Wear Properties of Anode Oxidation Coating in the Surface of ZL101 Aluminium Alloy

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Abstract:

The oxidation film was prepared by anode oxidation method on ZL101 aluminium surface, its morphologies, compositions and phases were characterized with SEM (Scanning Electron Microscope), optical profiler, EDS (Energy Disperse Spectroscopy), respectively, its friction coefficient and abrasion performance were analyzed by wear test, and its wear mechanism was discussed. The results show that the thickness of anode oxidation layer is about 35-40m, under dry friction condition, sliding friction coefficient is 0.65-0.72, the wear forms are abrasive attrition and adhesion wear, the low friction pair between furrows effect and adhesion effect improves the wear performance of anode oxidation film on ZL101 aluminum alloy surface.

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Periodical:

Advanced Materials Research (Volumes 393-395)

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499-502

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November 2011

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Wang Y F, Xu J N, Li L and et al: Hot Working Technology, Vol. 39 (2010), pp.99-101.

Google Scholar

[2] Szklarska Smialowska Z: Corrosion Science, Vol. 41 (1999), pp.1743-1767.

Google Scholar

[3] Li X S, Wu Y, Wu H: Foundry Technology, Vol. 30 (2009), pp.929-932.

Google Scholar

[4] Chu Xin, Ren Xin, Hao Shengzhi and et al. Hot Working Technology, 2010, 39 (20): 123-127.

Google Scholar

[5] Li Jianhong, Li Na. Science Technology and Engineering, 2010, 10 (1): 227-229, 233.

Google Scholar

[6] Liu W H. Study of anodic film on cracking behavior and mechanism after heating [D]. Beijing: Beijing University of Chemical Technology Doctoral Degree Thesis, (2008).

Google Scholar

[7] Wilson S, Alpas AT: Surf ace & Coatings Technology, Vol. 108-109 (1998), pp.369-376.

Google Scholar

[8] Gao Runsheng. The leftover stress of TiN of gas phase deposit and static the research that uses combinative strength [D]. Xian: Xian Jiaotong University Doctoral Degree Thesis, (1992).

Google Scholar

[9] Guo Q B, Yuan H B, Li C J and et al: Surface Technology, Vol. 39 (2009), pp.21-23.

Google Scholar