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Results 1 to 25 of 87

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Size effect on crack-tip creepLALITHA CHATTOPADHYAY.Engineering fracture mechanics. 1996, Vol 53, Num 2, pp 309-310, issn 0013-7944Article

Factors influencing creep model equation selectionHOLDSWORTH, S. R; ASKINS, M; SPIGARELLI, S et al.International journal of pressure vessels and piping. 2008, Vol 85, Num 1-2, pp 80-88, issn 0308-0161, 9 p.Conference Paper

Fatigue strength variation by crack initiation origin of surface hardened Cr-Mo steel alloySONG, Sam-Hong; CHOI, Byoung-Ho.Journal of materials science. 2004, Vol 39, Num 1, pp 335-338, issn 0022-2461, 4 p.Article

A multi-level model for the analysis and prediction of creep and creep fracture of 2.25Cr-1Mo steel tubesEVANS, M.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2010, Vol 528, Num 1, pp 500-512, issn 0921-5093, 13 p.Article

Full size internal pressure creep test for welded P91 hot reheat elbowNONAKA, Isamu; ITO, Takuya; TAKEMASA, Fumio et al.International journal of pressure vessels and piping. 2007, Vol 84, Num 1-2, pp 97-103, issn 0308-0161, 7 p.Article

Influence of heat treatments on microstructural parameters and mechanical properties of P92 steelENNIS, P. J; ZIELINSKA-LIPIEC, A; CZYRSKA-FILEMONOWICZ, A et al.Materials science and technology. 2000, Vol 16, Num 10, pp 1226-1232, issn 0267-0836Conference Paper

Microstructure in Martensitic Steel DIN 1.4926 after 800 MeV proton irradiationYONG DAI; BAUER, G. S; CARSUGHI, F et al.Journal of nuclear materials. 1999, Vol 265, Num 1-2, pp 203-207, issn 0022-3115Article

Evolution of precipitated phases during prolonged tempering in a 9%Cr1%MoVNb ferritic―martensitic steel: Influence on creep performanceZAVALETA GUTIERREZ, N; DE CICCO, H; MARRERO, J et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2011, Vol 528, Num 12, pp 4019-4029, issn 0921-5093, 11 p.Article

Effect of microstructure on hydrogen diffusion and trapping in a modified 9%Cr-1%Mo steelHURTADO NORENA, C; BRUZZONI, P.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2010, Vol 527, Num 3, pp 410-416, issn 0921-5093, 7 p.Article

Creep crack growth in service-exposed weld metal of 2.25CrlMoANDERSSON, Henrik C. M; SANDSTRÖM, Rolf.International journal of pressure vessels and piping. 2001, Vol 78, Num 11-12, pp 749-755, issn 0308-0161Conference Paper

Licht- und elektronenmikroskopische Untersuchungen zur Beschreibung des Zeitstandverhaltens von Schweissverbindungen moderner Kraftwerkswerkstoffe = The use of light and electron-microscopic investigations to characterise the creep behaviour of welded joints in modern power station materialsLETOFSKY, Ernst; CERJAK, H; WARBICHLER, P et al.Praktische Metallographie. 2000, Vol 37, Num 9, pp 509-521, issn 0032-678XArticle

An experimental technique for the measurement of temperature fields for the orthogonal cutting in high speed machiningSUTTER, G; FAURE, L; MOLINARI, A et al.International journal of machine tools & manufacture. 2003, Vol 43, Num 7, pp 671-678, issn 0890-6955, 8 p.Article

Structure and properties of low-carbon nitrogen-containing austenite-ferrite corrosion-resistant steelsFEL'DGANDLER, E. G; SHLYAMNEV, A. P.Metal science and heat treatment. 1995, Vol 37, Num 9-10, pp 356-360, issn 0026-0673Article

Influence of microstructural changes due to tempering at 923 K and 1,023 K on magnetic Barkhausen noise behavior in normalized 2.25Cr-1Mo ferritic steelRAJ, B; MOORTHY, V; VAIDYANATHAN, S et al.Materials evaluation. 1997, Vol 55, Num 1, pp 81-84, issn 0025-5327Article

Basis of a coating choice methodology in frettingCARTON, J.-F; BANNES, A.-B; VINCENT, L et al.Wear. 1995, Vol 185, Num 1-2, pp 47-57, issn 0043-1648Article

The effect of stress relaxation loading cycles on the creep behaviour of 2.25Cr-1Mo pressure vessel steelHUMPHRIES, S. R; YEUNG, W. Y; CALLAGHAN, M. D et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2011, Vol 528, Num 3, pp 1216-1220, issn 0921-5093, 5 p.Article

Effect of microstructure on appearance of near-threshold fatigue fracture in Cr-Mo-V steelZHU, Ming-Liang; XUAN, Fu-Zhen.International journal of fracture. 2009, Vol 159, Num 2, pp 111-120, issn 0376-9429, 10 p.Article

Creep deformation characterization of heat resistant steel by stress change testHAYAKAWA, Hiroyuki; NAKASHIMA, Satoshi; KUSUMOTO, Junichi et al.International journal of pressure vessels and piping. 2009, Vol 86, Num 9, pp 556-562, issn 0308-0161, 7 p.Conference Paper

Laser surface alloying with a CO2 laser: Surface hardening of AISI 4135 H chromium-molybdenum steelHLAWKA, F; CORNET, A.Advanced engineering materials (Print). 2003, Vol 5, Num 9, pp 641-647, issn 1438-1656, 7 p.Article

Development of a multiple linear regression model to estimate the ductile-brittle transition temperature of ferritic low-alloy steels based on the relationship between small punch and Charpy V-notch testsSAUCEDO-MUNOZ, Maribel L; MATSUSHITA, Takashi; HASHIDA, Toshijuki et al.Journal of testing and evaluation. 2000, Vol 28, Num 5, pp 352-358, issn 0090-3973Article

Method for improving parametric creep rupture life of 2.25Cr-1Mo steel using artificial neural networksEVANS, M.Materials science and technology. 1999, Vol 15, Num 6, pp 647-658, issn 0267-0836Article

A new relationship between the stress multipliers of Garofalo equation for constitutive analysis of hot deformation in modified 9Cr―1Mo (P91) steelPHANIRAJ, C; SAMANTARAY, Dipti; MANDAL, Sumantra et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2011, Vol 528, Num 18, pp 6066-6071, issn 0921-5093, 6 p.Article

Nondestructive evaluation for remanent life of modified 9Cr-1 Mo steel by reversible magnetic permeabilityBONG, Chung-Jong; RYU, Kwon-Sang; NAHM, Seung-Hoon et al.Journal of magnetism and magnetic materials. 2011, Vol 323, Num 5, pp 379-382, issn 0304-8853, 4 p.Article

Optimization of hot working parameters for thermo-mechanical processing of modified 9Cr―1Mo (P91) steel employing dynamic materials modelSAMANTARAY, Dipti; MANDAL, Sumantra; BHADURI, A. K et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2011, Vol 528, Num 15, pp 5204-5211, issn 0921-5093, 8 p.Article

Influences of Mo substitution by W on the precipitation kinetics of secondary phases and the associated localized corrosion and embrittlement in 29% Cr ferritic stainless steelsPARK, Chan-Jin; AHN, Myung-Kyu; KWON, Hyuk-Sang et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2006, Vol 418, Num 1-2, pp 211-217, issn 0921-5093, 7 p.Article

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