期刊文献+

纯钛和镍包埋渗铝的热力学研究(英文) 被引量:4

Thermodynamic study on pack aluminizing systems of pure titanium and nickel
在线阅读 下载PDF
导出
摘要 分别在敞开和密闭系统中进行纯钛和纯镍的气相渗铝实验。渗铝实验在1100℃下进行3h,包埋粉末含10%Al、5%NH4Cl和85%Al2O3。在敞开条件下,渗铝后纯钛的表面会生成α(Al)固溶体,样品的质量损失达到32.37%。然而,在密闭条件下,纯钛样品的表面生成TiAl3层和α(Al)固溶体,没有质量损失。热力学分析表明,在敞开条件下对纯钛渗铝时,会生成钛的氯化物,导致其质量减少。而在密闭条件下,由于生成的氯化物会达到平衡状态而使生成反应停止。相反,无论是在敞开或密闭条件下,纯镍样品都可以进行表面渗铝,不会导致质量损失。在两种状态下,镍的表面都生成了AlNi和Ni3Al相。 Gas aluminizing of pure titanium and nickel samples was carried out in open and closed systems. All the samples were aluminized at 1100 °C for 3 h using pack containing 10%Al+5%NH4Cl+85%Al2O3. Although an α solid solution of Al in Ti was formed on the surface of titanium samples treated in the open set-up, but the samples experienced a mass loss of 32.37%. However, the results of titanium samples treated in the closed set-up showed that a TiAl3 layer and some α solid solution were formed on the surface of these samples without any reduction in mass. Thermodynamic analysis demonstrated that the mass loss of treated titanium samples in the open set-up is due to the continuous formation of titanium chlorides during aluminizing process. Nevertheless, running the experiments in the closed system indicated that the corrosion of titanium samples vanished due to attaining the equilibrium condition. On the contrary, it was observed that nickel samples can be successfully pack aluminized without any mass loss in both open and closed systems. The presence of NiAl and Ni3Al phases on the surface of treated nickel samples was confirmed by XRD and EPMA results in both set-ups.
出处 《中国有色金属学会会刊:英文版》 EI CSCD 2013年第6期1838-1846,共9页 Transactions of Nonferrous Metals Society of China
关键词 包埋渗铝反应 热力学 气相渗铝 pack aluminizing reactions titanium nickel thermodynamics gas aluminizing
  • 相关文献

参考文献16

  • 1Z. G. Zhang,X. Teng,Y. L. Mao,C. X. Cao,S. J. Wang,L. Wang.Improvement of Oxidation Resistance of γ-TiAl at 900 and 1000 °C Through Hot-dip Aluminizing[J]. Oxidation of Metals . 2010 (3-4)
  • 2Goral M,Swadzba L,Moskal G, et al.Diffusion Aluminide Coatings for TiAl Intermetallic Turbine Blades. Intermetallics . 2011
  • 3H. Garbaca.,P. Wiecinski.,B. Adamczyk-Cieslak.et al.Studies of aluminium coatings deposited by vacuum evaporation and magnetron sputtering. Journal of Microscopy . 2010
  • 4A.S. Ramos and M.T. Vieira.Kinetics of the thin films transformation Ti/Al multilayer→γ-TiAl. Surface and Coatings Technology . 2005
  • 5Cammarota G P,Casagrande A,Sambogna G.Effect of Ni,Si and Cr in the structural formation of diffusion aluminide coatings on commercial-purity titanium. Surface and Coatings Technology . 2006
  • 6A. Squillace R. Bonetti N. J. Archer and J. A. Yeatman.The control of the composition and structure of aluminide layers formed by vapour aluminising. Surface and Coatings Technology . 1999
  • 7Zhan Z,Liu Z,Liu J, et al.Microstructure and high-temperature corrosion behaviors ofaluminide coatings by low-temperature pack aluminizing process. Applied Surface Science . 2010
  • 8Zhou C G,Xu H B,Gong S K,et al.A study of aluminide coatings on TiAl alloys by the pack cementation method. Journal of Materials Science . 2003
  • 9JUNG H G,JUNG D J,KIM K Y.Effect of Cr addition on theproperties of aluminide coating layers formed on TiAl alloys. Surface and Coatings Technology . 2002
  • 10Outotec Research Oy Center.HSC Chemistry Software Version5.11. . 2002

同被引文献27

引证文献4

二级引证文献6

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