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[1] I. LeMay and M.R. Krishnadev, Copper in Iron and Steel, I. Le-May and L.M. Schetky, Ed., John Wiley & Sons, 1982, p 510. Search in Google Scholar

[2] R.W.K. Honeycombe, Steels: Microstructure and Properties,American Society for Metals, 1982 Search in Google Scholar

[3] M. Mujahid, A.K. Lis, C.I. Garcia, and A.J. DeA, HSLA-100 Steels: Influence of Aging HeatTreatment on Microstructure and Proper, Journal of Materials Engineering and PerformanceVolume 7(2) April 1998, 247.10.1361/105994998770347981 Search in Google Scholar

[4] George Frederic Vander Voort, G.M. Lucas, E.P. Manilova, Metallography and Microstructures ofStainless Steels and Maraging Steels, ASM Handbook, Volume 9: Metallography and Microstructures, G.F. Vander Voort, editor, p670, DOI: 10.1361/asmhba0003767,2004. Search in Google Scholar

[5] Dumitrescu, C.; Saban, R., Metalurgie fizică-tratamente termice. Editura Fair Partners, Bucureşti, 2001 Search in Google Scholar

[6] Mantea, S,; Dulămiţă T., Teoria şi practica tratamentelor termice, Editura Tehnică, Bucureşti, 1966 Search in Google Scholar

[7] Vigantas KUMŠLYTIS, Raimondas SKINDARAS, Algirdas Vaclovas VALIULIs, The Structure and Properties of 5 % Cr-0.5 % Mo Steel Welded Joints after Natural Ageing and Post-weld Heat Treatment, ISSN 1392–1320 MATERIALS SCIENCE (MEDŽIAGOTYRA). Vol. 18, No. 2. 2012, p.119.10.5755/j01.ms.18.2.1911 Search in Google Scholar

[8] A. Kasak et al., Development of Precipita-tion Hardening Cr-Mo-Co Stainless Steels,Trans. ASM,Vol 56, 1963, p 455. Search in Google Scholar

[9] Jurčius, A., Valiulis, A. V., Kumšlytis, V. Vibratory Stress Relieving – It’s Advantages as an Alternative to Thermal Treatment Journal of Vibroengineering 10 (1) 2008: pp. 123. Search in Google Scholar

[10] Vekeman J, Dhooge A, Huysmans S, Vandenberghe B and Jochum C, „Weldability and high temperature behaviour of 12% Cr-steel for tubes and pipes in power plants with steam temperatures up to 650°C”, IIW Report XI-863-06, 2006.10.3184/096034006782739286 Search in Google Scholar

[11] Gooch D J and Kimmins S T, “Type IV cracking in 1/2Cr1/2Mo1/4V / 2 1/4Cr1Mo weldments”, in 3rd int conf Creep and Fracture of Engineering Materials and Structures, Swansea, Maney Pub, 1987. Search in Google Scholar

[12] Semba H and Abe F, “ Creep deformation behavior and microstructure in high boron containing 9%Cr ferritic heat resistant steels”, in 4th int conf Advances in Materials Technology for Fossil Power Plants, Hilton Head Island, SC, EPRI, 2004. Search in Google Scholar

[13] CO Rusănescu, M Rusănescu, FV Anghelina, V Bratu, The influence of the micro-alloying elements on physical and structural characteristics of the some steel destined for manufacturing the oil pipes, Romanian Reports in Physics, Vol.68, no.1, p.278. Search in Google Scholar

[14] Veronica Despa, Florina Violeta Anghelina, Dorin Iancu, Carmen Otilia Rusanescu, Journal of Science and Arts, no.1, p.839,2017. Search in Google Scholar

[15] E.V. STOIAN, P.C.FLUIERARU, M.C. ENESCU, I.PETRE, Studies and Research on the Influence of Carbon and Chromium Content Aimed at Obtaining Superior Mechanical Characteristics of 16CD4 Steel Used in the Automobile Industry, Key Engineering Materials, ISSN: 1662-9795, vol.750, p.39.10.4028/www.scientific.net/KEM.750.39 Search in Google Scholar