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RECIPROCATING EXTRUSION OF IN SITU Mg_2Si REINFORCED Mg-Al BASED COMPOSITE 被引量:8

RECIPROCATING EXTRUSION OF IN SITU Mg_2Si REINFORCED Mg-Al BASED COMPOSITE
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摘要 M92Si reinforced Mg-Al based composite with high amount o/silicon was prepared by permanent mould casting, and then extruded by reciprocating extrusion (RE) after the composite was processed by homogenization heat treatment. The effect of RE processing on the morphology and size of M92Si and the mechanical properties of the com- posite were investigated, to develop new ways to refine the M928i phase and improve its shape. The result showed that RE was very useful in refining the M92Si phase. The more the RE processing passes, the better the refining effect would be. Moreover, the uniform distribution of M928i phases would be more in the composite. After the composite was processed by RE for 12 passes, most M92Si phases were equiaxed, with granular diameter below 20 μm, and distributed uniformly in the matrix of the composite. The mechanical properties of the composite could be increased prominently by RE processing, and were much higher than that in the as-cast state. As the temperature rises, the tensile strength is reduced. For the composite RE processed for 12 passes, the tensile strength, yield strength, and elongation are 325.9 MPa, 211.4 MPa, and 3.3% at room temperature, whereas, 288.2 MPa, ,207.7 MPa, and 7.8%, respectively, at 150℃. In comparison with the properties at room temperature, the tensile strength and yield strength are high and only decrease by 11.6% and 1.8% at 150℃. The M928i reinforced Mg-Al based composite possesses good heat resistance at 150℃. The excellent resistance to effect of heat is attributed to the high melting tempera- ture and good thermal stability of fine Mg2Si phases, which are distributed uniformly in the composite, and effectively hinder the grain boundary gliding and dislocation movement. M92Si reinforced Mg-Al based composite with high amount o/silicon was prepared by permanent mould casting, and then extruded by reciprocating extrusion (RE) after the composite was processed by homogenization heat treatment. The effect of RE processing on the morphology and size of M92Si and the mechanical properties of the com- posite were investigated, to develop new ways to refine the M928i phase and improve its shape. The result showed that RE was very useful in refining the M92Si phase. The more the RE processing passes, the better the refining effect would be. Moreover, the uniform distribution of M928i phases would be more in the composite. After the composite was processed by RE for 12 passes, most M92Si phases were equiaxed, with granular diameter below 20 μm, and distributed uniformly in the matrix of the composite. The mechanical properties of the composite could be increased prominently by RE processing, and were much higher than that in the as-cast state. As the temperature rises, the tensile strength is reduced. For the composite RE processed for 12 passes, the tensile strength, yield strength, and elongation are 325.9 MPa, 211.4 MPa, and 3.3% at room temperature, whereas, 288.2 MPa, ,207.7 MPa, and 7.8%, respectively, at 150℃. In comparison with the properties at room temperature, the tensile strength and yield strength are high and only decrease by 11.6% and 1.8% at 150℃. The M928i reinforced Mg-Al based composite possesses good heat resistance at 150℃. The excellent resistance to effect of heat is attributed to the high melting tempera- ture and good thermal stability of fine Mg2Si phases, which are distributed uniformly in the composite, and effectively hinder the grain boundary gliding and dislocation movement.
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2008年第3期169-177,共9页 金属学报(英文版)
基金 This study was financially supported by the Scientific Research Project of Education Department of Shaanxi Province (No. 07JK358);the National Natural Science Foundation of China (No.50271054); the Shaanxi Provincial Natural Scientific Research Project (No.2003E111); SRF for ROCS, SEM (101-220325).
关键词 Reciprocating extrusion Magnesium alloy In situ composite Elevated temperature property Reciprocating extrusion Magnesium alloy In situ composite Elevated temperature property
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  • 1M. S. Dargusch,G. L. Dunlop,A. L. Bowles,K. Pettersen,P. Bakke.The effect of silicon content on the microstructure and creep behavior in die-cast magnesium AS alloys[J].Metallurgical and Materials Transactions A.2004(6)
  • 2M. Mabuchi,K. Kubota,K. Higashi.Tensile strength, ductility and fracture of magnesium-silicon alloys[J].Journal of Materials Science.1996(6)
  • 3G.Y.Yuan,M.P.Liu,Q.D.Wang,Y.P.Zhu,and W.J.Ding. Acta Metallurgica Sinica . 2002
  • 4S.K.Guan,and Y.X.Wang. Auto.Technol.Mater . 2003
  • 5E.Aghion,and B.Bronfin. Mater.Sci.Forum . 2000
  • 6B.L.Mordike,and T.Ebert. Mater.Sci.Eng.A . 2001
  • 7J.Zhang,,Z.Fan,,Y.Q.Wang,and B.L.Zhou. Mater.Sci.Eng.A . 2000
  • 8B.Bronfin,,M.Katsir,and E.Aghion. Mater.Sci.Eng.A . 2001
  • 9G.Y.Yuan,,M.P.Liu,W.J.Ding,and A.Inoue. Mater.Sci.Forum . 2003
  • 10M.Mabuchi,K.Kubota,and K.Higashi. Journal of Materials Science . 1996

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