[1]
A.P. Tsai, A. Inoue and T. Matsumoto: Mater. Trans. JIM Vol. 30 (1989), p.666.
Google Scholar
[2]
T.J. Sato, H. Takakura and A.P. Tsai: J. Appl. Phys. Vol. 37 (1998), p. L663.
Google Scholar
[3]
T. Klein and O.G. Simko: Appl. Phys. Lett. Vol. 64 (1994), p.431.
Google Scholar
[4]
A.P. Tsai: MRS Bulletin Vol. 22 (1997), p.44.
Google Scholar
[5]
E. Yu. Ivanov, I.G. Konstanchuk, B.D. Bokhonov and V.V. Boldyrev: Reactivity of Solids Vol 7 (1989), p.167.
Google Scholar
[6]
N. Asahi, T. Maki, S. Matsumoto and T. Sawai: Mater. Sci. Eng. A Vol. 181/182 (1994), p.841.
Google Scholar
[7]
N. Asahi, S. Noguchi and K. Matsumura: Mater. Sci. Eng. A Vol. 181/182 (1994), p.819.
Google Scholar
[8]
N. Asahi: Mater Sci Eng A Vol. 226-228 (1997), p.67.
Google Scholar
[9]
J. Eckert, L. Schultz and K. Urban: Mater. Sci. Eng. A Vol. 133 (1991), p.393.
Google Scholar
[10]
J. Eckert, L. Schultz and K. Urban: Acta Metal. Mater. Vol. 39 (1991), p.1497.
Google Scholar
[11]
K. Urban, M. Feuerbacher and M. Wollgarten: MRS Bulletin Vol. 22 (1997), p.65.
Google Scholar
[12]
A.P. Tsai, Y. Yokoyama and T. Masumoto: Jpn. J. Appl. Phys. Vol. 31. (1992), p.2530.
Google Scholar
[13]
C.J. Jenks and P.A. Thiel: MRS Bulletin. Vol. 22 (1997), p.55.
Google Scholar
[14]
F. Schurak, J. Eckert and L. Schultz: Nanostr. Mater. Vol. 12 (1999), p.107.
Google Scholar
[15]
A. Inoue, H.M. Kimura and K. Kita: Development of high-specific strength Al-based alloys by utilizing nanogranular quasicrystalline phase. (In: New Horizons in Quasicrystals, World Scientific, Singapore, 1997), p.256.
Google Scholar
[16]
A.P. Tsai, K. Aoki, A. Inoue and T. Masumoto: J. Mater. Res. Vol. 8. (1993), p.5.
Google Scholar
[17]
S.M. Lee, J.H. Jung, E. Fleury, W.T. Kim and D.H. Kim: Mater. Sci. Eng. A Vol. 294-296 (2000), p.99.
Google Scholar
[18]
Y.H. Qi, Z.P. Zhang, Z.K. Hei and C. Dong: J. All. Comp. Vol. 285 (1999), p.221.
Google Scholar
[19]
A.I. Salimon, A.M. Korsunsky, E.V. Shelekhov, T.A. Sviridova, S.D. Kaloshkin, V.V. Tcherdyntsev and Yu.V. Baldokhin: Acta Mater. Vol. 49 (2001), p.1821.
DOI: 10.1016/s1359-6454(01)00077-5
Google Scholar
[20]
V.V. Tcherdyntsev, S.D. Kaloshkin, A.I. Salimon, I.A. Tomilin and A.M. Korsunsky: J. NonCryst. Solids Vol. 312-314 (2002), p.522.
DOI: 10.1016/s0022-3093(02)01745-3
Google Scholar
[22]
S.D. Kaloshkin, V.V. Tcherdyntsev, A.I. Salimon, I.A. Tomilin, T. Spataru and G. Principi: Hyp. Inter. Vol. 139/140 (2002), p.399.
DOI: 10.1023/a:1021241905130
Google Scholar
[22]
A.I. Salimon, A.M. Korsunsky, S.D. Kaloshkin, V.V. Tcherdyntsev, E.V. Shelekhov and T.A. Sviridova: Mater. Sci. Forum Vol. 360-362 (2001), p.373.
DOI: 10.4028/www.scientific.net/msf.360-362.137
Google Scholar
[23]
V.V. Tcherdyntsev, S.D. Kaloshkin, A.I. Salimon, E.A. Leonova, I.A. Tomilin, J. Eckert, F. Schurack, V.D. Rogozin, S.P. Pisarev and Yu.P. Trykov: Mater. Manufact. Proc. Vol. 17 (2002), p.825.
DOI: 10.1081/amp-120016060
Google Scholar
[24]
C.L. Chien and M. Lu: Phys. Rev. B. Vol. 45 (1992), p.12793.
Google Scholar
[25]
R.A. Dunlap and D.W. Lawther: Mater. Sci. Eng. R. Vol. 10 (1993), p.141.
Google Scholar
[26]
Z.M. Stadnik and G. Stronik: Phys. Rev. B. Vol. 38 (1988), p.10447.
Google Scholar
[27]
R.A. Brand, J. Pelloth, F. Hippert and Y. Calvayrac: J. Phys: Cond. Matter. Vol. 11 (1999), p.7523.
Google Scholar