Hostname: page-component-cd4964975-4wks4 Total loading time: 0 Render date: 2023-03-29T05:25:04.309Z Has data issue: true Feature Flags: { "useRatesEcommerce": false } hasContentIssue true

The Effects of Annealing on Fatigue Behavior in Zr-based Bulk Metallic Glasses

Published online by Cambridge University Press:  20 May 2011

Peng Tong
Affiliation:
Department of Physics, University of Virginia, Charlottesville, VA 22904, U.S.A.
Despina Louca
Affiliation:
Department of Physics, University of Virginia, Charlottesville, VA 22904, U.S.A.
Yoshihiko Yokoyama
Affiliation:
Tohoku University, Sendai 980-8577, Japan.
Anna Llobet
Affiliation:
Los Alamos National Laboratory, Los Alamos, NM 87545, U.S.A.
Gongyao Wang
Affiliation:
The University of Tennessee, Knoxville, TN 37831-6376, U.S.A.
Yunfeng Shi
Affiliation:
Rensselaer Polytechnic Institute, Troy, NY 12180, U.S.A.
Peter Liaw
Affiliation:
The University of Tennessee, Knoxville, TN 37831-6376, U.S.A.
Graham King
Affiliation:
Los Alamos National Laboratory, Los Alamos, NM 87545, U.S.A.
Rick Spence
Affiliation:
Argonne National Laboratory, Argonne, IL 60439, U.S.A.
Get access

Abstract

The effects of annealing and fatigue on the local structure of Zr50Cu40Al10 and Zr60Cu30Al10 bulk metallic glasses (BMG) were investigated using the pair density function (PDF) analysis of synchrotron X-ray and neutron diffraction data. Our results indicate that the two compositions respond differently to annealing. The first PDF peak becomes sharper after annealing in Zr50Cu40Al10 with its intensity increasing, indicating that short-range ordering may be induced after the heat treatment. On the other hand, in Zr60Cu30Al10, the effects due to the heat treatment on the local structure are more subtle. Separately, the as-quenched and annealed alloys with the composition Zr50Cu40Al10 were subjected to fatigue loading conditions with ~ 106 compression cycles. The room temperature measurements showed changes in the local structure with fatigue especially for the annealed sample, involving the Cu-Zr correlations. Our results suggest that the physical properties of BMGs upon fatigue loading conditions may become accentuated due to the structural relaxation brought upon by annealing, leading to observable structural changes at the atomic level from fatigue.

Type
Research Article
Copyright
Copyright © Materials Research Society 2011

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. Inoue, A., Acta Materialia, 48, 279306 (2000).CrossRefGoogle Scholar
2. Zhang, W. and Inoue, A., Materials Transactions JIM, 45, 12101213 (2004).CrossRefGoogle Scholar
3. Wall, J. J., Fan, C., Liaw, P. K., Liu, C. T. and Choo, H., Rev. Scient. Instr. 77, 033902 (2006).CrossRefGoogle Scholar
4. Fan, C., Li, H. Q., Kecskes, L. J., Tao, K. X., Choo, H., Liaw, P. K. and Liu, C. T., Phys. Rev. Lett. 96, 145506 (2006).CrossRefGoogle Scholar
5. Li, H. Q., Fan, C., Tao, K. X., Choo, H. and Liaw, P. K., Adv. Mater. 18, 752754 (2006).CrossRefGoogle Scholar
6. Morrison, M. L., Buchanan, R. A., Peker, A., Peter, W. H., Horton, I. A. and Liaw, P. K., Intermetallics, 12, 11771181 (2004).CrossRefGoogle Scholar
7. Peter, W. H., Buchanan, R. A., Liu, C. T., Liaw, P. K., Morrison, M. L., Horton, I. A., Carmichael, C. A. and Wright, J. L., Intermetallics, 10, 11571162 (2002).CrossRefGoogle Scholar
8. Poon, S. J., Phys. Rev. B, 31, 74427445 (1985).CrossRefGoogle Scholar
9. Lu, Z. P., Liu, C. T., Thompson, J. R. and Porter, W. D., Phys. Rev. Lett. 92, 245503 (2004).CrossRefGoogle Scholar
10. Klement, W., Willens, R. and Duwez, P., Nature (London) 187, 869 (1960).CrossRefGoogle Scholar
11. Hammond, V. H., Houtz, M. D. and O’Reilly, J. M., J. Non-crystalline Solids 325, 179186 (2003).CrossRefGoogle Scholar
12. Yokoyama, Y., Yamasaki, T., Liaw, P. K. and Inoue, A., Acta Mater. 56, 60976108 (2008);CrossRefGoogle Scholar
13. Murali, P. and Ramamurty, U., Acta Mater. 53, 14671478 (2005).CrossRefGoogle Scholar
14. Fan, C., Liaw, P. K., Wilson, T. W., Choo, H., Gao, Y. F., Liu, C. T., Proffen, Th. and Richardson, J. W., Appl. Phys. Lett. 89, 231902 (2006).Google Scholar
15. Fan, C., Liaw, P. K., Haas, V., Hall, J. J., Choo, H., Inoue, A. and Liu, C. T., Phys. Rev. B, 74, 014205 (2006).CrossRefGoogle Scholar
16. Dmowski, W., Fan, C., Morrison, M. L., Liaw, P. K. and Egami, T., Mater. Sci. Eng. A, 471, 125129 (2007).CrossRefGoogle Scholar
17. Egami, T. and Billinge, S. J. L., in Underneath the Bragg Peaks: Structural Analysis of Complex Materials (Pergamon, Materials Series, Vol. 7, 2003).CrossRefGoogle Scholar