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Erschienen in: Metallurgical and Materials Transactions A 6/2010

01.06.2010

Resistance-Spot-Welded AZ31 Magnesium Alloys: Part I. Dependence of Fusion Zone Microstructures on Second-Phase Particles

verfasst von: L. Xiao, L. Liu, Y. Zhou, S. Esmaeili

Erschienen in: Metallurgical and Materials Transactions A | Ausgabe 6/2010

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Abstract

A comparison of microstructural features in resistance spot welds of two AZ31 magnesium (Mg) alloys, AZ31-SA (from supplier A) and AZ31-SB (from supplier B), with the same sheet thickness and welding conditions, was performed via optical microscopy, scanning electron microscopy (SEM), X-ray diffraction (XRD), and transmission electron microscopy (TEM). These alloys have similar chemical composition but different sizes of second-phase particles due to manufacturing process differences. Both columnar and equiaxed dendritic structures were observed in the weld fusion zones of these AZ31 SA and SB alloys. However, columnar dendritic grains were well developed and the width of the columnar dendritic zone (CDZ) was much larger in the SB alloy. In contrast, columnar grains were restricted within narrow strip regions, and equiaxed grains were promoted in the SA alloy. Microstructural examination showed that the as-received Mg alloys contained two sizes of Al8Mn5 second-phase particles. Submicron Al8Mn5 particles of 0.09 to 0.4 μm in length occured in both SA and SB alloys; however, larger Al8Mn5 particles of 4 to 10 μm in length were observed only in the SA alloy. The welding process did not have a great effect on the populations of Al8Mn5 particles in these AZ31 welds. The earlier columnar-equiaxed transition (CET) is believed to be related to the pre-existence of the coarse Al8Mn5 intermetallic phases in the SA alloy as an inoculant of α-Mg heterogeneous nucleation. This was revealed by the presence of Al8Mn5 particles at the origin of some equiaxed dendrites. Finally, the columnar grains of the SB alloy, which did not contain coarse second-phase particles, were efficiently restrained and equiaxed grains were found to be promoted by adding 10 μm-long Mn particles into the fusion zone during resistance spot welding (RSW).

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Fußnoten
1
JEOL is a Japan Electron Optics Ltd., Tokyo.
 
2
PHILIPS is a trademark of Philips Electronic Instruments Corp., Mahwah, NJ.
 
Literatur
1.
Zurück zum Zitat S.H. Wu, J.C. Huang, and Y.N. Wang: Metall. Mater. Trans. A, 2004, vol. 35A, pp. 2455–69.CrossRefADS S.H. Wu, J.C. Huang, and Y.N. Wang: Metall. Mater. Trans. A, 2004, vol. 35A, pp. 2455–69.CrossRefADS
2.
Zurück zum Zitat L.M. Liu, Z.D. Zhang, G. Song, and L. Wang: Metall. Mater. Trans. A, 2007, vol. 38A, pp. 649–58.CrossRefADS L.M. Liu, Z.D. Zhang, G. Song, and L. Wang: Metall. Mater. Trans. A, 2007, vol. 38A, pp. 649–58.CrossRefADS
3.
Zurück zum Zitat D.G. McCartney: Int. Mater. Rev., 1989, vol. 34, pp. 247–60. D.G. McCartney: Int. Mater. Rev., 1989, vol. 34, pp. 247–60.
4.
Zurück zum Zitat S.A. David and J.M. Vitek: Int. Mater. Rev., 1989, vol. 34, pp. 213–45. S.A. David and J.M. Vitek: Int. Mater. Rev., 1989, vol. 34, pp. 213–45.
5.
Zurück zum Zitat W. Kurz and D.J. Fisher: Fundamentals of Solidification, Trans Tech SA, Aedermannsdorf, Switzerland, 1989, pp. 51–92. W. Kurz and D.J. Fisher: Fundamentals of Solidification, Trans Tech SA, Aedermannsdorf, Switzerland, 1989, pp. 51–92.
6.
Zurück zum Zitat S. Kou: Welding Metallurgy, 2nd ed., Wiley Interscience, John Wiley & Sons, Inc., Hoboken, NJ, 2003, pp. 199–214. S. Kou: Welding Metallurgy, 2nd ed., Wiley Interscience, John Wiley & Sons, Inc., Hoboken, NJ, 2003, pp. 199–214.
7.
Zurück zum Zitat T. Ganaha, B.P. Pearce, and H.W. Kerr: Metall. Trans. A, 1980, vol. 11A, pp. 1351–59.ADS T. Ganaha, B.P. Pearce, and H.W. Kerr: Metall. Trans. A, 1980, vol. 11A, pp. 1351–59.ADS
8.
9.
Zurück zum Zitat J.C. Villafuerte, E. Pardo, and H.W. Kerr: Metall. Trans. A, 1990, vol. 21A, pp. 2009–19.ADS J.C. Villafuerte, E. Pardo, and H.W. Kerr: Metall. Trans. A, 1990, vol. 21A, pp. 2009–19.ADS
10.
Zurück zum Zitat S. Kou and Y. Le: Weld J., 1986, vol. 65, pp. 305s–13s. S. Kou and Y. Le: Weld J., 1986, vol. 65, pp. 305s–13s.
11.
Zurück zum Zitat S. Kou and Y. Le: Metall. Trans. A, 1988, vol. 19A, pp. 1075–82.ADS S. Kou and Y. Le: Metall. Trans. A, 1988, vol. 19A, pp. 1075–82.ADS
12.
Zurück zum Zitat F. Matsuda, H. Nakagawa, K. Nakata, and R. Ayani: Trans. JWRI, 1978, vol. 7, pp. 111–27. F. Matsuda, H. Nakagawa, K. Nakata, and R. Ayani: Trans. JWRI, 1978, vol. 7, pp. 111–27.
13.
Zurück zum Zitat G.D.J. Ram, T.K. Mitra, V. Shankar, and S. Sundaresan: J. Mater. Process. Technol., 2003, vol. 142, pp. 174–81.CrossRef G.D.J. Ram, T.K. Mitra, V. Shankar, and S. Sundaresan: J. Mater. Process. Technol., 2003, vol. 142, pp. 174–81.CrossRef
14.
Zurück zum Zitat T. Koseki and G. Thewlis: Mater. Sci. Technol., 2005, vol. 21, pp. 867–79.CrossRef T. Koseki and G. Thewlis: Mater. Sci. Technol., 2005, vol. 21, pp. 867–79.CrossRef
15.
Zurück zum Zitat P. Cao, M. Qian, and D.H. StJohn: Scripta Mater., 2006, vol. 54, pp. 1853–58.CrossRef P. Cao, M. Qian, and D.H. StJohn: Scripta Mater., 2006, vol. 54, pp. 1853–58.CrossRef
16.
Zurück zum Zitat D. Qiu, M.X. Zhang, J.A. Taylor, H.M. Fu, and P.M. Kelly: Acta Mater., 2007, vol. 55, pp. 1863–71.CrossRef D. Qiu, M.X. Zhang, J.A. Taylor, H.M. Fu, and P.M. Kelly: Acta Mater., 2007, vol. 55, pp. 1863–71.CrossRef
17.
Zurück zum Zitat T. Ganaha and H.W. Kerr: Met. Technol., 1978, vol. 5, pp. 62–69. T. Ganaha and H.W. Kerr: Met. Technol., 1978, vol. 5, pp. 62–69.
18.
Zurück zum Zitat D.L. Hallum and W.A. Baeslack III: Welding J., 1990, vol. 69, pp. 326s–336s. D.L. Hallum and W.A. Baeslack III: Welding J., 1990, vol. 69, pp. 326s–336s.
19.
Zurück zum Zitat M. Kato, F. Matsuda, and T. Senda: Trans. Jpn. Welding Soc., 1972, vol. 3, pp. 69–76. M. Kato, F. Matsuda, and T. Senda: Trans. Jpn. Welding Soc., 1972, vol. 3, pp. 69–76.
20.
Zurück zum Zitat N. Tiner: AIME Tech. Pub., 1945, vol. 12, pp. 1–12. N. Tiner: AIME Tech. Pub., 1945, vol. 12, pp. 1–12.
21.
Zurück zum Zitat J.Y. Byun, S. Kwon, H.P. Ha, and J.K. Yoon: in Magnesium Alloys and Their Applications, K.U. Kainer, ed., Wiley-VCH, Weinheim, 2003, p. 713. J.Y. Byun, S. Kwon, H.P. Ha, and J.K. Yoon: in Magnesium Alloys and Their Applications, K.U. Kainer, ed., Wiley-VCH, Weinheim, 2003, p. 713.
22.
Zurück zum Zitat T. Laser, M.R. Nurnberg, A. Janz, Ch. Hartig, D. Letzig, R. Schmid-Fetzer, and R. Bormann: Acta Mater., 2006, vol. 54, pp. 3033–41.CrossRef T. Laser, M.R. Nurnberg, A. Janz, Ch. Hartig, D. Letzig, R. Schmid-Fetzer, and R. Bormann: Acta Mater., 2006, vol. 54, pp. 3033–41.CrossRef
23.
Zurück zum Zitat Y. Tamura, J. Yagi, T. Haitani, N. Kono, and H. Tamehiro: Mater. Trans., 2003, vol. 44, pp. 552–57.CrossRef Y. Tamura, J. Yagi, T. Haitani, N. Kono, and H. Tamehiro: Mater. Trans., 2003, vol. 44, pp. 552–57.CrossRef
24.
Zurück zum Zitat D.Q. Sun, B. Lang, D.X. Sun, and J.B. Li: Mater. Sci. Eng. A, 2007, vols. 460–461, pp. 494–98. D.Q. Sun, B. Lang, D.X. Sun, and J.B. Li: Mater. Sci. Eng. A, 2007, vols. 460–461, pp. 494–98.
25.
Zurück zum Zitat L. Yu, K. Nakata, N. Yamamoto, and J. Liao: Mater. Lett., 2009, vol. 63, pp. 870–72.CrossRef L. Yu, K. Nakata, N. Yamamoto, and J. Liao: Mater. Lett., 2009, vol. 63, pp. 870–72.CrossRef
26.
Zurück zum Zitat L. Liu, S. Zhou, Y. Tian, J. Feng, J. Jung, and Y. Zhou: Sci. Technol. Welding Joining, 2009, vol. 14, pp. 356–61.CrossRef L. Liu, S. Zhou, Y. Tian, J. Feng, J. Jung, and Y. Zhou: Sci. Technol. Welding Joining, 2009, vol. 14, pp. 356–61.CrossRef
27.
Zurück zum Zitat L. Liu, L. Xiao, J.C. Feng, Y.H. Tian, S.Q. Zhou, and Y. Zhou: unpublished research, 2010. L. Liu, L. Xiao, J.C. Feng, Y.H. Tian, S.Q. Zhou, and Y. Zhou: unpublished research, 2010.
28.
Zurück zum Zitat M. Ohno and R. Schmid-Fetzer: Z Metallkd., 2005, vol. 96, pp. 857–69. M. Ohno and R. Schmid-Fetzer: Z Metallkd., 2005, vol. 96, pp. 857–69.
29.
Zurück zum Zitat T. Laser, C. Hartig, M.R. Nurnberg, D. Letzig, and R. Bormann: Acta Mater., 2008, vol. 56, pp. 2791–98.CrossRef T. Laser, C. Hartig, M.R. Nurnberg, D. Letzig, and R. Bormann: Acta Mater., 2008, vol. 56, pp. 2791–98.CrossRef
30.
Zurück zum Zitat C. Liu, F. Pan, and W. Wang: Mater. Sci. Forum, 2007, vols. 546–549, Part 1, pp. 395–98. C. Liu, F. Pan, and W. Wang: Mater. Sci. Forum, 2007, vols. 546–549, Part 1, pp. 395–98.
31.
Zurück zum Zitat J.C. Feng, Y.R. Wang, and Z.D. Zhang: Sci. Technol. Welding Joining, 2006, vol. 11, pp. 154–62.CrossRef J.C. Feng, Y.R. Wang, and Z.D. Zhang: Sci. Technol. Welding Joining, 2006, vol. 11, pp. 154–62.CrossRef
33.
34.
35.
36.
Zurück zum Zitat S.S. Park, G.T. Bae, D.H. Kang, I.H. Jung, K.S. Shin, and N.J. Kim: Scripta Mater., 2007, vol. 57, pp. 793–96.CrossRef S.S. Park, G.T. Bae, D.H. Kang, I.H. Jung, K.S. Shin, and N.J. Kim: Scripta Mater., 2007, vol. 57, pp. 793–96.CrossRef
37.
Zurück zum Zitat S.S. Park, Y.S. Oh, D.H. Kang, and N.J. Kim: Mater. Sci. Eng. A, 2007, vols. 449–451, pp. 352–55. S.S. Park, Y.S. Oh, D.H. Kang, and N.J. Kim: Mater. Sci. Eng. A, 2007, vols. 449–451, pp. 352–55.
Metadaten
Titel
Resistance-Spot-Welded AZ31 Magnesium Alloys: Part I. Dependence of Fusion Zone Microstructures on Second-Phase Particles
verfasst von
L. Xiao
L. Liu
Y. Zhou
S. Esmaeili
Publikationsdatum
01.06.2010
Verlag
Springer US
Erschienen in
Metallurgical and Materials Transactions A / Ausgabe 6/2010
Print ISSN: 1073-5623
Elektronische ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-010-0197-3

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