用铜模铸造法制备出直径为2.5 mm的多组元Ti53Cu15Ni18.5A17M3Si3B0.5(M=Zr,Hf, Sc)金属玻璃棒材.DSC和压缩应力应变测试结果表明:合金具有较高的热稳定性和优异的力学性能.其中Ti53Cu15Ni18.5A17Zr3Si3B0.5合金的Tg,Tx和△Tx分别为703,765和62 K;Ti53Cu15Ni18.5A17Sc3Si3B0.5合金压缩断裂强度高达2325 MPa,压缩变形量达1.6%,Young's模量118 GPa.
参考文献
[1] | Perepezko J H, Smith J S. J Non Cryst Solids, 1981; 44:65 |
[2] | Inoue A, Othera K L, Masumoto T. J Appl Phys, 1988;27:L2248 |
[3] | Inoue A, Zhang T. Mater Trans, 1989; 30:965 |
[4] | Inoue A, Zhang T, Masumoto T. Mater Trans, 1990; 31:177 |
[5] | Inoue A, Nishiyama N, Matsuda T. Mater Trans, 1996;37:181 |
[6] | Zhang T, Inoue A. Mater Trans, 1998; 39:1001 |
[7] | Inoue A, Zhang T. Mater Trans, 1997; 38:577 |
[8] | Itoi T, Inoue A. Mater Trans, JIM, 1999; 41:1256 |
[9] | Chiriac H, Lupu N. J Magn Magn Mater, 1999; 196-197:235 |
[10] | Javazaki H, Kaih U, Izemiya K. Mater Sci Eng, 2001;A318:77 |
[11] | Kim Y C, Kim W T, Kim D H. Mater Trans, 2002; 43:1243 |
[12] | Zhang T, Inoue A. Mater Trans, 1998; 39:1001 |
[13] | Inoue A. Mater Sci Forum, 1995; 179/191:691 |
[14] | Egami T. J Non Cryst Solids, 1996; 205-207:575 |
[15] | Nagel S R, Tauc J. Phys Rev Lett, 1975; 35:380 |
[16] | Zhang T, Inoue A, Masumoto T. Mater Sci Eng, 1994;A181/A182:1423 |
[17] | Hahn T. International Tables for Crystallography, Volume A, Kluwer Acadmic Publishers, Boston, 1995:681 |
[18] | de Boer F R, Boom R, Mattens W C M, Miedema A R,Niesterdam A K. Cohesion in Metals, North-Holland: Elsevier Science Pubilishers, 1989: 1 |
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