Microstructure and properties of cold sprayed Al-Al2O3 coating on AZ31 magnesium alloy

被引:0
|
作者
Chen J.-X. [1 ]
Wang Q. [1 ]
Luo S.-S. [1 ]
Tan X.-L. [2 ]
机构
[1] College of Materials Science and Engineering, Hunan University, Changsha
[2] Advanced Corporation for Materials & Equipments Co., Ltd., Changsha
来源
Wang, Qun (13787113453@163.com) | 1720年 / Central South University of Technology卷 / 28期
关键词
AZ31 magnesium alloy; Cold spray; Composite coating; Corrosion resistance; Wear resistance;
D O I
10.19476/j.ysxb.1004.0609.2018.09.02
中图分类号
学科分类号
摘要
The pure Al coating and Al-50% Al2O3 composite coating were deposited on AZ31 magnesium alloy by cold spraying. The effect of addition Al2O3 particles on morphology of the pure Al coating was analyzed by scanning electron microscopes(SEM), energy dispersive spectroscopy(EDS) and material analysis software. The effects of Al2O3 particles adding on corrosion resistance, micro-hardness and wear properties of the pure Al coating were studied by using electrochemical workstation, microhardness tester, abrasion tester to evaluate the properties of coatings. The results show that the composite coating possessed higher density, lower porosity, the microhardness increases from 51.2 HV0.025 to 94.8 HV0.025, the sliding wear rate decreases by 80.5% and the abrasive wear rate reduces by 40% in comparison to the pure Al coating. The corrosion current densities of the composite coating (2.36×10-7 A/cm2) and the pure Al coating(1.19×10-7 A/cm2) show the same level, but they are about 3 orders of magnitudes low compared with that of magnesium alloys substrate(2.56×10-4 A/cm2), which can significantly improve the corrosion resistance of magnesium alloys. © 2018, Science Press. All right reserved.
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页码:1720 / 1729
页数:9
相关论文
共 31 条
  • [11] Bala N., Singh H., Karthikeyan J., Prakash S., Cold spray coating process for corrosion protection: A review, Surface Engineering, 30, 6, pp. 414-421, (2014)
  • [12] Assadi H., Kreye H., Gartner F., Klassen T., Cold spraying-a materials perspective, Acta Materialia, 116, pp. 382-407, (2016)
  • [13] Stoltenhoff T., Borchers C., Gartner F., Kreye H., Microstructures and key properties of cold-sprayed and thermally sprayed copper coatings, Surface and Coatings Technology, 200, 16, pp. 4947-4960, (2006)
  • [14] Tao Y.-S., Xiong T.-Y., Sun C., Kong L.-Y., Cui X.-Y., Li T.-F., Song L.-G., Microstructure and corrosion performance of a cold sprayed aluminium coating on AZ91D magnesium alloy, Corrosion Science, 52, 10, pp. 3191-3197, (2010)
  • [15] Deforce B.S., Eden T.J., Potter J.K., Cold spray Al-5% Mg coatings for the corrosion protection of magnesium alloys, Journal of Thermal Spray Technology, 20, 6, pp. 1352-1358, (2011)
  • [16] Liu D.-X., Shi Z.-C., Zhang X.-Y., Lu F., Sun Z.-H., Tang Z.-H., Structure and anti-corrosion properties of cold sprayed Al coatings on ZM6 magnesium alloy, Journal of Materials Engineering, 12, pp. 50-54, (2012)
  • [17] Rokni M.R., Widener C.A., Crawford G.A., West M.K., An investigation into microstructure and mechanical properties of cold sprayed 7075 Al deposition, Materials Science & Engineering A, 625, pp. 19-27, (2015)
  • [18] Jia L., Cui L., Liu G., Zheng Z.-Y., Wear property of cold sprayed Al coating, Ordnance Material Science and Engineering, 40, 3, pp. 78-80, (2017)
  • [19] Steenkiste T.H., Smith J.R., Teets R.E., Aluminum coatings via kinetic spray with relatively large powder particles, Surface and Coatings Technology, 154, 2-3, pp. 237-252, (2002)
  • [20] Szklarska-Smialowska Z., Pitting corrosion of aluminum, Corrosion Science, 41, 9, pp. 1743-1767, (1999)