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Corrosion performance and microstructural response of A380 matrix alloy reinforced with sol–gel TiO2-coated SiC particles: a perspective on previous studies

  • Burak Dikici , Cagri Tekmen and Ozcan Yigit
Published/Copyright: March 12, 2015
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Abstract

In this study, the corrosion susceptibility of aluminium matrix composites reinforced with sol–gel TiO2-coated silicon carbide particles has been investigated. The corrosion of the composite, fabricated by means of a liquid metal infiltration technique, was established in chloride-containing alkaline environments using the potentiodynamic polarisation technique. Microstructural and interfacial characterisation of the composite was carried out by using an optical microscope, scanning electron microscope, energy dispersion spectroscopy and X-ray diffractometer. The corrosion performance and its effect on the composite microstructure are discussed in relation to previous observations.


* Correspondence address, Assoc. Prof. Dr Burak Dikici, Yuzuncu Yil Universitesi, Muhendislik-Mimarlik Fakultesi, Makine Muhendisligi Bolumu, 65080 Van, Turkey, Tel.: +904322251040(1109), Fax: +904322251730, E-mail:

References

[1] J.C.Lee, J.P.Ahn, J.H.Shim, Z.Shi, H.I.Lee: Scr. Mater.41 (1999) 895. 10.1016/S1359-6462(99)00216-XSearch in Google Scholar

[2] T.P.D.Rajan, R.M.Pillai, B.C.Pai: J. Mater. Sci.33 (1998) 3491. 10.1023/A:1004674822751Search in Google Scholar

[3] Z.Shi, J.M.Yang, T.Fan, D.Zhang, R.Wu: Appl. Phys.A71 (2000) 203.Search in Google Scholar

[4] B.Dikici, M.Gavgali, F.Bedir: J. Compos. Mater.45(2011), 895. 10.1177/0021998310377939Search in Google Scholar

[5] R.M.Wang, M.K.Surappa, C.H.Tao, C.Z.Li, M.G.Yan: Mater. Sci. Eng.A254 (1998) 219. 10.1016/S0921-5093(98)00686-8Search in Google Scholar

[6] G.Yang, T.Fan, D.Zhang: Mater. Lett.58 (2004) 1546. 10.1016/S0167-577X(03)00409-9Search in Google Scholar

[7] A.M.Davidson, D.Regener: Compos. Sci. Technol.60 (2000) 865. 10.1016/S0266-3538(99)00151-7Search in Google Scholar

[8] A.J.Trowsdale, B.Noble, S.J.Haris, I.S.R.Gibbins, G.E.Thompson, G.C.Wood: Corr. Sci.38 (1996) 177. 10.1016/0010-938X(96)00098-4Search in Google Scholar

[9] L.M.Tham, M.Gupta, L.Cheng: Acta Mater. (2001) 3243. 10.1016/S1359-6454(01)00221-XSearch in Google Scholar

[10] M.Suery, L.Salvo: Metall. New Mater.111 (1995) 119.Search in Google Scholar

[11] A.Urena, M.D.Escalera, P.Rodrigo, J.L.Baldonedo, L.Gil: J. Microsc.201 (2001) 122. 10.1046/j.1365-2818.2001.00765.xSearch in Google Scholar PubMed

[12] K.A.Lucas, H.Clarke: Corrosion of aluminium-based metal matrix composites, Research Studies Pres. Ltd.England (1993).Search in Google Scholar

[13] B.Dikici, M.Gavgali, C.Tekmen: J. Compos. Mater.40 (2006) 1259. 10.1177/0021998305057434Search in Google Scholar

[14] L.H.Hihara, R.M.Latanision: Corrosion48 (1992) 546. 10.5006/1.3315972Search in Google Scholar

[15] P.P.Trzaskoma, E.McCafferty, C.R.Crowe: J. Electrochem. Soc.130(1983) 1804. 10.1149/1.2120102Search in Google Scholar

[16] A.Pardo, M.C.Merino, A.Ureña, S.Merino, F.Viejo, M.Campo: Corrosion60 (2004) 945. 10.5006/1.3287828Search in Google Scholar

[17] B.Dikici, C.Tekmen, M.Gavgali, U.Cocen, S.Vestnik: J. Mech. Eng.57 (2011) 11. 10.5545/sv-jme.2010.111Search in Google Scholar

[18] B.Dikici, C.Tekmen, O.Yigit, M.Gavgali, U.Cocen: Corros. Sci.51 (2009) 469. 10.1016/j.corsci.2008.12.023Search in Google Scholar

[19] C.Tekmen, F.Saday, U.Cocen, L.Y.Ljungberg: J. Compos. Mater.42 (2008) 1671. 10.1177/0021998308092195Search in Google Scholar

[20] J.Rams, A.Urena, J.Campo: Adv. Eng. Mater.6 (2004) 57. 10.1002/adem.200300519Search in Google Scholar

[21] T.Wen, J.Gao, J.Shen, Z.Zhou: J. Mater. Sci.36 (2001) 5923. 10.1023/A:1012989012840Search in Google Scholar

[22] L.V.Vugt, L.Froyen: J. Mater. Process. Technol.104 (2000) 133. 10.1016/S0924-0136(00)00526-4Search in Google Scholar

[23] J.R.Galvele: Corros. Sci.47 (2005) 3053. 10.1016/j.corsci.2005.05.043Search in Google Scholar

[24] B.Dikici, F.Bedir, M.Gavgali, T.Kiyak: Kovove Mater.47 (2009) 317.Search in Google Scholar

[25] E.H.Hollingsworth, H.Y.Hunsicker: Metals Handbook, ASM Int., Metals Park, OH13 (1987) 583.Search in Google Scholar

Received: 2014-08-02
Accepted: 2014-11-04
Published Online: 2015-03-12
Published in Print: 2015-03-11

© 2015, Carl Hanser Verlag, München

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