,D.R.F.West,J.deDamborenea.Lasersurfacenitridingoftitaniumandatitaniumalloy.Journalof MaterialsProcessingTechnology1996,58:79~86
[11]陈瑶,王华明.MC型碳化物的稳态非稳态凝固转化机制.中国有色金属学报.2002,12(5):863~869
[12]A.I.P.NWOBU,R.D.RAWLINGSandD.R.F.WEST.Nitrideformationintitaniumbasedsubstratesduringlaser surfacemeltinginnitrogen argonatmospheres.Actamater.1999,47(2):631~643
[13]WeipingLiu,J.N.DuPont.Fabricationoffunctionallygraded TiC TicompositesbyLaserEngineeredNetShaping.Scripta Materialia.2003,48:1337~1342
[14]张松,张春华.Ti6Al4V表面激光熔覆原位自生TiC颗粒增强钛基复合材料及摩擦磨损性能.ACTAMETALLURGICA SINIICA.2001,37(3):315~320
[15]邵德春,李鑫,刘克勇.激光表面合金化提高钛合金高温抗氧化性能的研究.中国激光.1997,24:281~285
[16]陈维喜.刀具涂层技术的现状与展望.工具技术.2000,34:3~6
[17]刘仲阳,王培录,孙官清.用离子束辅助沉积(IBAD)工艺制备TiCxNy膜的研究.宇航材料工艺.1995,5:54~59
[18]谢致薇,王国庆,蒙继龙.TiN薄膜的多元合金强化.材料科学与工程.2000,4:135~140
[19]胡晓萍,虞晓江,赖倩茜,李戈扬.TiSiN纳米复合薄膜的超硬性.电子显微学报.2002,21(5):631~632
[20]李鹏兴.CVD与PVD硬涂层研究的进展.上海金属.1994,16(2):55~62
[21]俞春福,徐久军,王亮.TiN薄膜腐蚀过程的电化学原子力显微镜原位研究.材料保护.2001,34:14~15
[22]李军,吴化,郭成言.钢表面化学气相沉积TiC薄膜的高温腐蚀动力学分析.吉林工学院学报.1994,15(1):25~29
[23]李争显,于振涛,张利红.钛及钛合金表面沉积TiCN膜层的工艺.中国有色金属学报.1998,8(2):263~265
[24]胡树兵,李志豪,梅志.物理气相沉积TiN复合涂层研究进展.材料科学与工程.2000,18(2):110~114
[25]卢燕平,于福州.渗镀.机械工业出版社
[26]胡赓祥,蔡材料科学基础.上海交通大学出版社
[27]LuK,JLu.Surfacenanocrystallizationofironinducedby ultrasonicshotpeening.NanostructuredMaterials.MaterSci Technol.1999,15:193
[28]N.R.Tao,Z.B.Wang,J.Lu,K.Lu,et.al.An investigationofsurfacenanocrystallizationmechanisminFeinduced bysurfacemechanicalattritiontreatment.ActaMaterialia,2002,50:4603~4616
[29]WangJ,WolfD,PhillpotSR.Computersimulationofthe structureandthermo elasticpropertiesofamodelnanocrystalline material.PhilMagA.1996,73:517~555
[30]HoritaZ,SmithDJ,FurukawaM.Evolutionofgrainboundary structureinsubmicrometer grainedAl Mgalloy.Materials Characterization.1996,37:285~294
[31]XiaoweiWang,JingyangWang,PingWu,HongwangZhang.Theinvestigationofinternalfrictionandelasticmodulusinsurface nanostructuredmaterials.MaterialsScienceandEngineeringA.2004,370:158~162
[32]W.P.Tong,N.R.Tao,Z.B.Wang,J.Lu,K.Lu.Nitridingironatlowertemperature.Science.2003,299:686~688
[33]张淑兰,陈怀宁,林泉洪,刘刚.工业纯钛的表面纳米化及其机制.有色金属.2003,55(4):5~8
[34]温爱玲,陈春焕.高能喷丸表面纳米化对工业纯钛组织性能的影响.表面技术.2003,32(3):16~18
[35]O.Knotek,F.Loeffler,G.Kraemer.Processandadvantageof multicomponentandmultilayerPVDcoatings.Surf.CoatTechnol.1993,59:14~20
[36]W.D.Munz,et.Al.J.VacSciTech.1986,A4:2717
[37]Joshi,H.S.Hu.Oxidationbehavioroftitanium aluminum nitrides.Surf.CoatTech1995,76~77:499~507
[38]K.Matsuura,M.Kudoh.Surfacemodificationoftitaniumbya diffusioncarbonitrdingmethod.Actamaterialia.2002,50:2693~2700
[39]Mollart,TP.Haupt,J.TribologicalbehaviorofhomogeneousTi B N,Ti B N CandTiN h BN TiB2multilayercoatings.Surf.Coat Technol.1996,86~87:231~236
[40]Movchan,B.A.Demchishin.Structure propertyrelationshipsin microlaminateTiC TiBcondensates.ThinSolidFilms.1982,97:215~219
[41]Klinger,L.M.Chu,X.Grain boundaryslitpropagationinan electricfield.JournalofAppliedPhysics.1996,80:6670~6675
基本信息:
DOI:
中图分类号:TG174.4
引用信息:
[1]何利舰,张小农.钛及钛合金的表面处理技术新进展[J].上海金属,2005(03):39-45.
基金信息: