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Revista mexicana de física

versão impressa ISSN 0035-001X

Rev. mex. fis. vol.48 no.3 México Jun. 2002

 

Investigación

 

On the correlation between Fe concentration and the activation energy for superplastic deformation in Zn-22 pct Al

 

J.A. Montemayor-Aldrete1, J.D. Muñoz-Andrade2* and A. Mendoza-Allende1

 

1 Instituto de Física, Universidad Nacional Autónoma de México Apartado Postal 20-364, 01000 México, D.F., México.

2 Departamento de Materiales, DCBI Universidad Autónoma Metropolitana Unidad Azcapotzalco, Ave. San Pablo 180, Col. Reynosa-Tamaulipas, 02200 México, D.F.

 

Recibido el 3 de septiembre de 2001.
Aceptado el 22 de febrero de 2002.

 

Abstract

For the first time, an expression for the apparent activation energy for superplastic deformation in Zn-22 pct Al doped with Fe impurities, which exhibits in an explicit fashion the Fe-concentration has been obtained. Such expression allows to describe all the experimental data previously reported. The range of Fe-concentration for which the Mohamed's model remains valid is established.

Keywords: Activation energy; superplasticity; threshold stress; segregation.

 

Resumen

Se presenta una expresión para la energía de activación aparente para la deformación superplástica en Zn-22 pct Al con impurezas de Fe, en la cual por primera vez aparece de manera explícita la concentración de Fe. Esta expresión permite describir todos los datos experimentales previamente reportados. Asimismo, se delimita el intervalo de concentraciones en que sigue siendo posible aplicar el modelo de Mohamed.

Palabras clave: Energía de activación; superplasticidad; esfuerzo umbral; segregación.

PACS: 62.20.Fe; 61.72.Hh; 61.72.Ss.

 

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References

1. M.L. Vaidya, K.L. Murty and J.E. Dorn, Acta Metall. 21 (1973) 1615.         [ Links ]

2. F.A. Mohamed and T.G. Langdon, Philos. Mag. 32 (1975) 697.         [ Links ]

3. H. Ishikawa, F.A. Mohamed and T.G. Langdon, Philos. Mag. 32 (1975) 1269.         [ Links ]

4. F.A. Mohamed and T.G. Langdon, Acta Metall. 23 (1975) 117.         [ Links ]

5. F.A. Mohamed, S.A., Shei and T.G. Langdon, Acta Metall. 23 (1975) 1443.         [ Links ]

6. F.A. Mohamed, M.M.I. Ahmed and T.G. Langdon, Metall. Trans. A 8 (1977) 933.         [ Links ]

7. A. Arieli, A.K. Mukherjee, Scr. Metall. 13 (1979) 331.         [ Links ]

8. A. Arieli, A.K.S. Yu and A.K. Mukherjee, Metall. Trans. A 11 (1980) 181.         [ Links ]

9. A. Arieli and A.K. Mukherjee, Acta Metall. 28 (1980) 1571.         [ Links ]

10. P. Shariat, R.B. Vastava and T.G. Langdon, Acta Metall. 30 (1982) 285.         [ Links ]

11. P. Yavari and T.G. Langdon, Mater. Sci. Eng. 57 (1983) 55.         [ Links ]

12. F.A. Mohamed, J. Matter. Sci. 18 (1983) 582.         [ Links ]

13. P.K. Chaudhury and F.A. Mohamed, Acta Metall. 36 (1988) 1099.         [ Links ]

14. N. Prasad, G. Malakondaiah, D. Banerjee and P. Rama Rao, J. Matter. Sci. 28 (1993) 1585.         [ Links ]

15. P.K. Chaudhury, K.T. Park and F.A. Mohamed, Metall. Mater. Trans. 25A (1994) 2391.         [ Links ]

16. S.T. Yang and F.A. Mohamed, Metall. Mater. Trans. 26A (1995) 493.         [ Links ]

17. F.A. Mohamed and P.K. Chaudhury, Metall. Mater. Trans. 26A (1995) 1601.         [ Links ]

18. X. Jiang, S.T. Yang, J.C. Earthman and F.A. Mohamed, Metall. Mater. Trans. 27A (1996) 863.         [ Links ]

19. K. Duong and F.A. Mohamed, Acta Mater. 46 (1998)4571.         [ Links ]

20. K. Duong and F.A. Mohamed, Metall. Mater. Trans. 32A (2001) 103.         [ Links ]

21. F.A. Mohamed, Materials Science Forum Vols. 357-359 (2001) 83. (2001 Trans. Tech. Publications, Switzerland).         [ Links ]

22. O.D. Sherby and J. Wadsworth, Prog. Mater. Sci. 33 (1989) 169.         [ Links ]

23. J.A. Montemayor-Aldrete, J.D. Muñoz-Andrade, G. Torres-Villaseñor and A. Mendoza-Allende, Recent Res. Devel. Metallurg. & Materials Sci. 5 (2001) 11.         [ Links ]

24. J. Pilling and N. Ridley, Superplasticity in Crystalline Solids. The Institute of Metals. (The Camelot Press. 1989) p. 6.         [ Links ]

25. J.J. Gilman, J. Appl. Phys. 36 (1965) 3195.         [ Links ]

26. S.S. Vagarali and T.G. Langdon, Acta Metall. 29 (1981) 1969.         [ Links ]

27. A.K. Mukherjee. (Private communication)

28. J. Friedel, Dislocations, (Pergamon Press, New York, 1964) p. 16.         [ Links ]

29. Ibid, Chapter 16.

30. E. Nembach, Particle Strengthening of Metals and Alloys, (J. Wiley & Sons. Inc. New York. 1997) p. 84.         [ Links ]

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