研究了高铌TiAl金属间化合物的材料制备工艺.结果表明,感应凝壳熔炼时的合金收得率远远小于自耗熔炼时的合金收得率,因此在熔炼过程中损失主要来自于感应熔炼过程,而感应熔炼过程中合金的损失主要来自于凝壳大小及合金熔液挥发的多少;高铌TiAl合金的成分波动主要是由于凝壳大小波动造成的,感应熔炼完成后合金的Al含量取决于凝壳和合金溶液挥发对合金~含量的共同影响效果;高铌TiAl合金在熔炼过程中,Nb的含量是在逐渐增加的.经过1200℃,24小时均匀化退火可以消除原始铸态组织的枝晶偏析.
参考文献
[1] | Chen G L;ZHANG W;WANG Y.Ti-Al-Nb intermetallic alloys based on the ternary intermetallic compound[A].TMS,Warrendale PA,1993:319-324. |
[2] | CHEN Guo-liang;ZHANG Wei-jun;LIU Zi-cheng.Microstructure and properties of high-Nb containig TiAl-based alloys[A].San Diego,1999:371-380. |
[3] | ZHANG Wei·jun;LIU Zi-cheng;CHEN Guo liang .Dislocation structure in deformed Ti-45 % at. Al-10% at[J].Nb alloy at room temperature Phil Mag(A),1999,79(05):1073. |
[4] | ZHANG Wei·jun;Liu Zi-cheng;CHEN Guo liang.Dislocation structure in deformed Ti-45 % at[J].Of Nonferrous Metals Society of China,1999(zk):202. |
[5] | ZHANG Wei·jun;LIU Zi-cheng;CHEN Guo liang .Deformation mechanisms in a high-Nb containing γ-TiAl alloy at 900℃[J].Materials Science and Engineering,1999,271:416-423. |
[6] | J.D.H.Paul;F.Appel;R.Wagner .The compression behaviour of niobium alloyed γ-titanium aluminides[J].Acta materialia,1998(4):1075-1085. |
[7] | Li YG.;Loretto MH. .TENSILE PROPERTIES AND MICROSTRUCTURE OF TI-48AL-2NB AND TI-48AL-8NB[J].Physica Status Solidi. A, Applied Research,1995(1):271-280. |
[8] | Kim Y W;KIM Y W;WAGNER R;YAMAGUCHI M.Trends in the development of gamma TiAl alloys[M].TMS,Warrendale PA,Las Vegas,NV.Gamma Titanium Aluminides,1995:637-654. |
[9] | LIU C T;MAZIASZ P J;WRIGHT J L.Key Microstructure controlling the mechanical properties of TwoPhase TiAl Alloys with lamellar structures[A].,1997:83. |
[10] | Yamaguchi M;INUI H.TiAl compounds for structural applications[M].Darolia R. Liu C T Martin P L, et al. Structural Intermetallics, TMS,1993:127-142. |
[11] | Kim Y W .Microstructual evolution and mechanical properties of a forged gamma titanium aluminide alloy[J].冶金材料学报,1992,40:1121-1134. |
[12] | Kim Y W .Ordered intermetallic alloys , Part Ⅲ:Gamma Titanium Aluminides[J].JOM,7:30-39. |
[13] | Kim Y W.Effects of microstructue on the deformation and fracture of γ-TiAl Alloys[J].Materials Science and Engineering,1995:519-533. |
[14] | Kim Y W.DIMIDUK D. Designing gamma TiAl alloys: Fundamentals , Strategy and Production.NATHAL M V[M].DAROLIA R,LIU C T,et al.Structural Intermetallics.TMS,Warrendale PA,1997:531-544. |
[15] | Semiatin S L.Wrought processing of ingot-metallurgy Gamma Titanium Aluminide alloys[A].TMS,1995:509. |
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%