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Lower-temperature aluminizing behaviors of a ferritic-martensitic steel processed by means of surface mechanical attrition treatmentGUO, S; WANG, Z. B; WANG, L. M et al.Surface & coatings technology. 2014, Vol 258, pp 329-336, issn 0257-8972, 8 p.Article

Depth profiling of hydrogen in ferritic/martensitic steels by means of a tritium imaging plate techniqueOTSUKA, Teppei; TANABE, Tetsuo.Journal of alloys and compounds. 2013, Vol 580, issn 0925-8388, S44-S46, SUP1Conference Paper

Creep behavior of pack cementation aluminide coatings on Grade 91 ferritic-martensitic alloyBATES, B. L; ZHANG, Y; DRYEPONDT, S et al.Surface & coatings technology. 2014, Vol 240, pp 32-39, issn 0257-8972, 8 p.Article

Comparison of corrosion behavior of bare and hot-dip coated EUROFER steel in flowing Pb-17LiKONYS, J; KRAUSS, W; VOSS, Z et al.Journal of nuclear materials. 2007, Vol 367-370, pp 1144-1149, issn 0022-3115, 6 p., bConference Paper

Two-phase ferritic martensitic steelsGOLOVANENKO, S.A; FONSHTEJN, N.M.Metallovedenie i termičeskaâ obrabotka metallov. 1984, Vol 30, Num 11, pp 25-29, issn 0026-0819Article

Effect of weld intercooling temperature on the structure and impact strength of ferritic-martensitic steelsTOTEMEIER, T. C; SIMPSON, J. A; TIAN, H et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2006, Vol 426, Num 1-2, pp 323-331, issn 0921-5093, 9 p.Article

Materials design data for reduced activation martensitic steel type F82HTAVASSOLI, A.-A. F; RENSMAN, J.-W; SCHIRRA, M et al.Fusion engineering and design. 2002, Vol 61-62, pp 617-628, issn 0920-3796, 12 p.Conference Paper

DEFORMATION MODELS FOR TWO-PHASE MATERIALSOESTROEM P.1981; METALL. TRANS., A; USA; DA. 1981-02; VOL. 12A; NO 2; PP. 355-357; BIBL. 6 REF.Article

Microstructural evolution of P92 ferritic/martensitic steel under Ar+ ion irradiation at elevated temperatureSHUOXUE JIN; LIPING GUO; TIECHENG LI et al.Materials characterization. 2012, Vol 68, pp 63-70, issn 1044-5803, 8 p.Article

Development of novel diffusion coatings for 9-12% Cr ferritic-martensitic steelsROHR, V; SCHüTZE, M; FORTUNA, E et al.Materials and corrosion (1995). 2005, Vol 56, Num 12, pp 874-881, issn 0947-5117, 8 p.Article

Possibility of hydrogen confinement by helium bubbles with different pressureBINYUKOVA, S. Yu; CHERNOV, I. I; KALIN, B. A et al.Atomic energy (New York, N.Y.). 2005, Vol 99, Num 4, pp 752-755, issn 1063-4258, 4 p.Article

Development of the elaboration process and joining technologies of R.A.F.M. O.D.S. steelsREVOL, S; LAUNOIS, S; BACCINO, R et al.Fusion engineering and design. 2001, Vol 58-59, pp 761-765, issn 0920-3796Conference Paper

Modified steel 9Cr1Mo (10Kh9M1FB) for boilers and pipelines at thermal power stationsDEE, F; VEIYAN, Zh. K; ANTIKAIN, P. A et al.Thermal engineering. 1998, Vol 45, Num 12, pp 1040-1043, issn 0040-6015Article

Auslegung dichwandiger Bauteile auf der Basis neuer Stähle = Layout of thick-walled components on the basis of new steelsPIETZONKA, F; HENRY, C; TORSSELL, K et al.VGB Kraftwerkstechnik. 1994, Vol 74, Num 1, pp 64-74, issn 0372-5715Article

The phase changes taking place in 09G2SYuCH steel durint heat treatment from the intercritical temperature range and during welding = Transformations de phase intervenant dans l'acier 09G2SYuCH lors d'un traitement thermique à partir de la température intercritique et lors du soudageEGOROVA, S. V; VASIL'EV, V. G; STERENBOGEN, Y. A et al.Automatic Welding. 1986, Vol 39, Num 9, pp 9-13, issn 0005-108XArticle

Structure et propriétés de l'acier de construction à haute résistance 40KhNMS à l'état biphaséBERNSHTEJN, M. L; BERNSHTEJN, L. M; BEJLINA, O. YA et al.Izvestija vysših učebnyh Zavedenij. Černaja Metallurgija. 1985, Num 3, pp 85-88, issn 0368-0797Article

Fatigue considerations in use of high-strength sheet steel = Considérations sur la fatigue en service de tôles d'acier à haute résistanceLANDGRAF, R. W.SAE transactions. 1982, Vol 91, Num 3, pp 2426-2433, issn 0096-736XArticle

High strain fatigue properties of F82H ferritic-martensitic steel under proton irradiationMARMY, P; OLIVER, B. M.Journal of nuclear materials. 2003, Vol 318, pp 132-142, issn 0022-3115, 11 p.Conference Paper

Investigations on the development of the oxidation layer on a steam turbine guide vane: Interaction with the steam flow at higher steam parameters of 620 °c and 94 barBOHN, D; BALKOWSKI, I.VGB powertech. 2003, Vol 83, Num 4, pp 62-66, issn 1435-3199, 5 p.Article

Tensile properties of ferritic/martensitic steels irradiated in HFIR, and comparison with spallation irradiation dataFARRELL, K; BYUN, T. S.Journal of nuclear materials. 2003, Vol 318, pp 274-282, issn 0022-3115, 9 p.Conference Paper

Sur l'influence du manganèse sur l'élaboration d'une nouvelle nuance d'acier «dual» ferrito-martensitique ductile = On the influence of manganese in the development of a new nuance of ductile, ferrito-martensitic «dual» phase steelXI JING HE; TERAO, N; BERGHEZAN, A et al.Comptes rendus de l'Académie des sciences. Série 2, Mécanique, Physique, Chimie, Sciences de l'univers, Sciences de la Terre. 1985, Vol 301, Num 9, pp 587-592, issn 0764-4450Article

Corrosion and stress corrosion cracking of ferritic/martensitic steel in super critical pressurized waterHIROSE, T; SHIBA, K; ENOEDA, M et al.Journal of nuclear materials. 2007, Vol 367-370, pp 1185-1189, issn 0022-3115, 5 p., bConference Paper

Solubility of uranium at very low concentration in RAFM steelPAUL, A; ALVES, L. C; ODRIOZOLA, J. A et al.Journal of nuclear materials. 2002, Vol 307-11, pp 544-546, issn 0022-3115, 3 p., aConference Paper

Effect of martensite morphology on the strength differential effect in dual phase steels = Effet de la morphologie de la martensite sur l'effet différentiel de résistance mécanique dans des aciers à phases dualesWATT, D. F; JAIN, M.Scripta metallurgica. 1984, Vol 18, Num 12, pp 1379-1382, issn 0036-9748Article

Microanalysis of dual phase steels = Microanalyse d'aciers ferrito-martensitiquesWYCLIFFE, P.Scripta metallurgica. 1984, Vol 18, Num 4, pp 327-332, issn 0036-9748Article

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