期刊文献+

金属氮化物硬质膜层“合金化”的研究进展 被引量:6

Development of alloyed metal nitride hard coating
在线阅读 下载PDF
导出
摘要 通过展示近年来国内外金属氮化物膜层的研究结果,探究了膜层晶体结构、微观组织的变化规律和提高性能的途径;列举了大量文献进行分析.结果表明:添加C或B元素,可形成"替位式"的金属氮碳化物或氮硼化物膜层,具有明显的固溶强化效应;大部分氮硼化物膜层,都可生成细小的金属硼化物,对性能的提高非常有力;加入Si可以细化晶粒,提高膜层的韧性和耐磨性.在TiN和CrN膜层中加入金属合金化元素(如Al、Zr等),除具有明显的固溶强化效应外,还能显著提高膜层的高温氧化阻力和腐蚀阻力,提高膜层的耐磨性.沉积膜层的显微组织结构,可以通过调整"合金化"元素的比率来改变,并由此可以对膜层性能进行调制.通过"合金化",金属氮化物膜层的晶体结构、微观组织都可以调制,综合性能显著改善和提高. Recent development of metal nitride coatings was reviewed. The crystal lattice and microstructure of deposited coatings as well as the measure to improve properties were investigated. A large amount of references were analyzed. The addition of either C or B element to the binary metal nitride coatings leads to the formation of metal carbonitride or metal carboboride coatings, which have the obvious solid solution strengthening effect. For the metal carboboride coatings, large amounts of fine metal borides form, which can greatly improve the properties. With adding Si to the coatings, the size of grain is reduced, and both toughness and wear resistance get greatly increased. Through adding such metal elements as Al, Zr to TiN or CrN, the high temperature oxide-resistance, erosion resistance and wear resistance as well as the effect of solid solution strengthening get significantly enhanced. Adjusting the ratio of alloying elements can change the microstructure of the coatings, and thus modulate the properties of the coatings. The crystal lattice and microstructure of the coatings can be modulated by alloying, and the properties of the metal nitride coatings are significantly improved in oomparison with its binary oounterparts.
出处 《沈阳工业大学学报》 EI CAS 2007年第5期513-518,共6页 Journal of Shenyang University of Technology
基金 辽宁省科委博士科研启动基金资助项目(20041022)
关键词 硬质膜层 氮碳化物 氮硼化物 多元金属氮化物 抗氧化性 耐磨性 hard coating metal carboboride metal carboboride multiple metal nitride oxidation resistance wear resistance
  • 相关文献

参考文献33

  • 1Rebouta L,Vaz F,Andritschky M,et al.Oxidation resistance of (Ti,Al,Zr,Si)N coatings in air[J].Surface and Coatings Technology,1995(76/77):70-74.
  • 2李明升,王福会,孙超,蒋长荣,闻立时.电弧离子镀Ti(C_xN_(1-x))薄膜的结构和力学性能研究[J].材料保护,2002,35(12):10-12. 被引量:4
  • 3吴大维,付德君,刘传胜,高鹏,叶明生,彭友贵,范湘军.高速钢镀C_3N_4/TiN复合超硬薄膜的研究[J].工具技术,2000,34(2):12-16. 被引量:10
  • 4郭岩,畅庚榕,吴贵智,马胜利,徐可为.新型Ti-Si-C-N纳米复合超硬薄膜的高温热稳定性[J].金属学报,2006,42(2):172-176. 被引量:4
  • 5Holzschuh H.Deposition of Ti-B-N (single and multilayer) and Zr-B-N coatings by chemical vapor deposition techniques on cutting tools[J].Thin Solid Films,2004(469/470):92-98.
  • 6Shtansky D V,Sheveiko A N,Petrzhik M I,et al.Hard tribological Ti-B-N,Ti-Cr-B-N,Ti-Si-B-N and Ti-Al-Si-B-N coatings[J].Surface and Coatings Technology,2005,200(1/4):208-212.
  • 7Sakamaoto Y,Nose M,Mae T,et al.Structure and properties of Cr-B,Cr-B-N and multilayer Cr-B/Cr-B-N thin films prepared by r f-sputtering[J].Surface and Coatings Technology,2003(174/175):444-449.
  • 8Leyendecker T,Lemmer O,Esser S,et al.The development of the PVD coating TiAlN as a commercial coating for cutting tools[J].Surface and Coatings Technology,1991,48(2):175-178.
  • 9Knotek O,Munz W D,Keyendecker T.Industrial deposition of binary,ternary,and quaternary nitrides of titanium,zirconium,and aluminum[J].Journal of Vacuum Science and Technology A,1987,5(4):2173-2179.
  • 10Hones P,Consiglio R,Randall N,et al.Mechanical properties of hard chromium tungsten nitride coatings[J].Surface and Coatings Technology,2000,125:178-184.

二级参考文献56

共引文献20

同被引文献50

引证文献6

二级引证文献15

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