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Effects of Cooling Rate on Transformations in a Fe-9 Pct Ni SteelFONDA, Richard W; SPANOS, George.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2014, Vol 45, Num 13, pp 5982-5989, issn 1073-5623, 8 p.Article

Effect of cooling rate on electrical properties and stability of ZPCCY-based varistor ceramicsNAHM, Choon-Woo.Materials chemistry and physics. 2003, Vol 82, Num 3, pp 726-732, issn 0254-0584, 7 p.Article

Influence of the ionization state variations on the cooling rateBYCHKOV, K. V; EGOROVA, S. B.Astronomičeskij žurnal. 1993, Vol 70, Num 3, pp 492-496, issn 0004-6299Article

Particularities of the cooling function in circumstellar flows. Influence of the excited ground-configuration terms on the cooling rateBYCHKOV, K. V; EGOROVA, S. B.Astronomičeskij žurnal. 1993, Vol 70, Num 4, pp 713-720, issn 0004-6299Article

Calculating cooling ratesby computer programming = Calcul des vitesses de refroidissement à l'aide d'un programme d'ordinateurBLODGETT, O. W.Welding journal. 1984, Vol 63, Num 3, pp 19-34, issn 0043-2296Article

Die Ermittlung der Abkuehlzeit von Gussstuecken in der Form:Ein Beitrag zur optimalen Prozessgestaltung = Cooling time determination of castings in the mouldHUEBLER, J.Giessereitechnik. 1986, Vol 32, Num 1, pp 26-30, issn 0016-9803Article

Research of surface-oxidation epitaxy of NiO films on cube textured Ni tapesSHI, D. Q; IONESCU, M; MCKINNON, J et al.Advances in cryogenic engineering. 2002, Vol 48, pp 525-530, issn 0065-2482, 6 p., bConference Paper

Berechnen der Abkühlzeit zwischen 800 und 500°C beim Schweissen mit Hilfe eines programmierbaren Taschenrechners = Calcul du temps de refroidissement entre 800 et 500°C à l'aide d'une calculatrice de poche programmable = Using a programmable pocket calculator to calculate the cooling time from 800 to 500 C for weldsHERBST, F. W.Schweissen + Schneiden. 1984, Vol 36, Num 7, pp 301-303, issn 0036-7184Article

INFLUENCE DE L'EVACUATION ARTIFICIELLE DE LA CHALEUR SUR LE DEVELOPPEMENT DES TENSIONS INTERNES ET DES DEFORMATIONS LORS DU SOUDAGEPROKHOROV NN; SAMOTOKHIN SS.1975; SVAROCH. PROIZVOD.; S.S.S.R.; DA. 1975; NO 5; PP. 3-6; BIBL. 6 REF.Article

INFLUENCE OF OXYGEN AND COOLING RATE ON THE MICROSTRUCTURE AND MICROHARDNESS OF PLASMA-SPRAYED MOLYBDENUM = INFLUENCE DE L'OXYGENE ET DE LA VITESSE DE REFROIDISSEMENT SUR LA MICROSTRUCTURE ET LA MICRODURETE DU MOLYBDENE DEPOSE PAR PROJECTION AU PLASMAKUIJPERS TW; ZAAT JH.1974; METALS TECHNOL.; G.B.; DA. 1974; VOL. 1; NO 3; PP. 142-150; ABS. ALLEM. FR.; BIBL. 14 REF.Article

HET ONTSTAN VAN EEN INHOMOGENE VERDELING VAN DE KOOLSTOF IN LASVERBINDINGEN IN ONGELEGEERD STAAL NA LANGZAME AFKOELING UIT HET AUSTENIETGEBIED = REPARTITION IRREGULIERE DU CARBONE DANS LES ASSEMBLAGES SOUDES EN ACIER NON ALLIE, DUE A UN REFROIDISSEMENT LENT DEPUIS LE DOMAINE AUSTENITIQUEVAN DEN BLINK WP; DIRKS AG.1975; LASTECHNIEK; NEDERL.; DA. 1975; VOL. 41; NO 12; PP. 221-225; BIBL. 13 REF.Article

Estimation of Cooling Rates During Close-Coupled Gas Atomization Using Secondary Dendrite Arm Spacing MeasurementMULLIS, Andrew M; FARRELL, Leane; COCHRANE, Robert F et al.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 2013, Vol 44, Num 4, pp 992-999, issn 1073-5615, 8 p.Article

Energy-landscape network approach to the glass transitionCARMI, Shai; HAVLIN, Shlomo; SONG, Chaoming et al.Journal of physics. A, Mathematical and theoretical (Print). 2009, Vol 42, Num 10, issn 1751-8113, 105101.1-105101.9Article

Dependence of microstructure on the cooling rate for a modified austenite medium Mn steelLIANG, Gao-Fei; XU, Zhen-Ming; LI, Jian-Guo et al.Journal of materials science. 2004, Vol 39, Num 7, pp 2569-2571, issn 0022-2461, 3 p.Article

Effect of Cooling Rates and Temperatures on Quality and Safety of Quahog Clams (Mercenaria mercenaria)GRANATA, Linda Ankenman; BOURNE, Dianne Wall; FLICK, George J et al.Journal of food protection. 2014, Vol 77, Num 5, pp 843-848, issn 0362-028X, 6 p.Article

Effects of Cooling Rates on Glass Formation and Magnetic Behavior for the Fe73.0C7.0Si3.3B5.0P8.7Mo3.0 Bulk Metallic GlassGAO, J. E; LI, H. X; JIANG, F et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2013, Vol 44, Num 5, pp 2004-2009, issn 1073-5623, 6 p.Conference Paper

Microstructure Size Control through Cooling Rate in Thermoelectric PbTe-Sb2Te3 CompositesIKEDA, Teruyuki; RAVI, Vilupanur A; SNYDER, G. Jeffrey et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2010, Vol 41, Num 3, pp 641-650, issn 1073-5623, 10 p.Article

INFLUENCE DE LA VITESSE DE REFROIDISSEMENT APRES RECUIT SUR L'EMBOUTISSABILITEKRAWIARZ J; MAZELA B; MAZUR A et al.1974; ZESZ. NAUK. AKAD. GORN.-HUTN. STANISLAWA STASZICA; POLSKA; DA. 1974; NO 434; PP. 107-123; ABS. ANGL. RUSSE; BIBL. 20 REF.Article

ETUDE METALLURGIQUE DU SOUDAGE PAR BOMBARDEMENT ELECTRONIQUE DE L'ALLIAGE U-0,2%VPRUNIER C; LINARD M; GUILLAUMIN J et al.1974; MEM. SCI. REV. METALLURG.; FR.; DA. 1974; VOL. 71; NO 718; PP. 461-473; ABS. ALLEM., ANGL., ESP.; BIBL. , (8 REF.Article

CALCULATION OF THE HARDNESS OF THE HEAT AFFECTED ZONE = CALCUL DE LA DURETE DE LA ZONE THERMIQUEMENT AFFECTEELEBEDEV BD; DUKEL'SKAYA OI; DASHEVSKAYA EA et al.1975; AUTOMAT. WELDG; G.B.; DA. 1975; VOL. 28; NO 3; PP. 9-10; BIBL. 6 REF.; TRAD. DU RUSSE: AVTOMAT. SVARKA, U.S.S.R., S.S.S.R., 1975, NO 3, 12-13Article

The Effect of Cooling Rate from Solution on the Lattice Misfit During Isothermal Aging of a Ni-Base SuperalloyCONNOR, L. D; STONE, H. J; COLLINS, D. M et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2014, Vol 45, Num 5, pp 2436-2444, issn 1073-5623, 9 p.Article

Cooling rate dependence of undercooling of pure Sn single drop by fast scanning calorimetryBIN YANG; YULAI GAO; CHANGDONG ZOU et al.Applied physics. A, Materials science & processing (Print). 2011, Vol 104, Num 1, pp 189-196, issn 0947-8396, 8 p.Article

Effect of Cooling Rate on the Precipitation Behavior of Carbonitride in Microalloyed Steel SlabFANJUN MA; GUANGHUA WEN; PING TANG et al.Metallurgical and materials transactions. B, Process metallurgy and materials processing science. 2011, Vol 42, Num 1, pp 81-86, issn 1073-5615, 6 p.Article

Relevance of cooling rates on formation from the melt of superconducting bismuth-based cuprate phasesNEVES, M. A; DA SILVEIRA, M. F; SOARES, V et al.Physica. C. Superconductivity and its applications. 2001, Vol 354, Num 1-4, pp 391-395Conference Paper

Formation of voids and oxide particles in silicon crystalsVORONKOV, V. V.Materials science & engineering. B, Solid-state materials for advanced technology. 2000, Vol 73, Num 1-3, pp 69-76, issn 0921-5107Conference Paper

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