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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

DIFFUSION AND DEFORMATION CONTROLLED CREEP CRACK GROWTHMILLER DA; PILKINGTON R.1980; METALL. TRANS., A; USA; DA. 1980-01; VOL. 11A; NO 1; PP. 177-180; BIBL. 31 REF.Article

CO-ORDINATE NET FOR MICRODEFORMATION MEASUREMENT AT ELEVATED TEMPERATURESKORNIENKO VT; REKOV AM; KORNIENKO EH O et al.1980; ZAVOD. LAB.; SUN; DA. 1980-10; VOL. 46; NO 10; PP. 961-962; BIBL. 5 REF.Article

CONSTRAINTS ON THE DIFFUSIVE CAVITATION OF ISOLATED GRAIN BOUNDARY FACETS IN CREEPING POLYCRYSTALSRICE JR.1981; ACTA METALL.; USA; DA. 1981-04; VOL. 29; NO 4; PP. 675-681; BIBL. 11 REF.Article

OBSERVATIONS OF ANELASTIC BACKFLOW FOLLOWING STRESS REDUCTIONS DURING CREEP OF PURE METALSGIBELING JC; NIX WD.1981; ACTA METALL.; USA; DA. 1981-10; VOL. 29; NO 10; PP. 1769-1784; BIBL. 48 REF.Article

DEFORMATION MECHANISMS IN H.C.P. METALS AT ELEVATED TEMPERATURES. PT. 1:CREEP BEHAVIOR OF MAGNESIUMVAGARALI SS; LANGDON TG.1981; ACTA METALL.; USA; DA. 1981-12; VOL. 29; NO 12; PP. 1969-1982; BIBL. 35 REF.Article

INDENTATION HARDNESS AND HOT PRESSINGMATTHEWS JR.1980; ACTA METALL.; USA; DA. 1980-03; VOL. 28; NO 3; PP. 311-318; BIBL. 24 REF.Article

KRIECH- UND SCHWINDBERECHNUNGEN AN STAHLBETON- UND SPANNBETONQUERSCHNITTEN UND EINIGE PRAEZISIERUNGEN DER LANGZEITKENNWERTE UND BERECHNUNGSGRUNDLAGEN = CREEP AND SHRINKAGE CALCULATIONS ON REINFORCED-CONCRETE AND PRESTRESSED-CONCRETE CROSS-SECTIONS AND SOME CORRECTIONS OF LONG-TERM CHARACTERISTIC VALUES AND FUNDAMENTALS OF CALCULATION = CALCULS DU FLUAGE ET DU RETRAIT SUR SECTIONS EN BETONS ARME ET EN BETON PRECONTRAINT ET QUELQUES PRECISIONS SUR LES CARACTERISTIQUES DE LONGUE DUREE ET LES BASES DE CALCULKRUEGER W.1982; WISSENSCHAFTL. Z. TECH. UNIV. DRESD.; DDR; DA. 1982; VOL. 31; NO 3; PP. 111-119; BIBL. 17 REF.Article

CREEP AND SUBSTRUCTURE FORMATION IN AN AL-5% MG SOLID SOLUTION ALLOYYAVARI P; MOHAMED FA; LANGDON TG et al.1981; ACTA METALL.; USA; DA. 1981-08; VOL. 29; NO 8; PP. 1495-1507; BIBL. 46 REF.Article

MICROSTRUCTURE OF ALUMINIUM DURING CREEP AT INTERMEDIATE TEMPERATURE. PT. 1:DISLOCATION NETWORKS AFTER CREEPCAILLARD D; MARTIN JL.1982; ACTA METALL.; USA; DA. 1982-02; VOL. 30; NO 2; PP. 437-445; BIBL. 48 REF.Article

DEFORMATION MECHANISM DIAGRAMS WITH THE STRAIN RATE AS A COORDINATEOIKAWA H.1980; MATER. SCI. ENG.; CHE; DA. 1980-10; VOL. 45; NO 3; PP. 211-215; BIBL. 13 REF.Article

CREEP BEHAVIOUR OF ZR + 4.5% SN + 1% MO IN 300-750 K TEMPERATURE RANGENOVAK M; HAMERSKY M.1981; CZECH. J. PHYS., B; CSK; DA. 1981-03; VOL. 31; NO 3; PP. 338-341; BIBL. 12 REF.Conference Paper

X-RAY DIFFRACTION STUDY OF SUBGRAIN MISORIENTATION DURING HIGH TEMPERATURE CREEP OF TIN SINGLE CRYSTALS = ROENTGENBEUGUNGSUNTERSUCHUNG DER SUBKORN-FEHLORIENTIERUNG WAEHREND DES HOCHTEMPERATURKRIECHENS VON ZINNEINKRISTALLEN = ETUDE PAR DIFFRACTION DES RAYONS X DE L'ORIENTATION DES DEFAUTS DES SOUS-GRAINS PENDANT LE FLUAGE A HAUTE TEMPERATURE DES MONOCRISTAUX D'ETAINSUH SH; COHEN JB; WEERTMAN J et al.1983; METALL. TRANS., A; ISSN 0360-2133; USA; DA. 1983-01; VOL. 14A; NO 1; PP. 117-126; BIBL. 41 REF.Article

MICROSTRUCTURE OF ALUMINIUM DURING CREEP AT INTERMEDIATE TEMPERATURE. PT. 2:IN SITU STUDY OF SUBBOUNDARY PROPERTIESCAILLARD D; MARTIN JL.1982; ACTA METALL.; USA; DA. 1982-04; VOL. 30; NO 4; PP. 791-798; BIBL. 31 REF.Article

HIGH TEMPERATURE DEFORMATION OF CU-SIO2 ALLOY SINGLE CRYSTALSTAKADA J; ADACHI M; SHIMIZU M et al.1981; J. JAP. INST. MET.; JPN; DA. 1981-09; VOL. 45; NO 9; PP. 977-983; BIBL. 15 REF.Article

THE DISTRIBUTION OF OROWAN LOOPS AND THE WORK-HARDENING IN A DISPERSION-HARDENED ALLOYMATSUURA K.1981; ACTA METALL.; USA; DA. 1981-04; VOL. 29; NO 4; PP. 643-650; BIBL. 23 REF.Article

CREEP RUPTURE UNDER NON-PROPORTIONAL LOADINGHAYHURST DR; TRAMPCZYNSKI WA; LECKIE FA et al.1980; ACTA METALL.; USA; DA. 1980-09; VOL. 28; NO 9; PP. 1171-1183; BIBL. 19 REF.Article

EFFECT OF INTERMITTENT LOADING ON CREEP PROPERTIES OF SUS 304 STAINLESS STEELYAGI K; KUBO K; TANAKA C et al.1979; TRANS. IRON STEEL INST. JPN.; JPN; DA. 1979-10; VOL. 19; NO 10; PP. 628-634; BIBL. 15 REF.Conference Paper

CAVITY GROWTH AND CREEP IN COPPER AT LOW STRESSESHANNA MD; GREENWOOD GW.1982; ACTA METALL.; USA; DA. 1982-03; VOL. 30; NO 3; PP. 719-724; BIBL. 15 REF.Article

AKTIVACNI PLOCHA MONOKRYSTALU KADMIA DEFORMOVANYCH V CREEPU V INTERVALU TEPLOT 1,5-78 K = AKTIVIERUNGSFLAECHE VON KRIECHVERFORMTEN CADMIUM-EINKRISTALLEN IM TEMPERATURBEREICH VON 1,5 BIS 78 K = ACTIVATION AREA OF CADMIUM SINGLE CRYSTALS DEFORMED IN CREEP IN THE TEMPERATURE RANGE FROM 1.5 TO 78 K = ZONE D'ACTIVATION DE MONOCRISTAUX DE CADMIUM DEFORMEE PAR FLUAGE, A DES TEMPERATURES COMPRISES ENTRE 1,5 ET 78 KHAMERSKY M; NAVRATIL V; LUKAC P et al.1982; KOVOVE MATER.; CSK; DA. 1982; VOL. 20; NO 3; PP. 288-293; BIBL. 15 REF.Article

UMFORMEN IM ZUSTAND DES KRIECHENSKOPYSKIJ BD.1982; KUZN.-STAMP. PROIZVOD.; SUN; DA. 1982-05; VOL. 24; NO 5; PP. 14-18; BIBL. 9 REF.Article

NUCLEATION AND GROWTH OF CREEP CAVITIES IN A TYPE 347 STEEL = NUCLEATION ET CROISSANCE DES CAVITES DE FLUAGE DANS UN ACIER DE TYPE 347NEEDHAM NG; GLADMAN T.1980; MET. SCI.; ISSN 0306-3453; GBR; DA. 1980; VOL. 14; NO 2; PP. 64-72; BIBL. 36 REF.Article

CREEP DEFORMATION OF ELECTROLYTIC IRON CAUSED BY CATHODIC HYDROGEN CHARGINGHAGI H; HAYASHI Y; OTHANI N et al.1980; J. JAP. INST. MET.; JPN; DA. 1980-12; VOL. 44; NO 12; PP. 1440-1447; BIBL. 39 REF.Article

Creep compliances and concentration factors of viscoelastic composite materialsMESKE, R; SCHNACK, E.Zeitschrift für angewandte Mathematik und Mechanik. 1998, Vol 78, pp S619-S620, issn 0044-2267, SUP2Conference Paper

A framework for modeling creep in pure metalsBREHM, Holger; DAEHN, Glenn S.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2002, Vol 33, Num 2, pp 363-371, issn 1073-5623Article

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