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[1] – ZHANG Li-feng – “Inclusion and Bubble in Steel – A Review”, Journal of iron and Steel Research International, v.13, nº 3, 2006, p.1-8.
[2] – SHI, G.; ZHOU, S.; DING, P. – “Investigation of Nonmetallic Inclusions in High-Speed Steels”, Materials Characterization, v. 38, 1997, p.19-23.
[3] - ASTM E45 – 2005, e3 – “Standard Test Methods for Determining the Inclusion Content of Steel.
[4] – ATKINSON, H.V.; SHI, G. – “Characterization of inclusions in clean steels: a review including the statistics of extremes methods”, Progress in Materials Science, v. 48, 2003, p. 457-520.
[5] – MAROPOULOS, S.; RIDLEY, N. – “Inclusions and fracture characteristics of HSLA steel forgings”, Materials Science and Engineering A, v. 884, 2004, p. 64-69.
[6] – MORAES, C.A.; BIELEFELDT, W.V.; VILELA, A.C.F. – “Evolução das técnicas de caracterização de inclusões em aço”, Metalurgia e Materiais, v. 63, nº 574, janeiro/fevereiro, p. 46-48.
[7] – PERKINS, K.M.; BACHE, M.R. – “The influence of inclusions on the fatigue performance of a low pressure turbine blade steel”, International Journal of Fatigue, vol. 27, 2005, p. 610-616.
[8] – CABALÌN, L.M.; MATEO, M.P.; LASERNA, J.J. – “”Large area mapping of non-metallic inclusions in stainless steel by an automated system based on laser ablation”, Spectrochimica Acta Part B, v. 59, 2004, p. 567-575.
[9] – ASM HANDBOOK, Volume 13A, Corrosion: Fundamentals, Testing and Protection, ASM International, Materials Park, Ohio, USA, p. 259-260.
[10] – ASTM F 138-92 – Standard Specification for stainless Steel Bar and Wire for Surgical Implants (Special Quality).
[11] – BARBOSA, C.; CAMPOS, J.B.; NASCIMENTO, J.L,.; CAMINHA, I.M.V.; “Quantitative Study on Nonmetallic Inclusion Particles in Steels by Automatic Image Analysis with Extreme Values Method”, Journal of Iron and Steel Research International, volume 16, issue 4, July, 2009, p.18-21,32.