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Microstructure and texture evolution during warm compression of the magnesium alloy AZ31 被引量:2

Microstructure and texture evolution during warm compression of the magnesium alloy AZ31
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摘要 The evolution of the microstructure and texture with strain during compression at 150℃ of the magnesium alloy AZ31 has been investigated using the electron backscattered diffraction (EBSD) technique. The initial samples were chosen to have a strong basal plane texture with the crystal c-axes perpendicular to the compression direction. The EBSD data provide evidence concerning the relative activity of both {10-12} extension twinning and slip, and suggest that non-basal <c+a> slip is important in samples deformed to a strain of more than 0.2. The relative contributions of the twinning and the slip during deformation have been discussed based on the results above. The evolution of the microstructure and texture with strain during compression at 150° of the magnesium alloy AZ31 has been investigated using the electron backscattered diffraction (EBSD) technique. The initial samples were chosen to have a strong basal plane texture with the crystal c-axes perpendicular to the compression direction. The EBSD data provide evidence concerning the relative activity of both {10–12} extension twinning and slip, and suggest that non-basal <c+a> slip is important in samples deformed to a strain of more than 0.2. The relative contributions of the twinning and the slip during deformation have been discussed based on the results above.
作者 GODFREYB Andy
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2009年第1期186-189,共4页 中国科学(技术科学英文版)
基金 Supported by the National Basic Research Program of China ("973") (Grant No. 2007CB613703) the International Key Program for Cooperation in Science and Technology of China (Grant No. 2006DFA51160) the National Natural Science Foundation of China (Grant Nos. 50571049, 50231030)
关键词 AZ31 electron backscattered diffraction (EBSD) texture SLIP TWINNING AZ31 electron backscattered diffraction (EBSD) texture slip twinning
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  • 1Philippe M J,Serghat M,Houtte P V, et al.Modelling of texture evolution for materials of hexagonal symmetry-II. Application to zirconium and titanium α or near α alloys. Acta Materialia . 1995
  • 2Agnew S R,Duygulu O.A mechanistic understanding of the form- ability of magnesium: Examining the role of temperature on the de- formation mechanisms. Materials Science Forum . 2003
  • 3Jiang J,Godfrey A,Liu Q.Influence of grain orientation on twinning during warm compression of wrought Mg-3Al-1Zn. Materials Science and Technology . 2005
  • 4Backx P,Barnett M R,Kestens L.Texture changes during uniaxial compression of Mg-3Al-1Zn. Materials Science Forum . 2004
  • 5Mordike B L,Ebert T.Magnesium properties-applicationspotential[ J]. Materials Science and Engineering . 2001
  • 6WANG Y N,HUANG J C.Texture analysis in hexagonal materials. Journal of Materials Chemistry . 2003
  • 7P. Yang a&gt; Y. Yu,L. Chen and W. Mao.Experimental determination and theoretical prediction of twin orientations in magnesium alloy AZ31. Scripta Materialia . 2004
  • 8Kim WJ,Hong SI,Y.S Kim,et al.Texture development and itseffect on mechanical properties of an AZ61 Mg alloy fabricated byequal channel angular pressing(J). Acta Materialia . 2003
  • 9Agnew,S.R.,Yoo,M.H.,Tome,C.N.Application of Texture Simulation to Understanding Mechanical Behavior of Mg and Solid Solution Alloys Containing Li or Y. Acta Materialia . 2001
  • 10J. J. Fundenberger M. J. Philippe,F. Wagner and C. Esling.Modelling and prediction of mechanical properties for materials with hexagonal symmetry (zinc, titanium and zirconium alloys). Acta Materialia . 1997

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