Hostname: page-component-78c5997874-fbnjt Total loading time: 0 Render date: 2024-11-19T04:29:10.944Z Has data issue: false hasContentIssue false

Bulk Mechanical Properties Of Quasicrystals

Published online by Cambridge University Press:  10 February 2011

S. Takeuchi*
Affiliation:
Department of Materials Science and Technology, Science University of Tokyo, Noda, Chiba 278–8510, Japan, [email protected]
Get access

Abstract

Elastic moduli, anharmonicity, hardness and high temperature plastic behavior of icosahedral and decagonal quasicrystals are reviewed. Elastic properties are discussed in relation to the bonding nature of the quasicrystals. The plastic deformation behavior at high temperatures is discussed based on the characteristics of the dislocation mechanism in the quasiperiodic lattice. A Peierls potential, a phason relaxation and a dragging stress due to production of a defect field are considered as the controlling factors for the thermally activated dislocation glide; a dislocation in quasiperiodic lattice is accompanied not only by the elastic (phonon) strain field but also by the phason strain field which is difficult to be relaxed completely with the dislocation glide.

Type
Research Article
Copyright
Copyright © Materials Research Society 1999

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

1. Shechtman, I. D., Blech, I., Gratias, D. and Cahn, J. W, phys. Rev. 53, 1951 (1984).Google Scholar
2. Kalugin, P. A., Kitaev, A. Yu. and Levitov, L. S., J. Phys. (Paris) 46, L601 (1985).Google Scholar
3. Bak, P., Phys. Rev. B 32, 5764 (1985).Google Scholar
4. Lubensky, T. C., Ramaswamy, S. and Toner, J., Phys. Rev. B 32, 7444 (1985).Google Scholar
5. Sathish, S., Kulik, A. and Gremaud, G., Solid State Comm. 77, 403 (1991).Google Scholar
6. Goldman, A. I., Stassis, C., Bellissent, R., Moudden, H., Pyka, N. and Gayle, F. W, Phys. Rev. B 43, 8763 (1991).Google Scholar
7. Amazit, Y, Boissieu, M. de and Zarembowitch, A., Europhys. Lett. 20, 703 (1992).Google Scholar
8. Spoor, P. S., Maynard, J. P. and Kortan, A. R., Phys. Rev. Lett. 75, 3462 (1995).Google Scholar
9. Reynolds, G. A. M., Gloding, B., Kortan, A. R. and Parsey, J. M. Jr., Phys. Rev. B 41, 1194 (1990).Google Scholar
10. Tanaka, K., Mitarai, Y and Koiwa, M., Phil. Mag. A 73, 1715 (1996).Google Scholar
11. Chernikov, M. A, Ott., H. R. Bianchi, A., Migliori, A. and Dareing, T. W, Phys. Rev. Lent. 80, 321 (1998).Google Scholar
12. Edagawa, K., Kajiyama, K., Suzuki, K. and Takeuchi, S., presented in this Symposium.Google Scholar
13. Kimura, K., Matsuda, H., Tamura, R., Fujimori, M., Schmechel, R. and Werhelt, H., in Quasicrystals (Proc. 5th Int. Conf.), edited by Janot, C. and Mosseri, R. (World Scientific, Singapore, 1995) pp.730738.Google Scholar
14. Takeuchi, S., Iwanaga, H. and Shibuya, T., Jpn. J. Appl. Phys. 30, 361 (1991).Google Scholar
15. Wittmann, R., Urban, K., Schandl, M. and Hornbogen, E., J. Mater. Res. 6, 1165 (1991).Google Scholar
16. Hombogen, E. and Schandl, M., Z. Metallkd. 83, 128 (1992).Google Scholar
17. Tsai, A. P., Suenaga, H., Ohmori, M., Yokoyama, Y., Inoue, A. and Masumoto, T, Jpn. J. Appl. Phys. 31, 2530 (1992).Google Scholar
18. Yokoyama, T., Inoue, A. and Msumoto, T, Mater. Trans. JIM 34, 135 (1993).Google Scholar
19. Köster, U., Liu, W., Liebertz, H. and Michel, M., J. Non-Cryst. Solids 153/154, 446 (1993).Google Scholar
20. Edagawa, K., Suzuki, I and Takeuchi, S., in Quasicrystals (Proc. 6th Int. Conf.), edited by Takeuchi, S. and Fujiwara, T. (World Scientific, Singapore, 1998) pp.517520.Google Scholar
21. Takeuchi, S. and Maeda, K., in Metallic and Semiconducting Glasses, edited by Bhatnager, A. K. (Trans Tech Pub., Switzerland, 1987) p. 745759.Google Scholar
22. Shibuya, T., Hashimoto, T. and Takeuchi, S., Jpn. J. AppI Phys. 29, L349 (1990).Google Scholar
23. Kang, S. S. and Dubois, J. M., Phil. Mag. A 66, 151 (1992).Google Scholar
24. Bresson, L. and Gratias, D., J. Non-Cryst. Solids 153–154, 468 (1993).Google Scholar
25. Shield, J. E., Kramer, M. J. and McCallum, R. W, Mater, J., Res. 9, 343 (1994).Google Scholar
26. Köster, U., Ma, X. L., Greiser, J. and Liebertz, H., in Quasicrystals (Proc. 6th Int. Conf.), edited by Takeuchi, S. and Fujiwara, T. (World Scientific, Singapore, 1998) pp.505508.Google Scholar
27. Giacometti, E., Baluc, N., Bonneville, J. and Jeanneret, J. -F., in Quasicrystals (Proc. 6th Int. Conf.), edited by Takeuchi, S. and Fujiwara, T. (World Scientific, Singapore, 1998) pp.525528.Google Scholar
28. Takeuchi, S. and Hashimoto, T., Jpn. J. Appl. Phys. 32, 2063 (1993).Google Scholar
29. Yokoyama, T., Inoue, A. and Masumoto, T., Mater. Trans. JIM 34, 135 (1993).Google Scholar
30. Inoue, A., Yokoyama, Y and Masamoto, T., Mater. Sci. Engr. A 181/182, 850 (1994).Google Scholar
31. Feuerbacher, M., Baufeld, B., Rosenfeld, R., Bartsch, M., Hanke, G., Beyss, M.. Wollgarten, M., Messerschmidt, U. and Urban, K., Phil. Mag. Lett. 71, 91 (1995).Google Scholar
32. Brunner, D., Plachke, D. and Carstanjen, H.D., Mater. Sci. Eng. A. 234–236, (1997) 310.Google Scholar
33. Semadeni, F., Baluc, N. and Bonneville, J., in Quasicrystals (Proc. 6th Int. Conf.), edited by Takeuchi, S. and Fujiwara, T. (World Scientific, Singapore, 1998) pp.513576.Google Scholar
34. Takeuchi, S., Shinoda, K., Yoshida, I and Kakegawa, T., in Quasicrystals (Proc. 6th Int. Conf.), edited by Takeuchi, S. and Fujiwara, I. (World Scientific, Singapore, 1998) pp.541544.Google Scholar
35. Feuerbacher, M., Metzmacher, C., Wollgarten, M., Urban, K., Baufeld, B., Bartsch, M. and Messerschmidt, U., in New Horizons in Quasicrystals, edited by Goldman, A.I., Sordelet, D. J., Thiel, P.A. and Dubois, J. M. (World Scientific, Singapore, 1997) pp. 103110.Google Scholar
36. Kocks, U. F., Argon, A. S. and Ashby, M. E, Thermodynamics and Kinetics of Slip (Progress in Materials Science Vol.19), (Pergamon Press, Oxford, 1975) pp.230264.Google Scholar
37. Yoshida, T., Tamura, R. and Takeuchi, S., unpublished research.Google Scholar
38. Feuerbacher, M., Bartsch, M., Grushko, B., Messerschmidt, U. and Urban, K., Phil. Mag. Lett. 76, 369 (1997).Google Scholar
39. Edagawa, K., Arai, Y, Hashimoto, T. and Takeuchi, S., Mater. Trans. JIM 39, 863 (1998).Google Scholar
40. Dotera, T, in Quasicrystals (Proc. 6th Int. Conf.), edited by Takeuchi, S. and I, Fujiwara (World Scientific, Singapore, 1998) pp.501504.Google Scholar
41. Socolar, J. E. S., Lubensky, T. C. and Steinhardt, P. J., Phys. Rev. B 34, 3345 (1986).Google Scholar
42. Hiraga, K. and Hirabayashi, M., Jpn. J. AppI.Phys. 26, LI55 (1987).Google Scholar
43. Chen, C. H., Reemika, J. P., Espinosa, G. P. and Cooper, A. S., Phys. Rev. B 35, 7737 (1987).Google Scholar
44. Wollgarten, M., Beyss, M. and Urban, K., Phys. Rev. Lett. 71, 549 (1993).Google Scholar
45. Wollgarte, M., Bartsch, M., Messerschmidt, U., Feuerbacher, M., Rosenfeld, R., Beyss, M. and Urban, K., Phil. Mag. Lett. 71, 99 (1995).Google Scholar
46. Shield, J. E. and Kramer, M. J., Phil. Mag. Lett. 69, 115 (1995).Google Scholar
47. Shield, J. E. and Kramer, M. J., J. Mater. Res. 12, 300 (1997).Google Scholar
48. Köster, U., Ma, X. L., Greiser, J. and Liebertz, H., in Quasicrystals (Proc. 6th Int. Conf.), edited by Takeuchi, S. and Fujiwara, T. (World Scientific, Singapore, 1998) pp.505508.Google Scholar
49. Wollgarten, M. and Saka, H., in New Horizons in Quasicrystals, edited by Goldman, A. I. et al. (World Scientific, Singapore, 1997) pp.320327.Google Scholar
50. Edagawa, K., Suzuki, I. and Takeuchi, S., in Quasicrystals (Proc. 6th Int. Conf), edited by Takeuchi, M. S. and Fujiwara, T. (World Scientific, Singapore, 1998) pp. 517520.Google Scholar
51. Dubois, J. M., in New Horizons in Quasicrystals, edited by Goldman, A. I. et al. (World Scientific, Singapore, 1997) pp.208215.Google Scholar
52. Mikulla, R., Roth, J., Trebin, H.-R., in Quasicrystals (Proc. 5th Int. Conf.), edited by C. Janot and R. Mosseri (World Scientific, Singapore, 1995) pp.298–305 Google Scholar
53. Takeuchi, S. and Edagawa, K., Phil. Mag. A, in the press.Google Scholar
54. Ref 36, pp. 170180.Google Scholar
55. Kirchner, H.O.K. and Suzuki, T., Acta mater. 46, 305 (1997).Google Scholar
56. Suzuki, T., Takeuchi, S. and Yoshinaga, H., Dislocation Dynamics and Plasticity (Springer-Verlag, Berlin, 1985) pp. 188197.Google Scholar
57. Nabarro, F. R. S., Theory of Crystal Dislocations (Clarendon Press, Oxford 1967) pp. 175188.Google Scholar
58. Takeuchi, S. and Suzuki, T., in Strength ofMetals andAlloys (Pergamon Press, Oxford, 1988) pp. 161166.Google Scholar
59. Edagawa, K., Takeuchi, S. and Tsai, A. R, unpublished research.Google Scholar