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kw.\*:("Acier inoxydable 316")

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COMPARISON OF THE FATIGUE AND CREEP-FATIGUE PROPERTIES OF UNIRRADIATED AND IRRADIATED TYPE 304 AND 312 STAINLESS STEEL AT 593OC (1100OF)BRINKMAN CR; KORTH GE; BEESTON JM et al.1972; ANCR-1078; U.S.A.; DA. 1972; PP. (50 P.); BIBL. 36 REF.; MICROFICHEReport

RECOVERY AND RECRYSTALLIZATION OF PROTOTYPIC FTR FUEL CLADDING: 20% CW 316 STAINLESS STEEL TUBING (RM-11)PAXTON MM; HOLMES JJ.1971; HEDL-TME-71-126; U.S.A.; DA. 1971; PP. (25 P.); BIBL. 11 REF.; MICROFICHEReport

Effect of uniaxial deformation to 50% on the sensitization process in 316 stainless steelRAMIREZ, L. M; ALMANZA, E; MURR, L. E et al.Materials characterization. 2004, Vol 53, Num 1, pp 79-82, issn 1044-5803, 4 p.Article

Regrowth of tritium release from tritium contaminated materialsONO, F; YAMAWAKI, M; TANAKA, S et al.Fusion technology. 1995, Vol 28, Num 3, pp 1250-1255, issn 0748-1896, 2Conference Paper

On power-law type relationships and the Ludwigson explanation for the stress-strain behaviour of AISI 316 stainless steelSAMUEL, K. G; RODRIGUEZ, P.Journal of materials science. 2005, Vol 40, Num 21, pp 5727-5731, issn 0022-2461, 5 p.Article

Simulation of the implantation of recoils and displacement production in the 316 stainless steel mercury-container vessel at SNSZHENG, Y; WECHSLER, M. S; DUDZIAK, D. J et al.Journal of nuclear materials. 2001, Vol 296, pp 61-65, issn 0022-3115Conference Paper

Characterization of surface barrier effect upon tritium permeation through stainless steel with auger electron spectroscopyHATANO, Y; MAETANI, T; SUGISAKI, M et al.Fusion technology. 1995, Vol 28, Num 3, pp 1182-1187, issn 0748-1896, 2Conference Paper

X-RAY FLUORESCENCE DETECTOR FOR STAINLESS STEEL-316JAIN SK; GUPTA PP.1977; ISOTOPENPRAXIS; DTSCH.; DA. 1977; VOL. 13; NO 5; PP. 169-171; ABS. ALLEM. RUSSE; BIBL. 4 REF.Article

FATIGUE-CRACK GROWTH IN 20% COLD-WORKED TYPE 316 STAINLESS STEEL AT ELEVATED TEMPERATURESJAMES LA.1972; NUCL. TECHNOL.; U.S.A.; DA. 1972; VOL. 16; NO 1; PP. 316-322; BIBL. 19 REF.Serial Issue

STUDIES OF VOID FORMATION IN PROTON-IRRADIATED TYPE 316 AND TITANIUM-MODIFIED 316 STAINLESS STEELSKEEFER DW; PARD AG; KRAMER D et al.1972; AI-AEC-13033; U.S.A.; DA. 1972; PP. (31 P.); BIBL. 15 REF.; MICROFICHEReport

A TECHNIQUE FOR PREPARING THE CROSS-SECTION OF PROTON-IRRADIATED 316 STAINLESS STEEL FOILS FOR TRANSMISSION ELECTRON MICROSCOPYSPURLING RA; RHODES CG.1972; J. MATER. NUCL.; PAYS-BAS; DA. 1972; VOL. 44; NO 3; PP. 341-344; BIBL. 9 REF.Serial Issue

EFFECTS OF INJECTED HELIUM ON VOID FORMATION IN PROTON-IRRADIATED TYPE 316 STAINLESS STEELKEEFER DW; PARD AG.1972; J. MATER. NUCL.; PAYS-BAS; DA. 1972; VOL. 45; NO 1; PP. 55-59; BIBL. 7 REF.Serial Issue

ESTIMATES OF CREEP-FATIGUE INTERACTION IN IRRADIATED AND UNIRRADIATED AUSTENITIC STAINLESS STEELSBRINKMAN CR; KORTH GE; HOBBINS RR et al.1972; NUCL. TECHNOL.; U.S.A.; DA. 1972; VOL. 16; NO 1; PP. 297-307; BIBL. 17 REF.Serial Issue

IRRADIATION EFFECTS ON STRUCTURAL MATERIALS. III. HIGH TEMPERATURE EMBRITTLEMENTBEMENT AL JR.1972; REV. ROUMAINE PHYS.; ROUMAN; DA. 1972; VOL. 17; NO 4; PP. 519-525; BIBL. 25 REF.Serial Issue

Grain boundary plane distributions in modified 316 LN steel exposed at elevated and cryogenic temperatures : Interface scienceDOWNEY, Steven T; BEMBRIDGE, Nicholas; KALU, Peter N et al.Journal of materials science. 2007, Vol 42, Num 23, pp 9543-9547, issn 0022-2461, 5 p.Article

The temperature dependence of abnormal grain growth and grain boundary faceting in 316L stainless steelJEONG SIK CHOI; DUK YONG YOON.ISIJ international. 2001, Vol 41, Num 5, pp 478-483, issn 0915-1559Article

Waste disposal assessment of HYLIFE-II structureLEE, J. D.Fusion technology. 1994, Vol 26, Num 1, pp 74-78, issn 0748-1896Article

Assessment of blasting induced effects on medical 316 LVM stainless steel by contacting and non-contacting thermoelectric power techniquesCARREON, H; BARRIUSO, S; BARRERA, G et al.Surface & coatings technology. 2012, Vol 206, Num 11-12, pp 2941-2946, issn 0257-8972, 6 p.Article

Stress relaxation in bending of AISI 316 at 773 KPOVOLO, F; MANSILLA, G. A; HERMIDA, E. B et al.Journal of materials science. 2006, Vol 41, Num 8, pp 2449-2455, issn 0022-2461, 7 p.Article

The use of a segmented tool for the analysis of electrochemical machiningMOUNT, A. R; HOWARTH, P. S; CLIFTON, D et al.Journal of applied electrochemistry. 2001, Vol 31, Num 11, pp 1213-1220, issn 0021-891XArticle

Direct growth of MWCNTs on 316 stainless steel by chemical vapor deposition: Effect of surface nano-features on CNT growth and structureHASHEMPOUR, Mazdak; VICENZO, Antonello; FU ZHAO et al.Carbon (New York, NY). 2013, Vol 63, pp 330-347, issn 0008-6223, 18 p.Article

Determination of the spatial distribution of trace elements in stainless steel by imaging microprobe secondary ion mass spectrometrySALAITA, G. N.Applied surface science. 1995, Vol 90, Num 4, pp 465-479, issn 0169-4332Article

On the origin of deformation microstructures in austenitic stainless steel : Part I. MicrostructuresLEE, E. H; BYUN, T. S; HUNN, J. D et al.Acta materialia. 2001, Vol 49, Num 16, pp 3269-3276, issn 1359-6454Article

Implications of specimen preparation and of surface contamination for the measurement of the grain boundary carbon concentration of steels using x-ray microanalysis in an UHV FESTEMCOUSENS, D. R; WOOD, B. J; WANG, J. Q et al.Surface and interface analysis. 2000, Vol 29, Num 1, pp 23-32, issn 0142-2421Article

Spectral-directional emittance of thermally oxidized 316 stainless steelJONES, P. D; NISIPEANU, E.International journal of thermophysics. 1996, Vol 17, Num 4, pp 967-978, issn 0195-928XArticle

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