期刊文献+

NEW DEVELOPMENTS IN WROUGHT 718-TYPE SUPERALLOYS 被引量:12

NEW DEVELOPMENTS IN WROUGHT 718-TYPE SUPERALLOYS
在线阅读 下载PDF
导出
摘要 Research and development efforts are still very active on 718-type alloys although two major members of this widely used family, 718 and 625, were invented almost a half-century ago. Emphasis in this type of work at ATI Allvac is directed at improving existing alloys and developing new alloys to meet ever-increasing industrial demands. The improvement of existing alloys is exemplified by addition of minor elements P and B in alloy 718. The discovery of the beneficial effect of P and B in wrought alloy 718 led to development of a new, modified alloy, AllvacH 718 ERR. A large effort has also been directed at studying the effects of major element modifications in 718-type alloys, and a new alloy, AllvacR 718PlusTM, has been developed. The new alloy has much better high temperature capability, especially thermal stability, approaching the level of Waspaloy but retains excellent processing characteristics, similar to alloy 718. Alloy 718PlusTM should be useful in any 718-type application requiring a higher working temperature. The properties and processing of this alloy are introduced in this paper. Research and development efforts are still very active on 718-type alloys although two major members of this widely used family, 718 and 625, were invented almost a half-century ago. Emphasis in this type of work at ATI Allvac is directed at improving existing alloys and developing new alloys to meet ever-increasing industrial demands. The improvement of existing alloys is exemplified by addition of minor elements P and B in alloy 718. The discovery of the beneficial effect of P and B in wrought alloy 718 led to development of a new, modified alloy, AllvacH 718 ERR. A large effort has also been directed at studying the effects of major element modifications in 718-type alloys, and a new alloy, AllvacR 718PlusTM, has been developed. The new alloy has much better high temperature capability, especially thermal stability, approaching the level of Waspaloy but retains excellent processing characteristics, similar to alloy 718. Alloy 718PlusTM should be useful in any 718-type application requiring a higher working temperature. The properties and processing of this alloy are introduced in this paper.
作者 R.L. Kennedy
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2005年第1期39-46,共8页 金属学报(英文版)
关键词 718 718 ER 718Plus WASPALOY Al-Ti effect 718, 718 ER, 718Plus, Waspaloy, Al-Ti effect
  • 相关文献

参考文献21

  • 1H.L. Eiselstein, US Patent 3 046 108 (July 24, 1962).
  • 2H.L. Eiselstein, US Patent 3 160 500 (December 8, 1964).
  • 3Y. Zhu, S. Zhang, T. Zhang, J. Zhang, Z. Hu, X. Xie and C. Shi, in Superalloys 1992, eds. S.D. Antolovich, R.W.Stusrud, R.A. MacKay, D.L. Anton, T. Khan, R.D. Kissinger and D.L. Klarstrom (TMS, Warrendale, PA, 1992) p.145.
  • 4W.D. Cao and R.L. Kennedy, in Superalloys 718, 625 and Various Derivatives, ed. E.A. Loria (TMS, Warrendale,PA, 1994) p.463.
  • 5W.D. Cao and R.L. Kennedy, in Superalloys 1996, eds. R.D. Kissinger, D.J. Deye, D.L. Anton, A.D. Cetel, M.V.Nathal, T.M. Pollock and D.A. Woodford (TMS, Warrendale, PA, 1996) p.589.
  • 6X. Xie, X. Liu, Y. Hu, B. Tang, Z. Xu, J. Dong, K. Ni, Y. Zhu, S. Tien, L. Zhang and W. Xie, in Superalloys 1996,eds. R.D. Kissinger, D.J. Deye, D.L. Anton, A.D. Cetel, M.V. Nathal, T.M. Pollock and D.A. Woodford (TMS,Warrendale, PA, 1996) p.599.
  • 7W. Sun, S. Guo, D. Lu and Z. Hu, Metall. Trans. A 28A (1997) 649.
  • 8R.L. Kennedy and W.D. Cao, US Patent 6 605 164 B2 (August 12, 2003).
  • 9W.D. Cao and R.L. Kennedy, in Superalloys 2000, eds. T. Pollock, R. Kissinger, R. Bowman, K. Green, M.McLean, S. Olson and J. Schirra (TMS, Warrendale, PA, 2000) p. 101.
  • 10J.P. Collier, A.O. Selius and J.K. Tien, in Superalloys 1988, eds. D.N. Duhl, G. Maurer, S. Antolovich, C. Lund and S. Reichman (TMS, Warrendale, PA, 1988) p.43.

同被引文献71

引证文献12

二级引证文献80

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