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Microstructure evolution of an Mg-Zn-Nd-Zr magnesium alloy during recrystallization and partial remelting process 被引量:4

Microstructure evolution of an Mg-Zn-Nd-Zr magnesium alloy during recrystallization and partial remelting process
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摘要 To obtain a spheroidal microstructure of a semi-solid Mg-Zn-Nd-Zr alloy,which is favorable for the subsequent thixocasting process,the recrystallization and partial remelting(RAP)method was used in this study,and the microstructure evolution of the alloy and the mechanism of the shape factor change during the RAP process were invesigated.The as-cast Mg-Zn-Nd-Zr alloy was prepared in a metal mold and then extruded into bars with an extrusion ratio of 16:1.Partial remelting was carried out on the extruded samples at 589℃(at a heating rate of 0.5℃·s-1)for different holding times ranging from 0 to 90 min.To examine the effect of heating rate,partial remelting of samples at the heating rate of 2℃·s-1was also performed.Results show that the extruded microstructure rapidly evolutes into recrystallized grains in the semi-solid state;the liquid f ilm initially forms at grain boundaries during the partial remelting,and then gradually changes from continuous into discontinuous state with the increase of holding time;this results in the agglomeration of adjacent grains and the decrease in shape factor.The value of shape factor increases continuously with holding time at f irst and reaches the maximum 0.62 when holding for 60 min,while decreases rapidly after a prolonged holding time.Moreover,local melting,mainly due to the inhomogeneous deformation during extrusion,becomes more signif icant and less uniformly distributed at a relatively higher reheating rate.The Mg-Zn-Nd-Zr magnesium alloy components have been thixo-cast successfully using the RAP method,which strongly proves the feasibility of RAP process in Mg-Zn-Nd-Zr alloy. To obtain a spheroidal microstructure of a semi-solid Mg-Zn-Nd-Zr alloy, which is favorable for the subsequent thixocasting process, the recrystallization and partial remelting (RAP) method was used in this study, and the microstructure evolution of the alloy and the mechanism of the shape factor change during the RAP process were invesigated. The as-cast Mg-Zn-Nd-Zr alloy was prepared in a metal mold and then extruded into bars with an extrusion ratio of 16:1. Partial remelting was carried out on the extruded samples at 589 ℃ (at a heating rate of 0.5 ℃ .s1) for different holding times ranging from 0 to 90 min. To examine the effect of heating rate, partial remelting of samples at the heating rate of 2 ℃.s1 was also performed. Results show that the extruded microstructure rapidly evolutes into recrystallized grains in the semi-solid state; the liquid film initially forms at grain boundaries during the partial remelting, and then gradually changes from continuous into discontinuous state with the increase of holding time; this results in the agglomeration of adjacent grains and the decrease in shape factor. The value of shape factor increases continuously with holding time at first and reaches the maximum 0.62 when holding for 60 min, while decreases rapidly after a prolonged holding time. Moreover, local melting, mainly due to the inhomogeneous deformation during extrusion, becomes more significant and less uniformly distributed at a relatively higher reheating rate. The Mg-Zn-Nd-Zr magnesium alloy components have been thixo-cast successfully using the RAP method, which strongly proves the feasibility of RAP process in Mg-Zn-Nd-Zr alloy.
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出处 《China Foundry》 SCIE CAS 2013年第4期244-247,共4页 中国铸造(英文版)
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参考文献7

  • 1Atkinson H V. Modelling the semi-solid processing of metallic alloys. Progress Material Science, 2005, 50: 346-352.
  • 2Chen Qiang, Zhao Zude, Zhao Zhixiang, et al. Microstructure development and thixoextrusion of magnesium alloy prepared by repetitive upsetting-extrusion. Journal of Alloys and Compounds, 2011, 509: 7303-7315.
  • 3Zhao Zude, Chen Qiang, Tang Zejun, Hu Chuankai. Microstructural evolution and tensile mechanical properties of AM60B magnesium alloy prepared by the SIMA route. Journal of Alloys and Compounds, 2010, 497: 402-411.
  • 4Zhao Zude, Chen Qiang, Wang Yanbin, Shu Dayu. Effect of predeformation on semi-solid microstructure of ZK60+RE magnesium alloy. Transaction of Nonferrous Metals Society of China, 2009,19: 535-539.
  • 5Chen Qiang, Zhao Zhixiang, Shu Dayu, Zhao Zude. Microstructure and mechanical properties of AZ91 D magnesium alloy prepared by compound extrusion. Materials Science and Engineering A, 2011, 528: 3930-3934.
  • 6Chen Qiang, Yuan Baoguo, zhao Gaozhan. Microstructural evolution during reheating and tensile mechanical properties of thixoforged AZ91 D-RE magnesium alloy prepared by squeeze casting-solid extrusion. Materials Science and Engineering A, 2012,537: 25-38.
  • 7Luo Shoujing, Chen Qiang, Zhao Zude. An investigation of microstructure evolution of RAP processed ZK60 magnesium alloy. Materials Science Engineering A, 2009, 501: 146-152.

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