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对Mg-Zn-Zr合金进行高应变速率多向锻造变形,研究了其组织演变和力学性能.结果表明,高应变速率多向锻造工艺能强烈细化合金的晶粒组织,形成由蜂窝状粗大再结晶组织和岛状细小再结晶组织构成的新颖组织,初始晶界附近和初始晶粒内部的再结晶机制分别是旋转动态再结晶和孪生诱发动态再结晶.由于高应变速率多向锻造工艺具有强烈的晶粒细化能力并能有效避免强烈的基面织构,可大幅提高合金的综合力学性能.累积应变∑△ε=2.64时,ZK21和ZK60抗拉强度、屈服强度和延伸率分别为341.6 MPa、270.7 MPa、25.1%和330.2 MPa、232.3 MPa、24.8%.

参考文献

[1] B.L.Mordike,T.Ebert.Magnesium:Properties-applications-potential,Materials Science and Engineering A,302(1),37(2001)
[2] E.Aghion,B.Bronfin,D.J.Eliezer,The role of magnesium industry in protecting environment,Journal of Materials Processing Technology,117(3),381(2001)
[3] M.M.AVEDESIAN,H.BAKER,ASM specialty handbook:Magnesium and magnesium alloys,1st edition,(Materials Park,ASM International,1999)E7-8
[4] LI Xiao,YANG Ping,LI Jizhong,DING Hua,Precipitation behavior,texture and mechanical properties of AZ80 magnesium produced by equal channel angular extrusion,Chinese Journal of Materials Research,24(1),1 (2010)(李萧,杨平,李继忠,丁桦,等通道角挤压AZ80镁合金的析出行为和性能,材料研究学报,24(1),1(2010))
[5] Y.J.Chen,Q.D.Wang,H.J.Roven,M.P.Liu,M.Karlsen,Y.D.YU,J.HJELEN,Network-shaped fine-grained microstructure and high ductility of magnesium alloy fabricated by cyclic extrusion compression,ScriptaMaterialia,58(4),311(2008)
[6] ZHAN Meiyan,LI Chunming,ZHANG Weiwen,Effect of rolling temperature and accumulated strain on the microstructure and mechanical properties of AZ31 alloy sheet by accumulated roll-bonding,Chinese Journal of Materials Research,25(6),637(2011)(詹美燕,李春明,张卫文,轧制温度和累积应变对累积叠轧焊AZ31镁合金板材组织和性能的影响,材料研究学报,25(6),637(2011))
[7] M.T.Pérez-Prado,J.A.Del Valle,O.A.Ruano,Achieving high strength in commercial Mg cast alloys through large strain rolling,Materials Letters,59(26),3299(2005)
[8] H.Miura,T.Maruoka,X.Yang,J.J.Jonas,Microstructure and mechanical properties of multi-directionally forged Mg-Al-Zn alloy,ScriptaMaterialia,66(1),49(2012)
[9] GUOQiang,YAN Hongge,CHENZhenhua,ZHANGHui,Effect of multiple forging process on microstructure and mechanical properties of magnesium alloy AZ80,ActaMetallurgicaSinica,42(7),739(2006)(郭强,严红革,陈振华,张辉,多向锻造工艺对AZ80镁合金显微组织和力学性能的影响,金属学报,42(7),739(2006))
[10] Q.Guo,H.G.Yan,Z.H.Chen,H.Zhang,Grain refinement in ascast AZ80 alloy under large strain deformation,Materials Characterization,58(2),162(2007)
[11] YANG Xueyue,SUN Huan,WU Xingxing,MA Jijun,QIN Jia,HUO Qinghuan,Evolutions of microstructure and microtexture in AZ21 Mg alloy during multi-directional forging under decreasing temperature conditions,ActaMetallurgicaSinica,48(7),129(2012)(杨续跃,孙欢,吴新星,马继军,秦佳,霍庆欢,AZ21镁合金降温多向压缩过程中的组织和微观织构演化,金属学报,48(7),129(2012))
[12] X.Y.Yang,Z.Y Sun,J.Xing,H.Mium,t Sakai,Grain size and texture changes of magnesium alloy AZ31 during multi-directional forging,Transactions of Nonferrous Metals Society of China,18(1),200(2008)
[13] Z.R.Zhang,J.Xing,X.Yang,H.Miura,T.Sakai,Anisotropy of low temperature superplasticity of fine grained magnesium alloyAZ31processed by multidirectional forging,Materials Science and Technology,25(12),1442(2009)
[14] H.Miura,G.Yu,X.Yang,Multi-directional forging of AZ61Mg alloy under decreasing temperature conditions and improvement of its mechanical properties,Materials Science and Engineering A,528(22-23),6981(2011)
[15] Y.Z.Wu,H.G.Yan,J.H.Chen,Y.G.Du,S.Q.Zhu,B.Su,Microstructure and mechanical properties of ZK21 magnesium alloy processed by multiple forging at different strain rate,Materials Science and Engineering A,556,164(2012)
[16] Y.Z.Wu,H.G.Yan,J.H.Chen,S.Q.Zhu,B.Su,P.L.Zeng,Microstructure and mechanical properties of ZK60 alloy fabricated by multiple forging,Material Science and Technology,29(1),54(2013)
[17] WU Yuanzhi,YAN Hongge,CHEN Jihua,ZHU Suqin,BO Hongwei,WANG Linwei.Microstructure evolution and mechanical properties of AZ31 magnesium alloy fabricated by high strain rate triaxial-forging,The Chinese Journal of Nonferrous Metals,22(11):3000(2012)(吴远志,严红革,陈吉华,朱素琴,薄红伟,王林伟,AZ31镁合金高应变速率多向锻造组织演变及力学性能,中国有色金属学报,22(11):3000(2012)
[18] J.A.Del Valle,M.T.Pérez-Prado,O.A.Ruano,Texture evolution during large-strain hot rolling of the Mg AZ61 alloy,Materials Science and Engineering A,355(1-2),68(2003)
[19] S.E.Ion,F.J.Humphreys,S.H.White,Dynamic recrystallisation and the development of microstructure during the high temperature deformation of magnesium,Acta Materialia,30(10),1909(1982)
[20] H.Q.Sun,Y.N.Shi,M.A.Zhang,K.Lu,Plastic strain-induced grain refinement in the nanometer scale in a Mg alloy,Acta Materialia,55(3),975(2007)
[21] Q.Ma,B.Li,E.B.Marin,S.J.Horstemeyer,Twinning-induced dynamic recrystallization in a magnesium extruded at 450℃,ScriptaMaterialia,65(9),823(2011)
[22] A.Galiyev,O.Sitdikov,R.Kaibyshev,Deformation behavior and controlling mechanisms for plastic flow of magnesium and magnesium alloy,Materials Transactions,44(4),426(2003)
[23] Y.E Shen,L.Lu,Q.H.Lu,Z.H.Jin,K Lu,Tensile properties of copper with nano-scale twins,ScriptaMaterialia,52(10),989(2005)
[24] S.Q.Zhu,H.G.Yan,J.H.Chen,Y.Z.Wu,J.Z.Liu,J.Tian,Effect of twinning and dynamic recrystallization on the high strain rate rolling process,ScriptaMaterialia,63(10),985(2010)
[25] S.Q.Zhu,H.G.Yan,J.H.Chen,Y.Z.Wu,Y.G.Du,X.Z.Liao,Fabrication of Mg-Al-Zn-Mn alloy sheets with homogeneous fimegrained structures using high strain-rate rolling in a wide temperature range,Materials Science and Engineering A,599,765(2013)
[26] S.Ringeval,D.Piot,C.Desrayaud,J.H.Driver,Texture and microtexture development in an Al-3Mg-Sc (Zr) alloy deformed by triaxial forging,ActaMaterialia,54(11),3095(2006)
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