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纳米复合Al-Sn合金烧结中的组织和硬度变化 被引量:4

Variation of microstructure and hardness of nanocomposite Al-Sn alloy during sintering
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摘要 利用机械合金化制备纳米复合Al-Sn合金粉末,将其压制成型并烧结。运用X射线衍射仪、扫描电镜分析了纳米复合Al-Sn合金在烧结过程中的组织结构变化,测定了显微硬度。结果表明,随着烧结温度的升高,机械合金化制备的Al-Sn纳米复合结构长大。当烧结温度低于Al-Sn共晶温度时,Sn相分布均匀;当烧结温度超过Al-Sn共晶温度时,Sn相沿着粉末颗粒的周围呈网状分布,网状形态取决于球磨后的粉末颗粒尺寸。纳米复合Al-Sn合金的显微硬度随烧结温度的提高而降低,与传统的铸造方法相比,机械合金化方法显著强化了Al-Sn合金。 Al-Sn alloy nanocomposite powder was prepared by mechanical alloying.The variation of microstructure and hardness of as milled Al-Sn alloy during sintering were studied by X-ray diffraction,scanning electron microscopy and microhardness tester.The results show that the nanoscale and uniform Sn particles distributed homogeneously in the Al matrix for the as milled sample.The Sn phase grows gradually with increase of sintering temperature.The Sn phase distributes as dispersed particles inside Al matrix and net along boundary of milled powders when it is sintered at temperature lower and higher than eutectic temperature respectively.The network distribution of Sn phase is determined by the particle size of as-milled powder mixtures.The microhardness of nanocomposite Al-Sn alloy decreases with increase of sintering temperature.Comparing to other preparing method,mechanical alloying has evident effect on strengthening Al-Sn bearing alloy.
出处 《金属热处理》 CAS CSCD 北大核心 2009年第3期27-31,共5页 Heat Treatment of Metals
基金 2006年广东省自然科学基金团队项目
关键词 机械合金化 纳米复合Al-Sn合金 烧结温度 mechanical alloying(MA) nanocomposite Al-Sn alloy sintering temperature
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参考文献12

  • 1Lepper K, James M, Chashechkina J, et al. Sliding behavior of selected aluminum alloys [ J]. Wear, 1997,203-204:46-56. 被引量:1
  • 2Stuczynski T. Metallurgical problems associated with the production of aluminium-tin alloys [ J ]. Materials and Design, 1997,18 ( 4-6 ) : 369- 372. 被引量:1
  • 3Pathak J P, Mohan S. Tribological behaviour of conventional Al-Sn and equivalent Al-Pb alloys under lubrication [ J ]. Bulletin of Materials Science,2003,26 ( 3 ) :315-320. 被引量:1
  • 4Kim W T, Zhang D L, Cantor B. Microstructure of rapidly solidified aluminium-based immiscible alloys [ J ]. Materials Science and Engineering, 1991 ,A134 : 1133-1138. 被引量:1
  • 5Bangert H, Eisenmenger-Sittner C, Bergauer A. Deposition and structural properties of two-component metal coatings for tribological applications [J]. Surface and Coatings Technology, 1996,80( 1-2 ) : 162-170. 被引量:1
  • 6Noskova N I, Vil'danova N F, Filippov Y I, et al. Preparation, deformation,and failure of functional Al-Sn and Al-Sn-Pb nanocrystalline alloys [J]. Physics of Metals and Metallography,2006,102(6) :646-651. 被引量:1
  • 7Dixon C F, Skelly H M. Properties of aliminium-tin alloys produced by powder metallurgy [J]. Powder Metallurgy, 1973,16 (32) :366-373. 被引量:1
  • 8张先胜,冉广.机械合金化的反应机制研究进展[J].金属热处理,2003,28(6):28-32. 被引量:46
  • 9Zhu M,Gao Y,CHung C Y,et al. Improvement of the wear behaviour of Al-Pb alloys by mechanical alloying [J]. Wear,2000,242( 1 ) :47-53. 被引量:1
  • 10Langford J I. A rapid method for analyzing the breadths of diffraction and spectral lines using the Vogit function [ J ]. Journal of Applied Crystallography, 1978, 11 : 10-14. 被引量:1

二级参考文献36

  • 1王景唐,沈同德.机械合金化研究与进展[J].物理,1993,22(8):456-460. 被引量:17
  • 2Benjamin J S. Dispersion strengthened superalloys by mechanical alloying[ J ]. Metallurgical transactions, 1970,8 ( 1 ) : 2934-2940. 被引量:1
  • 3Koch C C, Cavin O B, Mechamey C G. Preparation of amorphous Ni60Nb40 by mechanical alloying[J ]. Applied physics letters, 1983,43:1017-1019. 被引量:1
  • 4Xu J, Klassen U H. Formation of supersaturated solutions in the immiscible Ni-Ag system by mechanical alloying[ J ]. Journal of applied physics, 1996,79 (8) : 3935-3939. 被引量:1
  • 5Uenishi R, Kobayashi R, Naso S, et al. Mechanical alloying in the Fe-Cu system[J ]. Zeitschrift fur Metallkunde, 1992,83: 132-135. 被引量:1
  • 6Shingu P H, Ishihara K N. Non-equilibrium Materials by Mechanical Alloying[J]. Materials transactions,JIM, 1995,36(2) :96-101. 被引量:1
  • 7Koch C C. Intermetallic matrix composites prepared by mechanical alloying a review [ J ]. Materials science and engineering A,1998,244: 39-48. 被引量:1
  • 8Schaffer G B, et al. On the kinetics of mechanical alloying[J ]. Metallurgical transactions A, 1992,23:1285-1298. 被引量:1
  • 9Lu L, Lai M O. Formation of new materials in the solid state by mechanical alloying[J ]. Materials and Design, 1995,16 ( 1 ) :33-39. 被引量:1
  • 10Bhaduri A, Miodownik A P, et al. Processing and properties of SiC particulate reinforced A1-6.2Zn-2.5Mg- 1.7Cu alloy( 7010) matrix composites prepared by mechanical alloying[ J ]. Materials Scienceand Engineering A, 1996,221(1-2) :94-101. 被引量:1

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