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Prediction of density of stainless steelMIZUKAMI, Hideo; SHIRAI, Yoshihisa; YAMANAKA, Akihiro et al.ISIJ international. 2000, Vol 40, Num 10, pp 987-994, issn 0915-1559Article
Comportamento dei materiali nelle condizioni del visbreaking = Comportement des matériaux dans les conditions de viscoréduction = Material behavior in visbreaking conditionsMUDA, R.Rivista dei Combustibili. 1988, Vol 42, Num 6, pp 155-161, issn 0370-5463Article
Collective evaluation of temperature and stress dependence of creep rupture life in austenitic stainless steelsNAKAKUKI, H; MARUYAMA, K; OIKAWA, H et al.Tetsu-to-hagané. 1995, Vol 81, Num 3, pp 220-224, issn 0021-1575Article
The effect of process variables on the dimensional homogeneity of lath martensiteIVANOV, YU. F.Physics of metals and metallography. 1992, Vol 74, Num 3, pp 236-240, issn 0031-918XArticle
Effect of steel metallurgy on its magneto-mechanical behaviour in weak magnetic fieldsROBERTSON, I. M.Acta metallurgica et materialia. 1994, Vol 42, Num 3, pp 661-665, issn 0956-7151Article
Strain aging behavior of austenitic stainless steels containing strain induced martensiteRATHBUN, R. W; MATLOCK, D. K; SPEER, J. G et al.Scripta materialia. 2000, Vol 42, Num 9, pp 887-891, issn 1359-6462Article
Swelling and dislocation evolution in simple ferritic alloys irradiated to high fluence in FFTF/MOTAKATOH, Y; KOHYAMA, A; GELLES, D. S et al.Journal of nuclear materials. 1995, Vol 225, pp 154-162, issn 0022-3115Conference Paper
Nickel-free duplex stainless steelsJUN WANG; UGGOWITZER, P. J; MAGDOWSKI, R et al.Scripta materialia. 1998, Vol 40, Num 1, pp 123-129, issn 1359-6462Article
Carbon diffusion and thermodynamic characteristics in chromium steelsMILLION, B; BACILEK, K; KUCERA, J et al.Zeitschrift für Metallkunde. 1995, Vol 86, Num 10, pp 706-712, issn 0044-3093Article
Models for transformation plasticity in loaded steels subjected to bainitic and martensitic transformationLIU, C. C; YAO, K. F; XU, X. J et al.Materials science and technology. 2001, Vol 17, Num 8, pp 983-988, issn 0267-0836Article
Oxidation behavior at 900°C of austenitic, ferritic, and duplex stainless steels manufactured by powder metallurgyBAUTISTA, A; VELASCO, F; CAMPOS, M et al.Oxidation of metals. 2003, Vol 59, Num 3-4, pp 373-393, issn 0030-770X, 21 p.Article
Superplastische Formgebung = Superplastic formingPEICHL, K; FROMMEYER, G.VDI-Z. 1995, Vol 137, Num 7-8, pp 40-42, issn 0042-1766Article
The mechanism of oxidational wearSO, H.Wear. 1995, Vol 184, Num 2, pp 161-167, issn 0043-1648Article
Specific features of precipitation hardening of austenitic steels with different matrixes : I. Mechanical properties and the effect of primary carbidesKOSITSYNA, I. I; SAGARADZE, V. V; KHAKIMOVA, O. N et al.Physics of metals and metallography. 1997, Vol 84, Num 1, pp 80-86, issn 0031-918XArticle
A correlation between creep-fatigue life and tensile hold time for austenitic stainless steelsYOUNG CHEOL YOON; SOO WOO NAM.Journal of materials science letters. 1994, Vol 13, Num 17, pp 1270-1271, issn 0261-8028Article
Kinetics of ferrite formation in low-carbon alloy Fe - 9% CrYAKOVLEVA, I. L; MIRZAEV, D. A; SCHASTLIVTSEV, V. M et al.Metal science and heat treatment. 2000, Vol 42, Num 9-10, pp 337-341, issn 0026-0673Article
Chi-phase formation during solidification and cooling of CF-8M weld metal = Formation de la phase chi lors de la solidification et du refroidissement du métal fondu en acier CF-8MCIESLAC, M. J; RITTER, A. M; SAVAGE, W. F et al.Welding journal. 1984, Vol 63, Num 4, pp 133s-140s, issn 0043-2296Article
Measurements of secondary phases content in a 22Cr 5Ni duplex stainless steelCALLIARI, I; MAGRINI, M; RAMOUS, E et al.Praktische Metallographie. 2005, Vol 42, Num 2, pp 74-88, issn 0032-678X, 15 p.Article
Tensile strength of stainless steel during and after solidificationMIZUKAMI, H; NAKAJIMA, K; KAWAMOTO, M et al.Tetsu-to-hagané. 1998, Vol 84, Num 6, pp 417-422, issn 0021-1575Article
LES ACIERS FINS ET SPECIAUX EN MICROMECANIQUEMASSIN M.1972; MEC. MATER. ELECTR.; FR.; DA. 1972; NO 274; PP. 9-17Serial Issue
Solidification mechanism of martensitic stainless steelMOUSTAFA, I. M; ELBAGOURY, N; AMMAR, M. I et al.Ironmaking & steelmaking. 2001, Vol 28, Num 5, pp 404-411, issn 0301-9233Article
Nitrogen partitioning between matrix, grain boundaries and precipitates in high-alloyed austenitic steelsPETROV, Y. N; GAVRILJUK, V. G; BERNS, H et al.Scripta materialia. 1999, Vol 40, Num 6, pp 669-674, issn 1359-6462Article
Einfluss der Zunderung auf das Zeitstandverhalten hitzebeständiger Stähle = Influence of scaling on creep rupture behaviour of heat resistant steelKLOOS, K. H; GRANACHER, J; HOLDINGHAUSEN, A et al.Materialwissenschaft und Werkstofftechnik. 1993, Vol 24, Num 12, pp 440-445, issn 0933-5137Article
Effects of alloying additions and austenitizing treatments on secondary hardening and fracture behavior for martensitic steels containing both Mo and WLEE, K. B; YANG, H. R; KWON, H et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2001, Vol 32, Num 7, pp 1659-1670, issn 1073-5623Article
Sintering transformations in mixtures of austenitic and ferritic stainless steel powdersPUSCAS, T. Marcu; MOLINARI, A; KAZIOR, J et al.Powder metallurgy. 2001, Vol 44, Num 1, pp 48-52, issn 0032-5899Article