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AlCl_3-EMIC室温离子液体制备Al-Al_2O_3复合涂层 被引量:4

Codeposition of Al-Al_2O_3 Composite from AlCl_3-EMIC Room Temperature Ionic Liquid
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摘要 首次在室温下用含10g/L Al2O3颗粒的AlCl3-EMIC室温离子液体电沉积制备出Al-Al2O3复合镀层。沉降试验表明,Al2O3颗粒在酸性AlCl3-EMIC室温离子液体中能形成稳定的悬浮液。通过SEM观察镀层表面和断面形貌,发现Al2O3颗粒均匀地分布在镀层中。显微努氏硬度检测结果表明,Al-Al2O3复合镀层的硬度高于纯Al镀层,其中Al镀层的硬度随着电流密度的增大而增高,而Al-Al2O3复合镀层的硬度却随着电流密度的增大而呈降低的趋势。本文还讨论了Al2O3颗粒在离子液体中的分散机制,以及和颗粒共沉积的过程。 Alumina particles were codeposited successfully with Al from a room temperature ionic liquid AlCl3-EMIC containing 10 g/L of Al2O3 particles for the first time.It is found that a stable suspension can be obtained when Al2O3 particles were introduced in the acidic AlCl3-EMIC bath.Scanning electron microscopy(SEM) observations on the morphologies of the coatings show that Al2O3 particles are uniformly distributed in the Al matrix.Hardness of Al-Al2O3 composite coating is higher than that of the pure Al coating.Moreover,hardness of the pure Al coatings increases with increasing current density;whilst that of the Al-Al2O3 composite coating decreases with increasing current density.Dispersion mechanism of Al2O3 particles in AlCl3-EMIC and possible codeposition process of the Al and Al2O3 were discussed in detail.
出处 《材料科学与工程学报》 CAS CSCD 北大核心 2012年第2期236-240,213,共6页 Journal of Materials Science and Engineering
关键词 室温离子液体 复合镀层 Al-Al2O3 电沉积 room temperature ionic liquid composite coating Al-Al2O3 electrodeposition
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  • 1M. Lekka, D. Koumoulis, N. Kouloumbi, et al. Mechanical and anticorrosive properties of copper matrix micro and nano- composite coatings[J]. Electrochimica Acta, 2009, 54(9) :2540 -2546.
  • 2J.M. Wu, S.L. Zheng, Z. Z. Li. Thermal stability and its effects on the mechanical properties of rapidly solidified AI Ti alloys [J]. Materials Science and Engineering A, 2000, 289 (1 -2) :246-254.
  • 3J. M. Wu, Z. Z. Li. Nanostructured composite obtained by mechanically driven reduction reaction of CuO and Al powder mixture[J]. Journal of Alloys and Compounds, 2000, 299 (1-2) : 9-16.
  • 4J. M. Wu. Nano-sized amorphous alumina particles obtained by ball milling ZnO and AI powder mixture [J]. Materials Letters, 2001, 48(6) :324-330.
  • 5Q. X. Liu, S. Zein EI Abedin, et al. Electrodeposition of nanocrystalline aluminum: breakdown 'of imidazolium cations modifies the crystal size [J]. Journal of the Electrochemical Society, 2008, 155(5) :D357-D362.
  • 6G. K. Yue, X.M. Lu, Y.L. Zhu,' et al. Surface morphology, crystal structure and orientation of aluminium coatings electrodeposited on mild steel in ionic liquid [J]. Chemical Engineering Journal, 2009, 147(1) :79-86.
  • 7M. Armand, F. Endres, D.R. MaeFarlane, et al. Ionic-liquid materials for the electrcchemimal ChaUenges of the future[J]. Nature Materials, 2009, 8(8): 621-629.
  • 8S. Caporali, A. Fossati, A. Lavacchi, et al. Aluminium electroplated from ionic liquids as protective coating against Steel corrosion[J]. Corrosion Science, 2008, 50(2):534(539.
  • 9S. Zein El Abedin. Coating of mild steel by aluminium in the ionic liquid [ EMIm] Tf2N and its corrosion performance [ J ]. Zeitschrift Fur Phisikalische Chemic international Journal of Research in Chemistry & Chemical Physics, 2006, 220 (10- 11) : 1293-1308.
  • 10Q. X. Liu, S. Zein El Abedin, et al. Electroplating of mild steel by aluminium in a frst generation ionic liquid: a green alternative to commercial Al-plating in organic solvents [J ]. Surface & Coatings Technology, 2006, 201 (3-4): 1352-1356.

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