期刊文献+

Sr和Sb变质AZ61-0.7Si合金的铸态组织和力学性能 被引量:18

As-Cast Microstructure and Mechanical Properties of Sr and Sb Modified AZ61-0.7Si Magnesium Alloy
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摘要 Mg2Si相的变质和细化被认为是改善含Si镁合金力学性能的关键因素之一。研究了Sr和Sb变质AZ61-0.7Si镁合金的铸态组织和力学性能。研究结果表明:添加0.4%(质量分数)Sb对AZ61-0.7Si镁合金中的汉字状Mg2Si相有一定细化作用,但没有明显变质效果。相反,添加微量Sr对AZ61-0.7Si合金中的汉字状Mg2Si相有明显变质和细化作用。在AZ61-0.7Si合金中添加0.03%~0.09%Sr(质量分数)后,合金中的Mg2Si相从粗大汉字状形貌变为细小的颗粒状和/或多边形状。相应地,合金的抗拉性能和蠕变性能得到显著提高。 The modification and refinement of Mg2Si phase is thought as one of the key aspects to improve the mechanical properties of Si-containing magnesium alloys. The paper investigates the as-cast microstructure and mechanical properties of Sr and Sb modified AZ61-0.7Si magnesium alloy. The results indicate that adding 0.4wt%Sb can result in the relative refinement of Chinese-script-shaped Mg2Si phases in the AZ61-0.7Si alloy, but the modification is not obvious. However, adding small amounts of Sr can obviously modify and refine the Chinese-script-shaped Mg2Si phases in the alloy. After added 0.03wt%-0.09wt% Sr, the morphology of the Mg2Si phases in the alloy changes from the coarse Chinese script shape to fine granule and/or irregular polygonal shapes. Accordingly, the tensile and creep properties of the alloy are greatly improved.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2008年第10期1737-1741,共5页 Rare Metal Materials and Engineering
基金 国家杰出青年基金资助项目(50725413) 重庆市科技攻关项目(2006AA4012-9-6)
关键词 镁合金 AZ61—0.7Si合金 Sr元素 Sb元素 MG2SI相 magnesium alloy AZ61-0.7Si alloy Sr element Sb element Mg2Si phase
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参考文献11

  • 1Yuan G Y, Liu Z L, Wang Q D et al. Mater Letters[J], 2002, 56:53
  • 2Kim J J, Kim D H, Shin K Set al. Scripta Mater[J], 1999, 41: 333.
  • 3Quimby P D, Lu S Z, Plichta R et al. In: Luo A eds. Magnesium Technology[C]. USA: TMS, 2006:535
  • 4Tang B, Li S S, Wang X Set al. J Mater Sci[J], 2005, 40: 2931
  • 5Lu L, Dahle A K. Mater Sci EngA [J], 2006, 435-436:288
  • 6Srinivasan A, Pillai U T S, Swaminathan J. J Mater Sci[J], 2006, 41:6087
  • 7Song D H, Lee C W, Nam K Yet al. Mater Sci Forum[J], 2007, 539-543:1784
  • 8Zhao P, Wang Q D, Zai C Q et al. Mater Sci Eng A[J], 2007, 444:318
  • 9刘生发,王慧源.Sr对AZ91镁合金铸态组织的影响及其细化机制[J].稀有金属材料与工程,2006,35(6):970-973. 被引量:35
  • 10Nam K Y, Song D H, Lee C Wet al. Mater Sci Forum[J], 2006, 510-511:238

二级参考文献10

  • 1Mordike B L,Ebert T.Mater Sci Eng[J],2001,A302:37
  • 2Josrph C,Benedy K.Light MetalAge[J],2001,8:103
  • 3Magers M D.Light MetalAge[J],1996,5:60
  • 4Josrph C,Benedy K.Light MetalAge[J],2001,6:62
  • 5Aliravci C A,Gruzleski J E,Dimaylga F C.AFS Trans[J],1992,115:353
  • 6Liu Zheng,Chen Lihe,Zhao Huijie et al.Metall[J],2000,54(3):122
  • 7Pettersen K,Lonhne O,Ryum N.Metall Trans A[J],1990,21A(1):221
  • 8Lee Sunghak,Lee Seung,Kim D H.Metall Mater Trans A[J],1998,29A(4):1221
  • 9Eivind O,Geir B F,Rosenqvist T et al.Scand J Metall[J],1998,27:133
  • 10Lee Y C,Dahle A K,Stjohn D H.Metall Mater Trans A[J],2000,31:2895

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