[1]
L. B. Magalas, Acta Metall. Sin., 39, 1145 (2003).
Google Scholar
[2]
T. O. Ogurtani, M. R. Gungor, E. E. Oren, Sol. St. Phen., 89, 141 (2003).
Google Scholar
[3]
G. Schoeck, Acta Metall., 11, 617 (1963).
Google Scholar
[4]
T. S. Kê, Scripta Metall., 16, 225 (1982).
Google Scholar
[5]
G. Schoeck, Scripta Metall., 16, 233 (1982).
Google Scholar
[6]
A. Seeger, phys. stat. sol. (a), 55, 457 (1979).
Google Scholar
[7]
L. B. Magalas, J. F. Dufresne, P. Moser, J. Physique, 42, 127 (1981).
Google Scholar
[8]
A. Seeger, J. Physique, 42, 201 (1981).
Google Scholar
[9]
A. Seeger, Scripta Metall., 10, 241 (1982).
Google Scholar
[10]
I. G. Ritchie, Scripta Metall., 16, 249 (1982).
Google Scholar
[11]
A. Seeger, M. Weller, J. Diehl, Z. I. Pan, J. X. Zhang, T. S. Kê, Z. Metallkd., 73, 1 (1982).
Google Scholar
[12]
L. B. Magalas, P. Moser, I. G. Ritchie, J. Physique, 44, 645 (1983).
Google Scholar
[13]
M. Weller, J. Physique, 44, 63 (1983).
Google Scholar
[14]
L. B. Magalas, In: Internal Friction in Solids, S. Gorczyca, L. B. Magalas (eds), Wyd. AGH, Krakow, 89 (1984).
Google Scholar
[15]
T. O. Ogurtani, A. Seeger, J. Appl. Phys., 57, 193 (1985).
Google Scholar
[16]
T. O. Ogurtani, A. Seeger, J. Appl. Phys., 62, 852 (1987).
Google Scholar
[17]
G. Schoeck, Scripta Metall., 22, 389 (1988).
Google Scholar
[18]
L. Sun, Y. Wang, M. Gu, Proc. the 9th Int. Conf. on Internal Friction and Ultrasonic Attenuation in Solids, ed. by T. S. Kê, Beijing: International Academic Publishers, Beijing, p.61 (1990).
Google Scholar
[19]
L. B. Magalas, Introduction to Mechanical Spectroscopy, Ecole Polytechnique Fédérale de Lausanne, Switzerland, 140 (1990).
Google Scholar
[20]
K. L. Ngai, Y. -N. Wang, L. B. Magalas, J. Alloy Compd., 211, 327 (1994).
Google Scholar
[21]
Y. Wang, M. Gu, L. Sun, Phys. Rev. B, 50, 3525 (1994).
Google Scholar
[22]
L. B. Magalas, J. Phys. IV, 6, 163 (1996).
Google Scholar
[23]
L. B. Magalas, K. L. Ngai, In: Mechanics and Mechanisms of Material Damping, ASTM STP 1304, 189 (1997).
Google Scholar
[24]
L. B. Magalas, Inzynieria Materialowa, 3, 198 (1998).
Google Scholar
[25]
L. B. Magalas, Defect Diffus. Forum, 194, 115 (2001).
Google Scholar
[26]
A. Seeger, Z Metallkde., 93, 760 (2002).
Google Scholar
[27]
L. B. Magalas, Sol. St. Phen., 89, 1 (2003).
Google Scholar
[28]
L. B. Magalas, S. Etienne. L. David, T. Malinowski, Sol. St. Phen., 89, 321 (2003).
Google Scholar
[29]
T. O. Ogurtani, M. R. Güngör, E. E. Ören, J. Appl. Phys., 91, 1860 (2002).
Google Scholar
[30]
J. L. Snoek, Physica, 8, 711 (1941).
Google Scholar
[31]
T. S. Kê, Trans. AIME, 1776, 448 (1948).
Google Scholar
[32]
W. Köster, L. Bangert, R. Hahn, Arch. Eisenhüttenwesen, 25, 569 (1954).
Google Scholar
[33]
L. B. Magalas, S. Gorczyca, J. Physique, 46, 253 (1985).
Google Scholar
[34]
L. B. Magalas, I. G. Ritchie, P. Moser, In: Tarcie wewnetrzne i opoznienia magnetyczne w cialach stalych, Prace Naukowe Uniwersytetu Slaskiego, Katowice, Poland, 738, 80 (1985).
Google Scholar
[35]
J. Rubianes, L. B. Magalas, G. Fantozzi, J. San Juan, J. Physique, 48, 185 (1987).
Google Scholar
[36]
L. B. Magalas, D. H. Niblett, J. Physique, 48, 209 (1987).
Google Scholar
[37]
L. B. Magalas, A. Pilat, Solid State Phenomena, 115 (2006).
Google Scholar