欢迎登录材料期刊网

材料期刊网

高级检索

Brazing of Ti3Al alloys with the filler metal Cu-P was carried out at 1173~1273 K for 60~1800 s. When products are brazed, the optimum brazing parameters are as follows: brazing temperature is 1215~1225 K; brazing time is 250~300 s. Four kinds of reaction products were observed during the brazing of Ti3Al alloys with the filler metal Cu-P, i.e., Ti3Al phase with a small quantity of Cu (Ti3Al(Cu)) formed close to the Ti3Al alloy; the TiCu intermetallic compounds layer and the Cu3P intermetallic compounds layer formed between Ti3Al(Cu) and the filler metal, and a Cu-base solid solution formed with the dispersed Cu3P in the middle of the joint. The interfacial structure of brazed Ti3Al alloys joints with the filler metal Cu-P is Ti3Al/Ti3Al(Cu)/TiCu/Cu3P/Cu solid solution (Cu3P)/Cu3P/TiCu/Ti3Al(Cu)/Ti3Al, and this structure will not change with brazing time once it forms. The thickness of TiCu+Cu3P intermetallic compounds increases with brazing time according to a parabolic law. The activation energy Q and the growth velocity K0 of reaction layer TiCu+Cu3P in the brazed joints of Ti3Al alloys with the filler metal Cu-P are 286 k J/mol and 0.0821 m2/s, respectively, and growth formula was y2=0.0821exp(-34421.59/T)t.Careful control of the growth for the reaction layer TiCu+Cu3P can influence the final joint strength. The formation of the intermetallic compounds TiCu+Cu3P results in embrittlement of the joint and poor joint properties. The Cu-P filler metal is not fit for obtaining a high-quality joint of Ti3Al brazed.

参考文献

[1] J C Chesnult;J C Williams.[J].Metallic Materials,1990(06):509.
[2] J H Westbrook;R L Fleischer.Intermetallics Compounds, Principles, Practice[M].Chichester John Wiley Sons,1995:91.
[3] T Noda .[J].INTERMETALLICS,1998,12(06):709.
[4] Narita Toshio;Izumi Takeshi;Yatagai Mamoru;Yoshioka Takayuki .[J].Intermetallics,2000,8(04):371.
[5] J B Yang .[J].Metal Powder Report,1997,52(12):42.
[6] E. Medda;F. Delogu;G. Cao .Combination of mechanochemical activation and self-propagating behaviour for the synthesis of Ti aluminides[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2003(1/2):23-28.
[7] Zengyang ZHONG;Dunxu ZOU;Shiqiong LI .[J].Acta Metallurgica Sinica,1995,8(31):531.
[8] S A David;J A Horton;G M Goodwin;D H Phillips R W Reed.[J].Welding Research Supplement,1990(04):133.
[9] P L Threadgill;W A Baeslack Ⅲ.in Proc Int Symp on Intermetallic Compounds[M].Sendai Japan,1991:17-20,1021.
[10] W A Baeslack Ⅲ.Proceedings Symposium Weldability of Materials[C].ASM Fall Meeting Detroit Sept,1990:247.
[11] W A Baeslack Ⅲ;T J Mascorella;T J Kelly .[J].Welding Research Supplement,1989,483
[12] W A Baeslack Ⅲ;M J Cielack;T J Headley .[J].Scripta Materialia,1988,22(07):1155.
[13] Peng HE;Jiuhai ZHANG;Jicai FENG;Yiyu QIAN .[J].Acta Metallurgica Sinica(English Letters),2000,13:162.
[14] 何鹏,冯吉才,张炳刚,钱乙余.Interface microstructure and formation mechanism of diffusion-bonded joints of TiAl to steel 40Cr[J].中国有色金属学会会刊(英文版),2002(06):1069-1071.
[15] N Ridley;D W Livesey;M T Salehi.Proc Int Conf on High Temperature Intermetallics[M].London,1991:198.
[16] S.J. Lee;S.K. Wu .Infrared joining strength and interfacial microstructures of Ti-48Al-2Nb-2Cr intermetallics using Ti-15Cu-15Ni foil[J].Intermetallics,1999(1):11-21.
[17] R K Shiue;S K Wu;S Y Chen .[J].INTERMETALLICS,2003,661
[18] R K Shiue;S K Wu;S Y Chen .[J].Acta Materialia,2003,1991
[19] H Y Chan;D W Liaw;R K Shiue .[J].International Journal of Refractory Metals and Hard Materials,2004,27
[20] Huiqiang WU;Jicai FENG;Peng HE;Changliang SHI .[J].宇航材料工艺,2004,34(05):10.
[21] P. He;J.C. Feng;H. Zhou .Microstructure and strength of brazed joints of Ti_3Al-base alloy with NiCrSiB[J].Materials Characterization,2004(4/5):309-318.
[22] P. He;J.C. Feng;H. Zhou .Microstructure and strength of brazed joints of Ti_3Al-base alloy with different filler metals[J].Materials Characterization,2005(4/5):338-346.
[23] P. He;J.C. Feng;H. Zhou .Microstructure and strength of brazed joints of Ti_3Al-base alloy with TiZrNiCu filler metal[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2005(1/2):81-86.
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%