Ti-15-3(Ti-15V-3Cr-3Sn-3Al)合金是一种在航空航天工业领域具有广泛应用前景的亚稳定β型钛合金.本文介绍了Ti-15-3合金的性能特点和应用,总结和评价了固溶态、热轧态和冷轧态Ti-15-3合金超塑性研究的进展情况.针对已取得的成果和研究中存在的问题,对Ti-15-3合金超塑性的进一步研究提出了一些看法并作了展望.
参考文献
[1] | Bania P J;LENNING G A;HALL J A.Development and properties of Ti-15V-3Al-3Sn-3Cr:Beta Titanium Alloys in the 1980's[M].New York:American Institute of Metallurgical and Petroleum Engineer;Inc,1984:209. |
[2] | 杨丽芳.航空用的一种新材料Ti-15-3合金的发展与性能[J].稀有金属材料与工程,1987(05):12-16. |
[3] | 王庆如.Ti-15-3合金的性能数据[J].材料工程,1996(11):17. |
[4] | 陈玉文 .β钛合金及其在宇航工业中的应用[J].稀有金属,1996,20(04):297-300. |
[5] | Boyer R R .An overview on the use of titanium in the aerospace industry[J].Materials Science and Engineering,1996,A213:103-114. |
[6] | Boyer R R;EYLOND.Application of beta titanium alloys in Airframes[A].Warrendate.PA:TMS,1993:335-346. |
[7] | Boyer R R;VASSEL A.Aerospace applications of beta titanium-keynote presentation[A].Paris France:Société Francaise de Métallurgie et de Matériaux,1994:253. |
[8] | Bania P J .Beta titanium alloys and their role in the titanium industry[J].Journal of The Minerals,Metals & Materials Society,1994,46(07):16-19. |
[9] | Seagle S R .The state of the USA titanium industry in 1995[J].Materials Science and Engineering,1996,A213:1-7. |
[10] | 王庆如.Ti-15-3合金的超塑性及应用[J].材料工程,1998(02):9. |
[11] | Shan Debin;Lu Yan;Li Ping .Experimental study on process of cold-power spinning of Ti-15-3 alloy[J].Journal of Materials Processing Technology,2001(3):380-383. |
[12] | MORGAN G C;HAMMOND C.The role of dislocation climb and diffusion creep mechanisms in the superplastic deformation properties of metastable βtitanium alloys[A].Munich,FRG:Deutsche Gesellschaft fur Metallkunde E V,1985:717-725. |
[13] | HAMILTON C H.Superplasticity in titanium alloys[A].Metals Park,Ohio:American Society for Metals,1985:13-22. |
[14] | 史正敏,王韦琪.Ti-15-3板材供应状态与超塑成形性能[J].金属学报,2002(z1):376-377. |
[15] | 王高潮,刘振华,熊洪淼.Ti-15-3合金超塑性拉伸变形过程的计算机优化控制[J].江西科学,1997(04):212. |
[16] | 王高潮.Ti-15-3钛合金超塑性最佳变形模式的研究[J].航空材料学报,1998(03):22. |
[17] | 潘雅琴;杨昭苏.Ti-15-3合金的超塑性[A].上海:上海钢铁研究所,1990:513-516. |
[18] | 侯冠群,李晓华,韩秀全.TB5钛合金构件的超塑成形和点焊[J].金属学报,2002(z1):373-375. |
[19] | 谭树松.有色金属材料学[M].北京:冶金工业出版社,1993:113. |
[20] | 沈桂琴;王世洪;罗国珍 等.Ti-15V-3Cr-3Sn-Al合金的等温转变研究[J].金属热处理学报,1996,17(01):10-15. |
[21] | 孙新军 .钛合金片层组织的等轴化规律及超细晶钛合金超塑性的研究[D].清华大学,1999. |
[22] | Sastry S M L;PAO P S;SANKARAN K K.High temperature of Ti-6Al-4V[A].Kyoto,Japan:Metallurgical Society of AIME,1980:873-886. |
[23] | Griffiths P;HAMMOND G.Superplasticity in large grained materials[J].Acta Materialia,1972(20):935-945. |
[24] | 孙锋,林栋樑.大晶粒TiAl基合金的超塑性变形行为[J].上海交通大学学报,2001(03):380-384. |
[25] | 马龙翔;崔建忠;纪文海.金属的超塑性和超塑性成形[A].北京:中国科学技术出版社,1993:205-209. |
[26] | 周军堂 .TMC复合-扩散连接-超塑成形组合加工研究[D].北京:航空工业部第六二五研究所,1998. |
[27] | 陈玉文.一种新型的抗氧化超高强度钛合金[J].材料工程,1994(06):19. |
[28] | G. AVRAMOVIC-CINGARA;K. T. AUST;D. D. PEROVIC .SUPERPLASTICITY AND GRAIN BOUNDARY CHARACTER DISTRIBUTION IN OVERAGED Al-Li-Cu-Mg-Zr ALLOY[J].Canadian Metallurgical Quarterly,1995(3):265-273. |
[29] | Lloyd;GEOFFREY E;FARMER et al.Misorientation analysis and the formation and orientation of subgrain and grain boundaries[J].Tectonophysics,1997,279(1/4):55-78. |
[30] | Xin Wu;Yi Liu;Hongqi Hao .High Strain Rate Superplasticity and Microstructure Study of a Magnesium Alloy[J].Materials Science Forum,2001(0):363-370. |
[31] | Hsiao I C;HUANG J C .Characterization of grain boundary properties in superplastic Al based alloy using EBSD[J].Materials Science Forum,2001,357-359:381-386. |
[32] | 刘庆 .Al-Li-Cu-Mg-Zr合金超塑交形机理研究[D].哈尔滨工业大学,1991. |
[33] | 万菊林 .非理想组织材料超塑性变形的研究[D].清华大学,1995. |
[34] | Yoshihara M;SUZUKI T;TANAKA R .Improvement of oxidation resistance for TiAl by surface treatment under a low partial pressure oxygen atmosphere and aluminum diffusion coating[J].ISIJ International,1991,31(10):1201-1206. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%