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SIMA法处理AZ91D镁合金压缩形变及半固态等温组织的特征 被引量:17

Characterization of deformation and semi-solid isothermal microstructures of AZ91D alloy for upsetting in SIMA process
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摘要 研究了AZ91D镁合金在应变诱发熔化激活法处理过程中形变率和形变温度对组织的影响。结果表明:形变温度为280℃时,随着形变率增加,部分枝晶臂逐渐伸长,枝晶破断现象加剧;形变率为20%时,随着形变温度的提高,组织的形变方式逐渐由以枝晶断裂为主转变为带有方向性的弯曲。AZ91D合金在580℃等温10min所获得的半固态组织,随着形变率增加,球状晶粒尺寸减小,圆整度提高;随形变温度的提高,固相颗粒的偏聚现象减轻。 The influences of strain and temperature on microstructure of AZ91D alloy for upsetting in the strain-induced melt activation process were investigated. The results indicate that with increasing the strain at 280 ℃, the dendrite arms of AZ91D alloy get broken or stretched-out. With increasing the predeformation temperature under 20% strain, the deformation style of the dendritic structure of AZ91D alloy changes gradually from fragmentation to directional bending. After held at 580 ℃ for 10 min , the greater the strain, the finer and rounder the size of the globular grains of AZ91D alloy. And in the mean time, the higher the isothermal temperature, the less the agglomeration of solid particles.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2004年第4期660-664,共5页 The Chinese Journal of Nonferrous Metals
基金 陕西省教育厅产业化培育项目(02JC33)
关键词 应变诱发熔化激活法 镁合金 压缩形变 半固态组织 SIMA法 strain-induced melt activation magnesium alloy upsetting semi-solid microstructure
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参考文献13

  • 1Choi J C, Park H J. Microstructural characteristics of aluminum 2024 by cold working in the SIMA process[J]. Journal of Materials Processing Technology, 1998, 82: 107-116.
  • 2Flemings M C. Behavior of metal alloys in the semisolid state[J]. Metall Mater Trans A, 1991, 22A: 957-980.
  • 3Charles V. Elaboration of semisolid alloys by means of new electron-magnetic rheocasting process[J]. Metall Mater Trans B, 1992, 23B: 189-205.
  • 4Kojima Y, Aizawa T, Kamado S. Magnesium Alloys 2000[M]. Switzerland: Trans Tech Publications Ltd, 2000.
  • 5Decker R F. The renaissance in magnesium[J]. Advanced Mater & Proc, 1998, 154(9): 31-35.
  • 6陈体军,郝远.金属的半固态成形技术与应用[J].铸造,2001,50(11):645-649. 被引量:27
  • 7陈体军,郝远,陆松,许广济.ZA27合金在SIMA处理过程中形变量和等温温度对组织的影响[J].金属热处理学报,2000,21(1):26-31. 被引量:37
  • 8杨红亮,张质良,I.Ohnaka,H.Yasuda,A.Sugiyama,T.Ohmichi.ZL101合金半固态二次加热[J].中国有色金属学报,2003,13(3):626-630. 被引量:10
  • 9杨红亮 张质良.半固态金属制备技术[J].中国有色金属学报,2002,(2):126-131.
  • 10田文彤,罗守靖,张广安.半固态LC_4合金的屈服应力[J].中国有色金属学报,2002,12(1):82-86. 被引量:7

二级参考文献74

  • 1黄良余.铝硅合金变质机理的新发展和新观点(上)[J].特种铸造及有色合金,1995,15(4):30-32. 被引量:46
  • 2朱鸣芳,苏华钦.ZA12颗粒组织的形成及枝晶形态的演变[J].东南大学学报(自然科学版),1996,26(2):1-6. 被引量:14
  • 3曹富荣,崔建忠,雷方,乐启炽.超轻镁合金的研究历史与发展现状[J].材料工程,1996,24(9):3-5. 被引量:27
  • 4[2]Kapranos P, Ward P J, Atkinson H V, et al. Near net shaping by semi-solid metal processing [J]. Materials and Design, 2000, 21: 387-394. 1-12.
  • 5[9]Dantzig J A, Midson S P. Billet heating for semi-solid forming [A]. Brown S B, Flemings M C. Proc 2nd Int Conference on Semi-Solid Processing of Alloys and Composites [C]. Warrendale, PA: TMS, 1993: 105-118.
  • 6[10]Choi J C, Park H J. The influence of induction heating on the microstructure of A356 for semi-solid forging [J]. Journal of Materials Processing Technology, 1999, 87: 46-52.
  • 7[11]Jung H K, Kang C G. An induction heating process with coil design and solutions avoiding coarsening phenomena of Al-6%Si-3%Cu-0.3%Mg(mass fraction) alloy for thixoforming [J]. Metall Mater Trans A, 1999, 30A: 2967-2977.
  • 8[12]Jung H K, Kang C G. Reheating process of cast and wrought aluminum alloys for thixoforging and their globularization mechanism [J]. Journal of Materials Processing Technology, 2000, 104: 244-253.
  • 9Lu L, Froyen L. Mechanically alloyed high strength Mg5Al10.3Ti4.7B alloy[J]. Script Mater, 1999, 40(10): 1117- 1122.
  • 10Eliezer D, Aghion E, Froes F H. The science and technique of magnesium alloy[J]. Advan Perfor Mater, 1998, (5): 201-203.

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