Acta Metallurgica Sinica (English Letters) ›› 2016, Vol. 29 ›› Issue (1): 39-45.DOI: 10.1007/s40195-015-0360-3
Special Issue: 2016纳米材料专辑
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Mohsen Hajizamani1(), Mostafa Alizadeh1(
), Seyed Ahmad Jenabali-Jahromi2
Received:
2016-01-04
Revised:
2016-01-04
Online:
2016-01-04
Published:
2016-01-20
Mohsen Hajizamani, Mostafa Alizadeh, Seyed Ahmad Jenabali-Jahromi. Microstructure Modification of Powder Compact of Al-Zn-Mg Nanostructured Alloy by a Semisolid Thermomechanical Processing[J]. Acta Metallurgica Sinica (English Letters), 2016, 29(1): 39-45.
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Nomenclature | Process |
---|---|
MAA-40 | Al-Zn-Mg powder mechanically alloyed for 40 h |
MAA-s | Al-Zn-Mg powder cold-pressed under 308 MPa + solid-state sintering at 550°C for 90 min |
MAA-TM1 | Al-Zn-Mg powder cold-pressed under 154 MPa + modification process by LPS at 600°C for 30 min |
MAA-TM2 | Al-Zn-Mg powder cold-pressed under 154 MPa + modification process by LPS at 600°C for 30 min + cold-pressed under 154 MPa + LPS at 600°C for 30 min |
MAA-TM3 | Al-Zn-Mg powder cold-pressed under 154 MPa + modification process by LPS at 600°C for 30 min + cold-pressed under 154 MPa + LPS at 600°C for 30 min + cold-pressed under 154 MPa + LPS at 600°C for 30 min |
Table 1 Nomenclatures used for the samples in this research
Nomenclature | Process |
---|---|
MAA-40 | Al-Zn-Mg powder mechanically alloyed for 40 h |
MAA-s | Al-Zn-Mg powder cold-pressed under 308 MPa + solid-state sintering at 550°C for 90 min |
MAA-TM1 | Al-Zn-Mg powder cold-pressed under 154 MPa + modification process by LPS at 600°C for 30 min |
MAA-TM2 | Al-Zn-Mg powder cold-pressed under 154 MPa + modification process by LPS at 600°C for 30 min + cold-pressed under 154 MPa + LPS at 600°C for 30 min |
MAA-TM3 | Al-Zn-Mg powder cold-pressed under 154 MPa + modification process by LPS at 600°C for 30 min + cold-pressed under 154 MPa + LPS at 600°C for 30 min + cold-pressed under 154 MPa + LPS at 600°C for 30 min |
Fig. 5 The SEM images of the samples perpendicular and parallel to the pressure direction: a MAA-s, perpendicular; b MAA-s, parallel; c MAA-TM1, perpendicular; d MAA-TM1, parallel; e MAA-TM2, perpendicular; f MAA-TM2, parallel; g MAA-TM3, perpendicular; h MAA-TM3, parallel
Point in | Al | Zn | Mg |
---|---|---|---|
1 | 0 | 64 | 36 |
2 | 0 | 83 | 17 |
3 | 30 | 33 | 37 |
4 | 24 | 21 | 55 |
Table 2 Quantitative results of the EDS analysis (at%)
Point in | Al | Zn | Mg |
---|---|---|---|
1 | 0 | 64 | 36 |
2 | 0 | 83 | 17 |
3 | 30 | 33 | 37 |
4 | 24 | 21 | 55 |
[1] | D. Kirkwood, Int. Mater. Rev. 39, 173 (1994)CrossRef |
[2] | Z. Fan, Int. Mater. Rev. 47, 49 (2002)CrossRef |
[3] | E. Tzimas, A. Zavaliangos, Materi. Sci. Engi. A 289, 217 (2000) |
[4] | R. Haghayeghi, E.J. Zoqui, A. Halvaee, M. Emamy, J. Mater. Process. Technol. 169, 382(2005) |
[5] | K.G. Satyanarayana, S.N. Ojha, Mater. Sci. Engi. A 304-306, 627(2001) |
[6] | J.L. Wang, Y.H. Su, C.Y.A. Scr. Mater. 37, 2003 (1997) |
[7] | C. Wang, H. Mei, R. Li, D. Li, L. Wang, J. Liu, Z. Hua, L. Zhao, F. Pen, H. Li, Acta Metall. Sin. (Engl. Lett.) 26, 149(2013) |
[8] | S.B. Mater. Des. 46, 579(2013) |
[9] | J. Jiang, Y. Wang, J. Qu, Z. Du, Y. Sun, S. Luo, J. Alloys Compd. 497, 62(2010) |
[10] | G.P. Chen, T.R. Zhou, H. Yan, F.Y. Zhang, Acta Metall. Sin. (Engl. Lett.) 21, 197(2008) |
[11] | J.G. Wang, P. Lu, H.Y. Wang, Q.C. Jiang, Mater. Lett. 58, 3852(2004) |
[12] | J.G. Wang, P. Lu, H.Y. Wang, J. Liu, Q.C. Jiang, J. Alloys Compd. 395, 108(2005) |
[13] | S.J.L.Kang, Sintering, ed. by S.J.L. Kang(Butterworth-Heinemann, Oxford, 2005), p. 3 |
[14] | J. Suri, L.L. Shaw, Ceram. Int. 40, 9179(2014) |
[15] | Y. Xiong, H. Wang, Z. Fu, J. Eur. Ceram. Soc. 33, 2199 (2013) |
[16] | R.M. German, P. Suri, S.J. Park, J. Mater. Sci. 44, 1(2009) |
[17] | X.J. Jiang, B. Noble, V. Hansen, J. Tafto, Metall. Mate. Trans. A 32, 1063 (2001) |
[18] | M.M. Sharma, C.W. Ziemian, T.J. Eden, J. Mater. Eng. Perform. 19, 1344(2010) |
[19] | R. Flores-Campos, I. Estrada-Guel, M. Miki-Yoshida, R. Martínez-Sánchez, J.M. Mater. Charact. 63, 39(2012) |
[20] | C. Suryanarayana, Int. Mater. Rev. 40, 41(1995) |
[21] | R.M. German, Sintering: From Empirical Observations to Scientific Principles (Butterworth-Heinemann, Boston, 2014), p. 355 |
[22] | R.M. German, Sintering: From Empirical Observations to Scientific Principles (Butterworth-Heinemann, Boston, 2014), p. 247 |
[23] | C. Koch, R. Scattergood, K. Darling, J. Semones, J. Mater. Sci. 43, 7264(2008) |
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