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用气体雾化制粉技术成功制备了Ti-46Al-2Cr-2Nb-0.2B-0.1W球形预合金粉末,粉末中的氧和氢的质量分数分别为0.059%和0.001%,粉末的粒度呈正态分布,粒度主要分布在50~190 μm.采用热等静压技术将该预合金粉末制备成了致密的TiAl系金属间化合物,组织比较细小、均匀,热处理后材料的延伸率达到了2.5%.

参考文献

[1] Equo K;Yoshinao M .Phase stability of intermetallics in the Ti-Al system and their properties for strctural materials[J].Journal of Light Metals,1991,44(11):595-600.
[2] Keizo H .High temperature deformation behavior of TiAl[J].Journal of Light Metals,1994,44(11):609-613.
[3] Yolton C F;Kim Y W Ulrike.Powder metallurgy processing of gamma titanium aluminide[A].,2003:233-240.
[4] Gerling R;Clemens H;Schimansky F P.PM-Process of an advanced γ-TiAl alloy:technologies,microstructures and mechanical properties[A].,2001:139-148.
[5] Habel U;Yolton C F;Moll J H.Gas atomized γ-titanium aluminide based alloys-processing,microstructure and mechanical properties[A].,1999:301-306.
[6] Venskutonis A;Riβbacher K .Gamma met-100 titanium aluminide sheet-production and component fabrication[OL].http://esapub.esrin.esa.it/pff/pffv10n2/pff35_full.pdf
[7] 刘咏,黄伯云,周科朝,贺跃辉.粉末冶金TiAl基合金显微组织及力学性能的研究[J].稀有金属材料与工程,2000(04):251-254.
[8] 张永刚.金属间化合物结构材料[M].北京:国防工业出版社,2001:759.
[9] Young-Won Kim .Gamma Titanium Aluminides: Their Status and Future[J].JOM,1995(7):39-41.
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