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ON THE SPARK MACHINING OF CUBIC LAVES-PHASE COMPOUNDS WHICH CONTAIN GADOLINIUM.AYLING SH; CREAGH DC.1977; J. MATER. SCI.; G.B.; DA. 1977; VOL. 12; NO 10; PP. 2128-2130; BIBL. 3 REF.Article

MAGNETIC ANISOTROPY IN ERFE2 COMPOUNDHUQ M.1981; PHYS. STATUS SOLIDI, SECT. A, APPL. RES.; DDR; DA. 1981-05-16; VOL. 65; NO 1; PP. K29-K32; BIBL. 6 REF.Article

First-principles studies of ternary site occupancy in the C15 NbCr2 Laves phaseYAO, Q; SUN, J; ZHANG, Y et al.Acta materialia. 2006, Vol 54, Num 13, pp 3585-3591, issn 1359-6454, 7 p.Article

Titanium-based laves phase hydrides with high dissociation pressureMITROKHIN, S. V; VERBETSKY, V. N.International journal of hydrogen energy. 1997, Vol 22, Num 2-3, pp 219-222, issn 0360-3199Conference Paper

Al2(Mg,Ca) phases in Mg-Al-Ca ternary system : First-principles prediction and experimental identificationYU ZHONG; JING LIU; WITT, Ron A et al.Scripta materialia. 2006, Vol 55, Num 6, pp 573-576, issn 1359-6462, 4 p.Article

ENHANCEMENT OF THE LACHER AND REES THEORIES OF HYDROGEN ABSORPTION ISOTHERMSKIERSTEAD HA.1981; J. LESS-COMMON MET.; CHE; DA. 1981-02; VOL. 77; NO 2; PP. 281-285; BIBL. 6 REF.Article

MAGNETOSTRICTION OF LAVES PHASE RARE EARTH-NI2 COMPOUNDS = MAGNETOSTRICTION DES COMPOSES LANTHANIDE-NICKEL, PHASES DE LAVESABBUNDI R; CLARK AE; MCMASTERS OD et al.1980; IEEE TRANS. MAGN.; ISSN 0018-9464; USA; DA. 1980; VOL. 16; NO 5; PP. 1074-1077; BIBL. 20 REF.Conference Paper

STRUCTURAL RELATIONSHIP OF IN2BI AND TLBI2 PHASESELLNER M.1979; J. LESS-COMMON MET.; CHE; DA. 1979-11; VOL. 68; NO 1; PP. 99-103; BIBL. 15 REF.Article

CALCULATION OF THE ELECTROSTATIC ENERGY OF THE LAVES PHASES C14, C15, C36.RENNERT P; RADWAN AM.1976; PHYS. STATUS SOLIDI, B; ALLEM.; DA. 1976; VOL. 77; NO 2; PP. 615-621; ABS. ALLEM.; BIBL. 9 REF.Article

Hydrogen storage properties of the pseudo binary laves phase (Sc1-xZrx)(Co1-yNiy)2 systemANGSTRÖM, Jonas; JOHANSSON, Robert; HOLDT RUDE, Line et al.International journal of hydrogen energy. 2013, Vol 38, Num 23, pp 9772-9778, issn 0360-3199, 7 p.Article

MAGNETOCRYSTALLINE ANISOTROPIC PROPERTY OF NDCO2 COMPOUNDHUQ M.1980; PHYS. STATUS SOLIDI, SECT. A, APPL. RES.; DDR; DA. 1980-08-16; VOL. 60; NO 2; PP. 573-579; BIBL. 13 REF.Article

Precipitation of Fe2W laves phase and modeling of its direct influence on the strength of a 12Cr-2W steelQIANG LI.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2006, Vol 37, Num 1, pp 89-97, issn 1073-5623, 9 p.Article

Structural, magnetic, and magnetostrictive properties of Tb1-xNdx(Fe0.9B0.1)2 alloysREN, W. J; OR, S. W; CHAN, H. L. W et al.IEEE transactions on magnetics. 2004, Vol 40, Num 4, pp 2772-2774, issn 0018-9464, 3 p., 2Conference Paper

Investigations on the growth kinetics of Laves phase precipitates in 12% Cr creep-resistant steels: Experimental and DICTRA calculationsPRAT, O; GARCIA, J; ROJAS, D et al.Acta materialia. 2010, Vol 58, Num 18, pp 6142-6153, issn 1359-6454, 12 p.Article

Effect of Al additions on the oxidation behavior of Laves phase NbCr2 alloys at 1373 K and 1473 KHAIZHONG ZHENG; SHIQIANG LU; ZHU JIANYE et al.International journal of refractory metals & hard materials. 2009, Vol 27, Num 3, pp 659-663, issn 0958-0611, 5 p.Article

Dependence of solvus temperature of the Laves phase on (Mo+W+Re) contents in high Cr ferritic steelsMURATA, Y; KAMIYA, M; KUNIEDA, T et al.ISIJ international. 2005, Vol 45, Num 1, pp 101-106, issn 0915-1559, 6 p.Article

Site preference of early transition metal elements in C15 NbCr2CHAO JIANG.Acta materialia. 2007, Vol 55, Num 5, pp 1599-1605, issn 1359-6454, 7 p.Article

Phase field and room-temperature mechanical properties of the C15 laves phase in the Zr-Ta-Cr alloy systemOHTA, T; KANENO, Y; INOUE, H et al.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 2005, Vol 36, Num 3, pp 583-590, issn 1073-5623, 8 p.Conference Paper

Transition de phase avec point critique dans un système alliage métallique hydrogèneBORISOV, I. I; IRODOVA, A. V; LAVROVA, O. A et al.Fizika tverdogo tela. 1984, Vol 26, Num 11, pp 3380-3384, issn 0367-3294Article

Gustav E. R. Schulze's pioneering work on Laves phasesPAUFLER, Peter.Zeitschrift für Kristallographie. 2006, Vol 221, Num 5-7, pp 311-318, issn 0044-2968, 8 p.Article

Synthesis and Magnetostrictive Properties of High-Pr Content Sm1―xPrxFe1.9 Cubic Laves AlloysSHI, Y. G; XIE, R; QI, X. S et al.IEEE transactions on magnetics. 2011, Vol 47, Num 10, pp 2890-2892, issn 0018-9464, 3 p.Conference Paper

Tetrahedraddy close-packed phases in superalloys―a crystallographic study by TEMKUO, K. H.Indian journal of technology. 1990, Vol 28, Num 6-8, pp 385-393, issn 0019-5669Article

Iron-rich iron-titanium-silicon alloys with strengthening intermetallic laves phase precipitatesLÖFFLER, Falk; PALM, Martin; SAUTHOFF, Gerhard et al.Steel research international. 2004, Vol 75, Num 11, pp 766-772, issn 1611-3683, 7 p.Article

Hydrogen-induced amorphization of the Laves compound CeNi2 and the structural and thermal characteristics of the amorphous phaseYONG-GYOO KIM; SUNG-MAN LEE; JAI-YOUNG LEE et al.Journal of the less-common metals. 1991, Vol 169, Num 2, pp 245-256, issn 0022-5088Article

THE CERIUM METALLIC RADIUS IN AB2(C15) LAVES COMPOUNDS (A=CE)SERENI JG.1982; J. LESS. COMMON MET.; ISSN 0022-5088; CHE; DA. 1982; VOL. 84; NO 1; PP. 1-10; BIBL. 35 REF.Article

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