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Results 1 to 25 of 530

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Some selected topics in creep cavitationDELPH, T. J.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2002, Vol 33, Num 2, pp 383-390, issn 1073-5623Article

A new experimental approach to multiaxial creep and creep fatigueMAILE, K; THELEN, D; SHENG, S et al.Journal of nuclear materials. 1990, Vol 171, Num 1, pp 108-112, issn 0022-3115Article

Creep theories compared by means of high sensitivity tensile creep data = Vergleich von Kriechtheorien durch hochempfindliche Kriechdaten von ZugversuchenSALIM, A.Res mechanica. 1987, Vol 20, Num 4, pp 343-359, issn 0143-0084Article

Growth of expanded antimonial lead alloy battery gridsNAI-YONG TANG; VALERIOTE, E. M. L.Journal of the Electrochemical Society. 1995, Vol 142, Num 7, pp 2144-2148, issn 0013-4651Article

DEFORMATION OF ALPHA -ZIRCONIUM IN THE VICINITY OF 0.5 TMEMACEWEN SR; WOO OT; FLECK RG et al.1981; METALL. TRANS., A; USA; DA. 1981-10; VOL. 12A; NO 10; PP. 1751-1759; BIBL. 71 REF.Article

Grain boundary sliding revisited : Developments in sliding over four decadesLANGDON, Terence G.Journal of materials science. 2006, Vol 41, Num 3, pp 597-609, issn 0022-2461, 13 p.Article

Evaluation of component creep behaviour by means of a threshold approachXU, H; MAILE, K; ROOS, E et al.Steel research. 1999, Vol 70, Num 2, pp 67-70, issn 0177-4832Article

High-temperature compressive creep of liquid phase sintered silicon carbideGALLARDO-LOPEZ, A; MUNOZ, A; MARTINEZ-FERNANDEZ, J et al.Acta materialia. 1999, Vol 47, Num 7, pp 2185-2195, issn 1359-6454Article

Final stage free sintering and sinter forging behavior of a yttria-stabilized tetragonal zirconiaOWEN, D. M; CHOKSHI, A. H.Acta materialia. 1998, Vol 46, Num 2, pp 719-729, issn 1359-6454Article

Einfluss des Kriechens auf das Ausscheidungsgefuege bei Langzeitbeanspruchung - Untersuchungen an einer Fe-Cu-Modellegierung = Influence of creep on the precipitate structure under conditions of long-term creep - investigation of a Fe-Cu model alloySCHULZE, O; SAUTHOFF, G.Zeitschrift für Metallkunde. 1983, Vol 74, Num 8, pp 504-512, issn 0044-3093Article

Two-dimensional rheology: A device for measuring the rheology of interfacial filmsLÄUGER, J; BROWN, E. F.American laboratory (Fairfield). 2003, Vol 35, Num 23, pp 12-13, issn 0044-7749, 2 p.Article

Influence of boundary conditions on the finite element creep stress and strain analysis of a double shear specimen for isotropic creep conditionsYUE, Z. F; PROBST-HEIN, M; EGGELER, G et al.Materialwissenschaft und Werkstofftechnik. 2002, Vol 33, Num 7, pp 404-409, issn 0933-5137Article

Creep-buckling of cellular solidsCOCKS, A. C. F; ASHBY, M. F.Acta materialia. 2000, Vol 48, Num 13, pp 3395-3400, issn 1359-6454Article

Ueber die Mechanismen des Porenwachstums in kriechbeanspruchten Werkstoffen = On the mechanisms of cavity growth in creeping materialsARZT, E.Zeitschrift für Metallkunde. 1984, Vol 75, Num 3, pp 206-212, issn 0044-3093Article

A dynamic percolation approach to the Andrade creep = Une méthode d'infiltration dynamique relative au fluage d'Andrade = Eine dynamische Perkolationsmethode fuer das Andrade-KriechenSCHOENHALS, A; DONTH, E.Physica status solidi. B. Basic research. 1984, Vol 124, Num 2, pp 515-524, issn 0370-1972Article

Transient creep in iron at low stresses and homologous temperatures 0.40-0.54 = Uebergangskriechen in Eisen bei niedrigen Spannungen und homologen Temperaturen zwischen 0,40 und 0,54NOVOTNY, J; FIALA, J; CADEK, J et al.Acta metallurgica. 1983, Vol 31, Num 10, pp 1697-1703, issn 0001-6160Article

Simultaneous tomography and diffraction analysis of creep damagePYZALLA, A; CAMIN, B; BUSLAPS, T et al.Science (Washington, D.C.). 2005, Vol 308, Num 5718, pp 92-95, issn 0036-8075, 4 p.Article

Characterization of creep deformation mechanism and evaluation of dislocation mobility of Modified 9Cr-1Mo steel by stress change testHAYAKAWA, Hiroyuki; TERADA, Daisuke; YOSHIDA, Fuyuki et al.Nippon Kinzoku Gakkaishi (1952). 2003, Vol 67, Num 1, pp 22-26, issn 0021-4876, 5 p.Article

Observation and interpretation of some microstructural features of low stress creepMCNEE, K. R; GREENWOOD, G. W; JONES, H et al.Scripta materialia. 2002, Vol 47, Num 9, pp 619-623, issn 1359-6462Article

Harper-Dorn creep and specimen sizeNES, E; BLUM, W; EISENLOHR, P et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2002, Vol 33, Num 2, pp 305-310, issn 1073-5623Article

An overview of power-law creep in polycrystalline β-titaniumSCHUH, C; DUNAND, D. C.Scripta materialia. 2001, Vol 45, Num 12, pp 1415-1421, issn 1359-6462Article

A viscoplastic constitutive model to represent the material behaviour during hot rolling of steelFARRUGIA, D. C. J; ZHOU, M; INGHAM, P. M et al.Journal de physique. IV. 1999, Vol 9, Num 9, pp 73-81, issn 1155-4339Conference Paper

Grain boundary modification during long-term creep in silicon nitrideLOFAJ, F; GU, H; OKADA, A et al.Materials science forum. 1999, pp 621-624, issn 0255-5476, isbn 0-87849-823-0Conference Paper

Role of interfacial sliding on the longitudinal creep response of continuous fiber reinforced metal-matrix compositesNAGARAJAN, R; DUTTA, I; FUNN, J. V et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 1999, Vol 259, Num 2, pp 237-252, issn 0921-5093Conference Paper

Densification and crystallization of glass powder compacts during constant heating rate sinteringBOCCACCINI, A. R; STUMPFE, W; TAPLIN, D. M. R et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 1996, Vol 219, Num 1-2, pp 26-31, issn 0921-5093Article

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