期刊文献+

热处理对Cr/Al复合镀层组织转变的影响 被引量:3

Effects of heat treatment on structure transformation of Cr/Al composite coatings
原文传递
导出
摘要 通过先在水溶液中电镀Cr之后再在摩尔比为2∶1的AlCl3-EMIC(氯化1-甲基3-乙基咪唑)离子液体电镀Al的方法,在1Cr17钢表面制备出Cr/Al复合镀层。研究了在740℃条件下不同时间热处理对涂层组织和结构的影响。光学显微镜、二次电子和特征X射线能谱及X射线衍射研究结果表明:Cr/Al复合镀层通过740℃热处理可以得到Al-Cr涂层,随着时间的延长,外表面合金层成分依次按Al4Cr→Al11Cr4→Al9Cr4→Al8Cr5变化,最后形成单相的Al8Cr5,且涂层与基体之间不发生明显的互扩散;在5~20 min内Al9Cr4成分层的厚度及反应掉的Cr镀层厚度与时间平方根符合线性关系;氮气气氛中热处理可以减少涂层表面的空洞。显微硬度测试结果表明:Al8Cr5的脆性小,且硬度高于其他3种合金层。 The Cr/Al composite coatings were prepared on 1Cr17 stainless steel by electrodepositing Cr from aqueous solution followed by electrodepositing Al from AlCl3-EMIC(molar ratio 2:1) ionic liquid.Effects of heat treatment at 740 ℃ for various time on phase composition and structure of the alloy layers were studied.The samples were analysed by means of optical microscopy(OM),scanning electron microscopy(SEM),with energy dispersive spectroscopy(EDS) and X-ray diffraction(XRD).The results show that the composition of outer Al-Cr layers in the coatings changed to Al4Cr,Al11Cr4,Al9Cr4 and Al8Cr5 in turn as the heat treatment process prolonged.The single phase Al8Cr5 layer was obtained without obvious interdiffusion with the substrate.There are linear relationships between the thickness of Al9Cr layer,reacted Cr layer and the square root of the time from 5 min to 20 min.The voids formed in coating surface during heat treatment under nitrogen are less than that formed under air atmosphere.The Knoop hardness tests indicate that the Al8Cr5 layer exhibits lower brittleness and higher hardness than other Al-Cr alloy layers.
出处 《材料热处理学报》 EI CAS CSCD 北大核心 2011年第5期147-152,共6页 Transactions of Materials and Heat Treatment
关键词 Cr/Al复合镀层 离子液体 热处理 Al8Cr5 Cr/Al composite coating ionic liquid heat treatment Al8Cr5
  • 相关文献

参考文献10

  • 1Brady M P, Gleeson B,Wright I G. Alloy design strategies for promoting protective oxide-scale formation [ J]. Journal of the Minerals, Metals and Materials Society, 2000,52 ( 1 ) : 16 - 21.
  • 2Xiang Z D, Rose S R, Datta P K, et al. Steam oxidation resistance and thermal stability of chromium aluminide/ chromium hybrid coating on alloy steels formed at low temperrtures [ J]. Surface and Coatings Technology,2009,203 : 1225 - 1230.
  • 3Huttunen-Saarivirta E, Stott F H, Rohr V, et al. Erosion-oxidation behavior of chromized-aluminized 9% chromium steel under fluidized-bed conditions at elevated temperature [ J]. Oxidation of Metals,2007,68 ( 3 - 4 ) : 113 - 132.
  • 4Zhou W ,Zhao Y G,Qin Q D ,et al. A new way to produce Al + Cr coating on Ti alloy by vacuum fusing method and its oxidation resistance [ J]. Materials Science and Engineering A ,2006,430 ( 1 - 2 ) :254 - 259.
  • 5Cekada M,Panjan M, Cimpri D, et al. Analysis of the diffusion processes in A1/Cr, A1/Fe and Cr/Fe multilayers using the MRI model [ J ]. Vacuum,2009,84(1) :147 - 151.
  • 6Armand M, Endres F, MacFarlane D R, et al. Ionic-liquid materials for the electrochemical challenges of the future [ J ]. Nature Materials,2009,8 : 621 - 629.
  • 7李岩,凌国平,刘柯钊,陈长安,张桂凯.铁素体不锈钢室温熔盐镀铝层的热处理[J].材料热处理学报,2009,30(5):182-186. 被引量:6
  • 8Okamoto H. Al-Cr (Aluminum-Chromium) [ J ]. Journal of Phase Equilibria and Diffusion,2008,29 ( 1 ) : 112 - 113.
  • 9Tunca N, Delamore G W, Smith R W. Corrosion of Mo, Nb, Cr, and Y in molten aluminum [ J ]. Metallurgical and Materials Transactions A, 1990, 21(11) :2919 -2928.
  • 10Umeda A, Yakou T, Kamasaki K, et al. Structural defects formed in alloy layers of Fe-A1 system by diffusion in air [ J ]. Tetsu-to-Hagane,2009,95 (9) :645 -648.

二级参考文献10

  • 1Endres F. Ionic liquids: solvents for the electrodeposition of metals and semiconductors[ J]. Chem Phys Chem, 2002,3 (2):144- 154.
  • 2Lee J J, Miller B, Shi X. Aluminum deposition and nucleation on nitrogen-incorporated tetrahedral amorphous carbon electrodes in ambient temperature chlorolauminate melts[J]. Journal of the Electrochemical Society, 2000,147(9):3370- 3376.
  • 3Jiang T, Cholller Brym M J, Dube G, et al. Electrodeposition of aluminium from ionic liquids : Part Ⅰ-electrodeposition and surface morphology of aluminum from aluminium chloride ( AlCl3 ) - 1-ethyl-3-methylimidazolium chloride ( [ EMIm] Cl) ionic liquids[ J]. Surface & Coatings Technology, 2006,201 ( 1 - 2) : 1 -9.
  • 4Zhu L Q, Li W P, Shah D D. Effects of low temperature thermal treatment on zinc and/or tin plated coating of AZ91D magnesium alloy[J]. Surface & Coatings Technology, 2006, 201(6):2768- 2775.
  • 5Liu Q X, Zein S, Abedin E. Electroplating of mild steel by aluminium in a first generation ionic liquid: A green alternative to commercial Al-plating in organic solvents[ J ]. Surface & Coatings Technology, 2006,201 (3 - 4) : 1352 - 1356.
  • 6Wang D Q. Phase evolution of an aluminized steel by oxidation treatment[J]. Applied Surface Science,2008,254(10) : 3026 - 3032.
  • 7Gul Humeed Awan, Faiz ul Hasan. The morphology of coating/substrate interface in hot-dip aluminized steel[J]. Materials Science and Engineering A, 2008, 472( 1 - 2) : 157 - 165.
  • 8Bahadur A, Mohanty O N. Aluminium diffusion coatings on medium carbon steel[ J]. Materials Transactions, JIM, 1995,36(9):1170- 1175.
  • 9McKamey C G, Horton J A, Liu C T. Effect of chromium room temperature ductility and fracture mode in Fe2 Al[ J]. Scripta Metall, 1988 ,22:1679 - 1681.
  • 10高丽霞,王丽娜,齐涛,李玉平,初景龙,曲景奎.离子液体AlCl3/Et3NHCl中电沉积法制备金属铝[J].物理化学学报,2008,24(6):939-944. 被引量:34

共引文献5

同被引文献35

引证文献3

二级引证文献12

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