航空学报 > 1994, Vol. 15 Issue (6): 696-701

快速凝固Al-Li-Mg-Cu-Zr合金粉末除气过程中的表面反应

戴圣龙, 于桂复, 颜鸣皋   

  1. 北京航空材料研究所25室,北京,100095
  • 收稿日期:1992-04-19 修回日期:1993-05-11 出版日期:1994-06-25 发布日期:1994-06-25

SURFACE REACTION DURING DEGASSING OF RAPIDLY SOLIDIFIED AL-Li-Mg-Cu-Zr POWDERS

Dai Shenglong, Yu Guifu, Yan Minggao   

  1. Institute of Aeronautical Materials, Beijing,100095
  • Received:1992-04-19 Revised:1993-05-11 Online:1994-06-25 Published:1994-06-25

摘要: 研究了未除气及350℃/2h,450℃/2h,500℃/2h除气快速凝固(RS)Al-Li-Mg-Cu-Zr合金粉末表面结构及氧化层厚度和组成,探讨了除气过程中粉末表面的化学反应。结果表明,通常不含Li的铝合金粉末除气工艺对RSAl-Li合金的效果不明显。

关键词: 固化, 粉末冶金, 铝锂合金, 表面稳定性, 除气

Abstract: Powders of the Al-3.2Li-1.1Mg-0.3Cu-0. 2Zr alloy were produce by USGA(Ultra Sonic Gas Atomization) with Ar gas. Powders of 50-56μm size were degassed at 350℃(lower temp.).450℃(intermediate temp.)and 500℃(elevated temp. )in vacuum(10(-3)Pa)for 2h.The surface feaction product, formed during atomization and degassing were studied using ESCA(Electron Spectroscopy fof Chemical Analysis)quantitatively. The as-received powder particles exhibit an outer hydrocarbon layer,a surface hydrousoxider layer and an oxide laver.The oxide layer is 97A thick,consisting of Al2O3, Li2O and MgO(mole ratio is Al(3+) Li(+) : Mg(2+)=1:0. 86: 0. 09).When degassing at lower temperature(350℃),the hydrocarbon and dydroxides are e-vaporated and dehydrated partly, but of them the Li2O· H2O can not be decomposed; at the sametime,the lithium is oxidized continously,making the thickness of oxide layer increase to 130A(Al(3+): Li(+):Mg(2+)=1:3. 06 : 0. 09 ).When degassing at intermediate temprature(450℃), the hydrocarbon can be decomposed to the limit,Li2O· H2O dehydrates completely but the metallie aluminum and Li2O,at the same time,be oxidized continuously also,which results in a thicker oxide layer 108A(Al(3+): Li(+): Mg(2+)=1:3.42:0.11).When degassing at elevated temperature(500℃) in addition to the reactions of degassing of 450℃,there are some complicat-ed reactions takirtg place;the thickness of oxide film adds up to 119A(Al(3+):N(+):Mg(2+)=1:4. 72:0.15).

Key words: solidification, powder metallurgy, aluminiun-lithium alloys, surface stability alloys

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