欢迎登录材料期刊网

材料期刊网

高级检索

采用溶胶喷雾干燥-煅烧-氢热还原法制备了BET粒径为0.21 μm的超细纯钨粉末,并利用球磨处理进一步活化粉末.研究了超细纯钨粉末形貌及其性能随球磨时间的变化特征,探索了未球磨、球磨5h及球磨10h3种超细纯钨粉末烧结致密工艺,此外还详细研究了纯钨烧结体组织形貌、晶粒尺寸及显微硬度等性能随烧结温度及球磨时间的变化规律.结果表明,球磨处理对超细纯钨粉末的烧结起到了极大的活化作用,由球磨10h粉末制成的压块在1900℃下烧结2h其致密度即可达97.3%,比传统微米级纯钨粉末制成的压块达到相同烧结致密度的温度降低了600℃以上.同时,球磨处理可以大幅降低钨粉的起始烧结温度和再结晶温度,获得组织更加均匀细小、力学性能(硬度)更加优良的钨烧结体.

参考文献

[1] Staab T.E.M.;Vetter B.;Kieback B.;Lange G.;Klimanek P.;Krause-Rehberg R. .Influence of microstructure on the sintering process in crystalline metal powders investigated by positron lifetime spectroscopy: II. Tungsten powders with different powder-particle sizes[J].Journal of Physics. Condensed Matter,1999(7):1787-1806.
[2] Malewar R .[J].Journal of Materials Research,2007,22(05):1200.
[3] Lin T;Zhao F;Zhang L Y et al.[J].Journal of University of Science and Technology Beijing,2005,12(03):277.
[4] Sastry K Y;Froyen L;Vleugels J et al.[J].Reviews on Advanced Materials Science,2004,8:34.
[5] Grahle P;Arzt E .[J].Acta Materialia,1997,45(01):201.
[6] Zhang L;Ukai S;Hoshino T et al.[J].Acta Materialia,2009,57(12):3671.
[7] Prabhu G;Chakraborty A;Sarma B .[J].International Journal of Refractory Metals and Hard Materials,2009,27:545.
[8] Wang H T;Fang Z Z;Hwang K S et al.[J].International Journal of Refractory Metals and Hard Materials,2010,28:312.
[9] German R M.Sintering Theory and Practice[M].New York:John Wiley and Sons,Inc,1996:153.
[10] Vasilos T;Smith J T .[J].Journal of Applied Physics,1964,35:215.
[11] Ryu T;Hwang K S;Choi Y J et al.[J].International Journal of Refractory Metals and Hard Materials,2009,27:701.
[12] Majumdar S;Raveendra S;Samajdar I et al.[J].Acta Materialia,2009,57:4158.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%