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概述了钛及钛合金粉末注射成型(MIM)的粉体制备、混炼、注射成形、脱脂、烧结及后处理等工艺环节的研究现状及其发展趋势,同时介绍了粉体制备的主要方法,用氢化脱氢法制备的几种粉体产品的成分特点,常用粘结剂的组分,几种在生物医药领域和工业领域中应用较多的钛及钛合金粉末注射成型粉体的特点.

参考文献

[1] 肖永清.诠释现代车用钛合金的应用及前景[J].铝加工,2008(01):41-43.
[2] 钟仁显,卢百平.金属粉末成形技术若干进展[J].材料导报,2008(03):40-43.
[3] A. J. Heidloff;J. R. Rieken;I. E. Anderson .Advanced Gas Atomization Processing for Ti and Ti Alloy Powder Manufacturing[J].JOM,2010(5):35-41.
[4] 张鹏省,毛小南,赵永庆,曾卫东,洪权,李辉.世界钛及钛合金产业现状及发展趋势[J].稀有金属快报,2007(10):1-6.
[5] 李圣刚,吕宏军.Ti-6Al-2Zr-1Mo-1V合金粉末冶金工艺[J].宇航材料工艺,2007(06):74-76.
[6] 路新,刘程程,曲选辉.钛及钛合金粉末注射成形技术研究进展[J].粉末冶金技术,2013(02):139-144,148.
[7] Obasi, G.C.;Ferri, O.M.;Ebel, T.;Bormann, R. .Influence of processing parameters on mechanical properties of Ti-6Al-4V alloy fabricated by MIM[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2010(16/17):3929-3935.
[8] Abdel-Hady M;Hinoshita K;Morinaga M .General approach to phase stability and elastic properties of β-type Tialloys using electronic parameters[J].Scripta Materialia,2006,55:477.
[9] Ramarolahy A;Castany P;Prima F et al.Microstructure and mechanical behavior of superelastic Ti-24Nb-0.5O and Ti-24Nb-0.5N biomedical alloys[J].J Mech Behav Biomed Mater,2012,9:83.
[10] Wei Q;Wang L;Fu Y et al.Influence of oxygen content on microstructure and mechanical properties of Ti-Nb-Ta-Zr alloy[J].Materials and Design,2011,32:2934.
[11] Bidaux J E;Closuit C;Rodriguez-Arbaizar M et al.Processing of a low modulus Ti-Nb biomaterial by metal injection molding (MIM)[J].Powder Injection Mould Int,2012,6:72.
[12] Zhao,D.;Chang,K.;Ebel,T.;Qian,M.;Willumeit,R.;Yan,M.;Pyczak,F..Microstructure and mechanical behavior of metal injection molded Ti-Nb binary alloys as biomedical material[J].Journal of the mechanical behavior of biomedical materials,2013:171-182.
[13] Nihan Tuncer;Martin Bram;Alexander Laptev;Tilmann Beck;Alexander Moser;Hans Peter Buchkremer .Study of metal injection molding of highly porous titanium by physical modeling and direct experiments[J].Journal of Materials Processing Technology,2014(7):1352-1360.
[14] 尚青亮,刘捷,方树铭,周林.金属钛粉的制备工艺[J].材料导报,2013(z1):97-100.
[15] Liu H;He P;Feng J C et al.Study on nonisothermal dehydrogenation of TiH2 powders[J].International Journal of Hydrogen Energy,2009,34:3018.
[16] 吴引江,梁永仁.钛粉末及其粉末冶金制品的发展现状[J].中国材料进展,2011(06):44-50.
[17] 宝鸡迈特钛业有限公司 .新型HDH法低氧高纯钛粉生产工艺[P].中国,101439409,2009-05-27.
[18] 黄瑜;汤慧萍;吴引江 等.动态氢化脱氢制备低成本钛及钛合金粉末[J].稀有金属材料与工程,2008,37(增刊3):826.
[19] 球形钛粉制备工艺现状[J].材料研究与应用,2014(02):78-82.
[20] Lu Weichang;Xu Yonglan .Recovery of waste titanium by electrolysis and basic principle analyzer of electrolysis process[J].RARE METALS,1980,3:31.
[21] 周洪强,陈志强.钛及钛合金粉末的制备现状[J].稀有金属快报,2005(12):11-16.
[22] 郭春芳,董云会,于先进.熔盐电脱氧法研究进展[J].材料研究与应用,2007(03):178-181.
[23] 翁启钢,周志辉,林洪波,袁继维,袁铁锤.熔盐电解法制备高纯钛粉[J].粉末冶金材料科学与工程,2010(01):70-73.
[24] 李健,翁启钢,吴浩波,贺跃辉,袁铁锤.熔盐电解制备细颗粒钛粉研究[J].矿冶工程,2012(01):107-110.
[25] 翁启刚,李瑞迪,袁铁锤,李健,贺跃辉.海绵钛熔盐电解制取高纯钛粉过程中离子价态、杂质及电结晶行为[J].中国有色金属学报(英文版),2014(02):553-560.
[26] 沈小小.国外钛粉生产技术[J].甘肃冶金,2012(05):11-15.
[27] Eric Nyberg;Megan Miller;Kevin Simmons;K. Scott Weil .Microstructure and mechanical properties of titanium components fabricated by a new powder injection molding technique[J].Materials science & engineering, C. Biomimetic and supramolecular systems,2005(3):336-342.
[28] Scott Weil K;Nyberg E;Simmons K .A new binder for powder injection molding titanium and other reactive metals[J].Journal of Materials Processing Technology,2006,176(1-3):205.
[29] K. Scott Weil;Eric A. Nyberg .Use of a Naphthalene-Based Binder in Injection Molding Net-Shape Titanium Components of Controlled Porosity[J].Materials transactions,2005(7):1525-1531.
[30] 王家惠,史庆南,吴承玲,席健.注射成形钛合金粉末流变特性[J].中国有色金属学报(英文版),2013(09):2605-2610.
[31] 李洋,张心强,朱君,徐瑶华,崔航,毛昌辉.T i-Mo吸气材料注射成形脱脂工艺的研究[J].功能材料,2014(02):2110-2113,2118.
[32] Sidambe A T;Figueroa I A;Hamilton H.Improved processing of titanium alloys by metal injection moulding[A].London:IOP Publishing,2011:012005.
[33] 王家惠;席健;史庆南.注射成形钛合金喂料装载量及流变特性研究[J].稀有金属材料与工程,2012(z2):827.
[34] Gülsoy H (O);Gülsoy N;Calisc(i) R .Particle morphology influence on mechanical and biocompatibility properties of injection molded Ti alloy powder[J].BIO-MEDICAL MATERIALS AND ENGINEERING,2014,24(05):1861.
[35] Sidambe A T;Figueroa I A;Hamilton H et al.Metal injection moulding of CP-Ti components for biomedical applications[J].Journal of Materials Processing Technology,2012,212:1591.
[36] 蔡一湘,陈强,丁燕.注射成形钛零件的研究[J].粉末冶金技术,2005(06):449-455.
[37] Ferri O M;Ebel T;Bormann R .Influence of surface quality and porosity on fatigue behaviour of Ti-6Al-4V components processed by MIM[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2010,527(07):1800.
[38] Holm M;Ebel T;Dahms M .Investigations on Ti-6Al-4V with gadolinium addition fabricated by metal injection moulding[J].Materials and Design,2013,51:943.
[39] Nor N H M;Norhamidi M;Ahmad S et al.Parameter optimization of injection molding Ti-6Al-4V powder and palm stearin binder system for highest green density using Taguchi method[J].Key Engineering Materials,2010,443:69.
[40] J.-E. Bidaux;C. Closuit;M. Rodriguez-Arbaizar .Metal injection moulding of low modulus Ti-Nb alloys for biomedical applications[J].Powder Metallurgy,2013(4):263-266.
[41] Kafkas F;Ebel T.Metallurgical and mechanical properties of Ti-24Nb-4Zr-8Sn alloy fabricated by metal injection molding[J].Journal of Alloys and Compounds
[42] 黄坤祥.金属粉末射出成形[M].中国台湾:粉末冶金协会,2013:65.
[43] 郭世柏,曲选辉,秦明礼,段柏华,何新波.钛合金粉末注射成形热脱脂工艺的研究[J].材料工程,2006(z1):321-325.
[44] Sidambe A T;Figueroa I A;Hamilton H.Sintering study of CP-Ti and Ti6V4Al metal injection moulding parts using Taguchi method[A].Copenhagen,2009
[45] Ismail M H;Goodall R;Davies H A et al.Porous NiTi alloy by metal injection moulding/sintering of elemental powders:Effect of sintering temperature[J].Materials Letters,2012,70:142.
[46] Limberg, W.;Ebel, T.;Pyczak, F.;Oehring, M.;Schimansky, F.P..Influence of the sintering atmosphere on the tensile properties of MIM-processed Ti 45Al 5Nb 0.2B 0.2C[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2012:323-329.
[47] 胡晓睿.国外航空航天领域钛合金制造技术研究应用新进展[J].国防制造技术,2013(05):4-7.
[48] 于振涛,余森,张明华,韩建业,麻西群.外科植入物用新型医用钛合金材料设计、开发与应用现状及进展[J].中国材料进展,2010(12):35-51.
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