机械合金化及热处理过程中Ti50C50二元系统的结构演变
汤文明,李猛,郑治祥,吴玉程,唐红军
摘要(Abstract):
使用X射线衍射仪(XRD)、透射电子显微镜(TEM)研究了Ti50C50元素混合粉在机械合金化过程中的结构演变以及热处理对粉体结构的影响,讨论了TiC机械合金化合成机制。研究结果表明,机械合金化合成TiC遵循逐渐扩散反应机制,反应首先形成纳米晶Ti(C)粉体,球磨10h析出TiC,随着球磨过程的进行,TiC的量逐渐增多,晶格常数增加,晶粒尺寸降低。球磨80 h后,粉体主要由纳米晶TiC构成,晶粒尺寸6nm,但仍有少量的Ti(C)剩余。热处理促进残余的Ti(C)转变成TiC,同时导致TiC粉体晶粒生长,晶粒尺寸增大,晶格畸变程度降低,有序度提高。
关键词(KeyWords): 机械合金化;TiC;反应机制;结构演变;热处理
基金项目(Foundation): 合肥工业大学科技创新基金(103-037016)
作者(Author): 汤文明,李猛,郑治祥,吴玉程,唐红军
参考文献(References):
- 1 Murty B S,Ranganathan S.Novel materials synthesis by mechanical alloying/milling[J].Inter Mater Rev,1998,43:101~141.
- 2 Surganarayana C.Mechanical alloying and milling[J].Prog Mater Sci,2001,46:1~184.
- 3 Eskandarany M S,Konno T J,Sumiyama K,et al.Formation of TiC and SiC refractory compounds by mechanical alloying[J].J Japan Soc Powder&PowderMetall,1996,43:579~583.
- 4 Eskandarany M S.Synthesis of nanocrystalline titanium carbide alloy powders by mechanical solid station reaction[J].Metall Mater Trans,1996,27A:2374~2382.
- 5汤文明,郑治祥,吴玉程,等.机械合金化过程中Fe75Al25二元系统的结构演变[J].材料热处理学报,2004,25(3):18~21.TANG Wen-ming,ZHENG Zhi-xiang,WU Yu-cheng,et al.Structural evolution of Fe75Al25binary system during mechanical alloying[J].Trans Mater andHeat Treat,2004,25(3):18~21.
- 6杨君友,张同俊,崔昆,等.Ti(50)C(50)粉末的机械合金化研究[J].科学通报,1995,11(4):217~220.YANG Jun-you,ZHANG Tong-jun,CUI kun,et al.Investigation of mechanical alloying of Ti50C50[J].Chinese Sci Bull,1995,11(4):217~220.
- 7王尔德,刘京雷,刘祖岩.机械合金化诱导固溶扩展机制研究进展[J].粉末冶金技术,2002,20(2):109~112.WANG Er-de,LIU Jing-lei,LIU Zu-yan.The research progression on the kinetics of extension solid solubility induced by mechanical alloying[J].PowderMetallurgy Technology,2002,20(2):109~112.
- 8 Huang B,Perez R L,Lavernia E J.Grain growth of nanocrystalline Fe-Al alloys produced by cryomilling in liquid argon and nitrogen[J].Mater Sci Eng,1998,225A:124~132.
- 9 Suryararayana C.Mechanical alloying and milling[J].Prog Mater Sci,2001,46:1~184.
- 10齐民,朱敏,杨大智.Fe-Cu超饱和固溶体的机械合金化合成[J].材料科学进展,1993,7(1):31~33QI Min,ZHU Min,YANG Da-zhi.Fe-Cu super-saturated solid solution synthesized by mechanical alloying[J].Chinese Prog Mater Sci,1993,7(1):31~33.
- 11 Ye L L,Liu Z G,Quan M X,et al.Different reaction mechanisms during mechanical alloying Ti50C50and Ti33B67[J].J Appl Phys,1996,80:1910~1912.
- 12 Takacs L.Self-sustaining reaction induced by ball milling[J].Prog Mater Sci,2002,47:355~414.
- 13 Calos N J,Forrester J S,Schafer G B.The mechanisms of combustion and continuous reactions during mechanical alloying[J].J Solid State Chem,2001,158:268~278.
- 14申文.无机化学丛书,第八卷[M].北京:科学出版社,1998:52.
- 15汤文明,郑治祥,吴玉程,等.机械合金化及热处理过程中Ti33B67二元系统的结构演变[J].材料热处理学报,2005,26(2):51~54.TANG Wen-ming,ZHENG Zhi-xiang,WU Yu-cheng,et al.Structural evolution of the Ti33B67binary system during mechanical alloying and subsequentheat treatment[J].Trans Mater Heat Treatment,2005,26(2):51~54.
- 16 Teresiak A,Mattern N,Kubsch H,et al.Structure and stability of nanocrystalline TiC-powders obtained by reactive high energy milling[J].NanostructedMater,1994,4:775~786.
文章评论(Comment):
|
||||||||||||||||||
|
||||||||||||||||||