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时效处理对AZ81镁合金组织与力学性能的影响 被引量:9

Influence of Aging Treatment on Microstructure and Mechanical Properties of AZ81 Alloy
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摘要 通过对挤压坯预成形AZ81镁合金进行模压成形及随后的时效处理,研究了形变及时效过程中显微组织及力学性能的变化规律。结果表明:时效温度对AZ81镁合金力学性能及显微组织的影响较大,随时效温度升高至200℃,第二相的析出速度加快,且析出相分布变得均匀,细小析出相呈弥散状态分布于晶界上;随时效时间的延长,β-Mg17Al12析出相逐渐增多,当时效温度为200℃、时效20h时,晶界大多被析出物所掩盖,晶粒内充满大量点针状析出相,合金显微组织的各向异性得以消除,成分较为均匀,进一步提高了模压成形镁合金的力学性能,经400℃模压成形及200℃×20h的时效处理后,其抗拉强度可达358.5MPa,屈服强度达到260.7MPa,伸长率为9.8%。 The change rules of microstructure and mechanical properties of AZ81 alloy during close-die hot-pressing of extruded preform and succedent aging were investigated. The results show that when the aging temperature goes to 200 ℃, the speed of second phase decomposition and precipitation goes up. The distribution of precipitated phase gets uniform, the precipitated phase distributes in grain boudary are in dispersed state; when aging time expanding, β-Mg17Al12 phase increases gradually; when aging at 200 ℃ for 20 h, the most and a majority of them are exiguous sheets, the component is uniform, it makes the mechanical properties of material getting best. Grain boundary is shielded by large quantity precipitate phases and grain inner distributes lots of spotted-niddle precipitate phases, but anisotropic property of AZ81 alloy are erased and its mechanical properties are improved. The tensile strength of AZ81 alloy by hot pressing forming at 400 ℃ and aging at 200 ℃ for 20 h is about 358.5 MPa, yield strength about 260.8 MPa, and elongation about 9.8%.
出处 《热加工工艺》 CSCD 北大核心 2010年第8期159-162,167,共5页 Hot Working Technology
基金 重庆市科技攻关项目(CSTC2007AA4008)
关键词 AZ81镁合金 模压成形 显微组织 力学性能 AZ81 alloy hot pressing forming microstructure mechanical properties
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参考文献9

  • 1刘子娟,刘楚明,周海涛,纪仁峰,张佳.热处理对挤压态AZ61合金力学性能和阻尼性能的影响[J].热加工工艺,2006,35(8):50-53. 被引量:10
  • 2Hidetoshi Somekawa,Hiroyuki Hosokawa,Hiroyuki Watanab.et al.Diffusion bonding in superplastic magnesium alloys[J].Materials Science and Engineering,2003,A339:328-333.
  • 3Margam Chandrasekaran,Yong Ming.Shyan John[J].Scienceand Enginecring,2004,A381:308.
  • 4宋孚群,张青来,徐永超,张坤,张士宏,王忠堂.变形镁合金晶粒细化及热处理后的组织和性能[J].金属成形工艺,2004,22(3):46-49. 被引量:14
  • 5Nakanish M,Mabuchi M,Saito N,et al.Fracture analysis and cechanicai property of AZ91D magnesium alloy chips prepared by solid state recycling[J].Journal of Materials Science Letters,1998,17:2003.
  • 6http://hi.baidu.com/liaochengdaxue/blog/item/a61d147365cob 4168601b074.html.
  • 7Duly D.Simon J P,Brechet Y.On the competition between continuous and discontinuous precipitation in binary Mg-Al alloys[J].Acta.Metall.Mater.,1995,43:101.
  • 8Ceiotto S,Bastow T J.Study of precipitation in aged binary mg-ai and ternary mg-al-zn alloys using 27-Al NMR spectroscopy[J].Acta.Mater.,2001,49(1):41-51.
  • 9王智祥,谢建新,刘雪峰,李静媛,张丁非,潘复生.形变及时效对AZ91镁合金组织和力学性能的影响[J].金属学报,2007,43(9):920-924. 被引量:11

二级参考文献36

  • 1曾小勤,丁文江,姚正裔,彭立明,卢晨.Mg-Zn-Al系合金组织和力学性能[J].上海交通大学学报,2005,39(1):46-51. 被引量:39
  • 2于宝义,包春玲,宋鸿武,乔日金,刘正,于海朋.AZ91D镁合金挤压成形管材的组织性能研究[J].热加工工艺,2005,34(8):30-32. 被引量:10
  • 3金军兵,王智祥,刘雪峰,谢建新.均匀化处理对AZ91镁合金组织和力学性能的影响[J].金属学报,2006,42(10):1014-1018. 被引量:52
  • 4田莳.金属物理性能[M].北京,1993.98.
  • 5T Mukai, H Watanabe, K Higashi. Application of superplasticity in commercial magnesium alloy for fabrication of structural components[J]. Material Science and Technology, 2000, 16(11 - 12): 1314 - 1319.
  • 6Shyong Lee, Yung-Hung Chen, Jian-Yih Wang. Isothermal sheet formability of magnesium alloy AZ31 and AZ61[J].Journal of Material Processing Technology. 124(2002) :19 -24.
  • 7E. Doege, K. Droder. Procrssing of magnesium sheet metals by deep drawing and stretch forming[J]. Mat. Tech.,1997(7-8):19 -23.
  • 8Tozawa Y. Deep drawing of magnesium alloy sheets[J].J. Japan Inst. light. Metals, 2001,51 (10) :492 -497.
  • 9M Mabuchi, Iwahashi H, Yanase K,et al. Low temperature superplasticity in an AZ91 magnesium alloy processed by ECAE[J]. Scripta Mater, 1997,36 (6):681-686.
  • 10Mukai T, Watanabe H, Higashi K. Grain refinement of cast Mg-AI alloys for high-astrain-rate-superplastic forming[J]. Materials Science Forum, 2000(350-351):159 - 170.

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