References

THE EFFECT OF HARD CHROMIUM AND ANODIZING COATINGS ON FATIGUE CHARACTERISTICS OF 7075-T6 AL ALLOYS USED IN AEROSPACE INDUSTRIES


[1] M. P. Nascimento, R. C. Souza, I. M. Miguel, W. L. Pigatin and H. J. C. Voorwald, Effects of tungsten carbide thermal spray coating by HP/HVOF and hard chromium electroplating on AISI 4340 high strength steel, Surf. Coat. Tech. 138 (2001), 113-124.

[2] M. A. S. Torres and H. J. C. Voorwald, An evaluation of shot peening, residual stress and stress relaxation on the fatigue life of AISI 4340 steel, Int. J. Fatigue 24 (2002), 877-886.

[3] F. Snogan, C. Blanc, G. Mankowski and N. Pebere, Characterization of sealed anodic films on 7050-T74 and 2214 T6 aluminum alloys, Surf. Coat. Tech. 154 (2002), 94-103.

[4] E. Cirik and K. Genel, Effect of anodic oxidation on fatigue performance of 7075-T6 alloy, Surf. Coat. Tech. 202 (2008), 5190-5201.

[5] R. G. Rateick Jr., T. C. Binkowski and B. C. Boray, Effect of hard anodize thickness on the fatigue of AA6061 and C355 aluminium, J. Mat. Sci. Lett. 15 (1996), 1321-1323.

[6] M. Guagliano and L. Vergani, An approach for prediction of fatigue strength of shot peened components, Eng. Fract. Mech. 71 (2004), 501-512.

[7] E. Lee, Y. Jeong and S. Kim, S-N Fatigue behavior of anodized 7050-T7451 produced in different electrolytes, Metal. Mater. Trans. B 43A (2012), 2002-2011.

[8] A. J. Eifert, J. P. Thomas and R. G. Rateick, Influence of anodization on the fatigue life of WE43A-T6 magnesium, Scripta. Mater. 40 (1999), 929-935.

[9] M. Guagliano and L. Vergani, An approach for prediction of fatigue strength of shot peened components, Eng. Fract. Mech. 71 (2004), 501-512.

[10] M. P. Nascimento, R. C. Souza, W. L. Pigatin and H. J. C. Voorwald, Effects of surface treatments on the fatigue strength of AISI 4340 aeronautical steel, Int. J. Fatigue 23 (2001), 607-618.

[11] R. Sadeler and S. Atasoy, Fretting fatigue behaviour of hard anodizing coated 2014-T6 aluminium alloy with dissimilar mating materials under plane bending loading, Fatigue Fract. Eng. M 34 (2010), 383-388.