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大塑性变形镁合金的晶粒细化(英文) 被引量:5

Grain refinement of magnesium alloys processed by severe plastic deformation
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摘要 采用电子背散射技术(EBSD)定量研究AZ31镁合金在225-400℃往复挤压大变形过程中的晶粒细化。结果表明:在225℃往复挤压3道次即获得了超细晶AZ31镁合金。随着变形温度的降低,变形组织的平均位相差和大角度晶界的比例逐渐增加。在3道次的AZ31组织中,只发现少量的{101^-2}孪晶,位错滑移是主要的变形机制。施密特因子计算表明,在225-350℃变形时,锥面滑移系{101^-1}〈112^-0〉被大量激活。而在400℃变形时,基面滑移系{0001}〈112^-0〉被大量激活。亚晶界的详细分析为连续动态再结晶在镁合金大变形过程中晶粒细化的重要作用提供了直接的证据。 Grain refinement of AZ31 Mg alloy during cyclic extrusion compression (CEC) at 225-400 ℃ was investigated quantitatively by electron backscattering diffraction (EBSD). Results show that an ultrafine grained microstructure of AZ31 alloy is obtained only after 3 passes of CEC at 225 ℃. The mean misorientation and the fraction of high angle grain boundaries (HAGBs) increase gradually by lowering extrusion temperature. Only a small fraction of {101^-2} twinning is observed by EBSD in AZ31 Mg alloys after 3 passes of CEC. Schmid factors calculation shows that the most active slip system is pyramidal slip {101^-1}〈1120〉and basal slip {0001}〈1120〉 at 225-350 ℃ and 400 ℃, respectively. Direct evidences at subgrain boundaries support the occurrence of continuous dynamic recrystallization (CDRX) mechanism in grain refinement of AZ31 Mg alloy processed by CEC.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第12期3747-3754,共8页 中国有色金属学报(英文版)
基金 Projects(50674067,51074106,51374145)supported by the National Natural Science Foundation of China Project(09JC1408200)supported by the Science and Technology Commission of Shanghai Municipality,China Project(2011BAE22B01-5)supported by the National Key Technology R&D Program of China Projects(182000/S10,192450/I30)supported by the Research Council of Norway
关键词 镁合金 晶粒细化 连续动态再结晶 电子背散射技术 往复挤压 magnesium alloys grain refinement continuous dynamic recrystallization (CDRX) electron backscattering diffraction(EBSD) cyclic extrusion compression (CEC)
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