期刊文献+

细粒钼粉低温连续烧结工艺研究 被引量:3

RESEARCH ON THE LOW-TEMPERATURE AND SUCCESSIVE SINTERING PROCESS OF FINE MOLYBDENUM POWDER
下载PDF
导出
摘要 研究了细颗粒钼粉的低温连续烧结工艺可行性,所制备钼坯的品质、压力加工性能及轧制成0.5 mm厚钼薄板的力学性能。研究结果表明:针对费氏粒度小于2.0μm的钼粉,利用低温连续烧结工艺可实现钼坯的烧结进程,钼坯烧结密度高、晶粒细小均匀,轧制获得的0.5 mm厚钼薄板的力学性能与对比样品相当。 The practicability of fine molybdenum powder low-temperature and successive sintering process and the qualities of molybdenum billets and mechanical properties of 0. 5 mm thickness molybdenum sheet rolled by the bil-lets were studied in this paper. The results show that molybdenum sintering proceeding can be achieved by the low- temperature and successive sintering process when the molybdenum powder size lower than 2.0 μm. The density of the sintered molybdenum billets is high, the grain size is fine and uniform. The mechanical properties of 0. 5 mm thickness molybdenum sheet rolled by the billets is close to the contrast sample.
出处 《中国钼业》 2017年第2期52-55,共4页 China Molybdenum Industry
关键词 低温连续 烧结 力学性能 molybdenum low-temperature and successive sintering mechanical properties
  • 相关文献

参考文献5

二级参考文献26

  • 1[6]Penn State develops ultrafine powder production process[J].Metal Powder Report,1998,53(1):7.
  • 2[7]Fred Tepper,Electro-explosion of wire produces nanosize metals[J].Metal Powder Report,1998,53(6):31-33.
  • 3[8]Mechanochemical processing route promises cheaper nanopowders[J].Metal Powder Report,1996,51(9):5.
  • 4[9]Ultrasound creates highly magnetic metal powders[J].Metal Powder Report,1997,52(3):4.
  • 5[10]Bhanu Chelluri et al.,Magnetic compaction process nears market[J].Metal Powder Report,2000,55(2):22-25.
  • 6[11]Paul Skoglund,HVC punches PM to new mass production limits[J].Metal Powder Report,2002,57(9):26-30.
  • 7[12]Ancordense offers high density at low cost[J].Metal Powder Report,1994,49(6):2.
  • 8[13]Powder Metallurgy World Congress & Exhibition[C].Granada,Spain,1998.
  • 9[14]PM"cold forming"process eliminates sintering[J].Metal Powder Report,1996,51(7/8):5.
  • 10[15]Joanna Groza,Field activation provides improved sintering[J].Metal Powder Report,2000,55(7/8):16-18.

共引文献85

同被引文献21

引证文献3

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部