The role of defects on thermophysical properties : thermal expansion of V, Nb, Ta, Mo and W
暂无分享,去创建一个
[1] A. Tarasov,et al. Nuclear shadowing in DIS at moderately small xB , 1998, hep-ph/9812398.
[2] S. Saxena,et al. Thermal Expansion of Periclase (MgO) and Tungsten (W) to Melting Temperatures , 1997 .
[3] R. Reeber,et al. Thermal expansion and lattice parameters of group IV semiconductors , 1996 .
[4] F. Guyot,et al. Microscopic anharmonicity and equation of state of MgSiO3‐perovskite , 1996 .
[5] Y. Kraftmakher. On equilibrium point defects in metals , 1996 .
[6] R. Reeber,et al. A model for evaluating and predicting high-temperature thermal expansion , 1996 .
[7] R. Reeber,et al. Thermal expansion of alkali halides at high pressure: NaCl as an example , 1996 .
[8] R. Reeber,et al. Thermal expansion and molar volume of MgO, periclase, from 5 to 2900 K , 1995 .
[9] R. Reeber,et al. High temperature thermal expansion of alkali halides , 1995 .
[10] R. Reeber,et al. Thermal Expansion of Caesium Halides with the CsCl Structure , 1995 .
[11] R. Reeber,et al. A simplified model for predicting high pressure thermal expansion of MgO , 1995 .
[12] R. Cohen,et al. High pressure effects on thermal properties of MgO , 1995, mtrl-th/9503007.
[13] R. Reeber,et al. Thermal defects and thermal expansion of ionic crystals at high temperatures , 1994 .
[14] Munish Kumar. Thermal expansivity and equation of state up to transition pressure and melting temperature: NaCl as an example , 1994 .
[15] T. Hehenkamp. Absolute vacancy concentrations in noble metals and some of their alloys , 1994 .
[16] Baroni,et al. Ab initio lattice dynamics of diamond. , 1993, Physical review. B, Condensed matter.
[17] M. Kumar,et al. Pressure dependence of thermal expansivity for alkali halides , 1993 .
[18] S. Saxena,et al. Assessed data on heat capacity, thermal expansion, and compressibility for some oxides and silicates , 1992 .
[19] O. Anderson,et al. High‐temperature elastic constant data on minerals relevant to geophysics , 1992 .
[20] Kluin,et al. Comparison of positron-lifetime spectroscopy and differential dilatometric measurements of equilibrium vacancies in copper and alpha -Cu-Ge alloys. , 1991, Physical review. B, Condensed matter.
[21] Ared Cezairliyan,et al. Interferometric technique for the subsecond measurement of thermal expansion at high temperatures: Applications to refractory metals , 1991 .
[22] H. Küppers,et al. THE PRECISION OF THERMAL-EXPANSION TENSORS OF TRICLINIC AND MONOCLINIC CRYSTALS , 1991 .
[23] Chan,et al. Theory of the thermal expansion of Si and diamond. , 1991, Physical review. B, Condensed matter.
[24] R. Chanchani,et al. Temperature dependence of thermal expansion of ceramics and metals for electronic packages , 1990 .
[25] A. Miiller,et al. Thermal expansion of tungsten in the range 1500–3600 K by a transient interferometric technique , 1990 .
[26] M. Mehl,et al. Calculated elastic and thermal properties of MGO at high pressures and temperatures , 1990 .
[27] Agnon,et al. Thermodynamic and elastic properties of a many-body model for simple oxides. , 1990, Physical review. B, Condensed matter.
[28] I. Blech,et al. Measurement of thermal expansion coefficients of W, WSi, WN, and WSiN thin film metallizations , 1990 .
[29] Gong,et al. van der Waals forces in a Monte Carlo and lattice-dynamics study of the thermal and elastic properties of a rigid-ion model of potassium chloride. , 1989, Physical review. B, Condensed matter.
[30] Scheffler,et al. Negative thermal expansion of diamond and zinc-blende semiconductors. , 1989, Physical review letters.
[31] M. Kaneko,et al. A new apparatus for measuring thermal expansion of thin films , 1989 .
[32] D. G. Reichel,et al. Thermal expansion of tungsten carbide at low temperature , 1989 .
[33] Gong,et al. Monte Carlo and lattice-dynamics studies of the thermal and elastic properties of a rigid-ion model of sodium chloride. , 1988, Physical review. B, Condensed matter.
[34] Varotsos. Thermodynamic criterion for the analysis of point-defect data in solids. , 1988, Physical review. B, Condensed matter.
[35] G. White. The heat capacity of transition metals at high temperatures , 1988 .
[36] Yoshio Waseda,et al. High-temperature thermal expansion of six metallic elements measured by dilatation method and X-ray diffraction , 1988 .
[37] S. Steinemann,et al. Thermal expansion and elastic properties of Nb-Mo alloys , 1987 .
[38] T. I. Malyutina,et al. Thermal expansion of new materials for standard measures , 1986 .
[39] Ralph O. Simmons,et al. Thermodynamics of Point Defects and Their Relation With Bulk Properties , 1985 .
[40] A. Miiller,et al. Thermal expansion of molybdenum in the range 1500–2800 K by a transient interferometric technique , 1985 .
[41] P. Gustafson. Evaluation of the thermodynamic properties of tungsten , 1985 .
[42] L. L. Boyer. Bonding and equation of state for MgO , 1983 .
[43] A. Miiller,et al. Transient interferometric technique for measuring thermal expansion at high temperatures: Thermal expansion of tantalum in the range 1500–3200 K , 1982 .
[44] M. Hart. Bragg angle measurement and mapping , 1981 .
[45] W. Macdonald,et al. Thermodynamic properties of fcc metals at high temperatures , 1981 .
[46] P. Varotsos,et al. Calculation of diffusion coefficients at any temperature and pressure from a single measurement. II. Heterodiffusion , 1980 .
[47] C. Falter,et al. Determination of the high‐temperature bulk modulus from self‐diffusion experiments demonstrated for tungsten , 1980 .
[48] H. Bilz,et al. Phonon Dispersion Relations in Insulators , 1979 .
[49] H. Schaefer,et al. High–temperature positron annihilation and vacancy formation in refractory metals , 1979 .
[50] Isao Suzuki,et al. Thermal expansion of single-crystal manganosite , 1979 .
[51] Larry L. Boyer,et al. Calculation of Thermal Expansion, Compressiblity, an Melting in Alkali Halides: NaCl and KCl , 1979 .
[52] P. Varotsos,et al. Calculation of the formation volume of vacancies in solids , 1978 .
[53] G. K. White,et al. Thermal expansion of Cr, Mo and W at low temperatures , 1978 .
[54] M. Mueller. The lattice parameter of tantalum , 1977 .
[55] L. Finger,et al. The thermal expansion of diopside to 800 degrees C and a refinement of the crystal structure at 700 degrees C , 1976 .
[56] R. Reeber. Thermal expansion of some group IV elements and ZnS , 1975 .
[57] R B Roberts,et al. Absolute dilatometry using a polarization interferometer , 1975 .
[58] R. Roberge. Lattice parameter of niobium between 4.2 and 300 K , 1975 .
[59] J. G. Collins,et al. Thermal expansion of solids at low temperatures , 1974 .
[60] H. D. Merchant,et al. Equations of state and thermal expansion of alkali halides , 1973 .
[61] M. Klein,et al. Anharmonic effects and the lattice dynamics of insulators , 1971 .
[62] D. Westlake,et al. Thermal expansion of vanadium and vanadium hydride at low temperature , 1970 .
[63] R. Wanner. Debye temperature of 24 cubic elements from elastic constants , 1970 .
[64] M. Straumanis,et al. Lattice parameters, thermal expansion coefficients and densities of Nb, and of solid solutions Nb–O and Nb–N–O and their defect structure , 1970 .
[65] E. Gilbert,et al. Thermal expansivities, thermal conductivities, and densities of vanadium, titanium, chromium and some vanadium-base alloys: A comparison with austenitic stainless steel , 1969 .
[66] R. Reeber. Low temperature thermal expansion of wurtzite-phases of IIB-VIB compounds / , 1968 .
[67] G. V. Bunton,et al. A method for the comparison of the intensities of two light beams from a double optical lever system , 1968 .
[68] F. Birch,et al. Thermal expansion at high pressures , 1968 .
[69] K. Anders. Thermische Ausdehnung von Metallen bei tiefen Temperaturen , 1964 .
[70] J. Shapiro,et al. A SENSITIVE DILATOMETER FOR USE AT LOW TEMPERATURES , 1964 .
[71] R. G. Ross,et al. High temperature X-ray metallography: I. A new debye-scherrer camera for use at very high temperatures II. A new parafocusing camera III. Applications to the study of chromium, hafnium, molybdenum, rhodium, ruthenium and tungsten , 1963 .
[72] R. Simmons,et al. Measurement of Equilibrium Concentrations of Vacancies in Copper , 1963 .
[73] G. White. Thermal expansion of vanadium, niobium, and tantalum at low temperatures , 1962 .
[74] J. B. Wachtman,et al. Linear Thermal Expansion of Aluminum Oxide and Thorium Oxide from 100° to 1100°K , 1962 .
[75] K. Andres. The measurement of thermal expansion of metals at low temperatures , 1961 .
[76] M. Straumanis,et al. Lattice Parameter and Coefficient of Thermal Expansion of Vanadium , 1961 .
[77] G. White. Measurement of thermal expansion at low temperatures , 1961 .
[78] W. Parrish. Results of the IUCr precision lattice‐parameter project , 1960 .
[79] T. Barron. LXXXII. On the thermal expansion of solids at low temperatures , 1955 .
[80] H. L. Johnston,et al. High Temperature Structure and Thermal Expansion of Some Metals as Determined by X‐Ray Diffraction Data. I. Platinum, Tantalum, Niobium, and Molybdenum , 1951 .
[81] P. Hidnert,et al. Thermal expansion of columbium , 1933 .
[82] P. Hidnert. Thermal expansion of tantalum , 1929 .
[83] A. G. Worthing. Physical Properties of Well Seasoned Molybdenum and Tantalum as a Function of Temperature , 1926 .
[84] J. Disch. Über die Wärmeausdehnung einiger Stoffe. II , 1921 .
[85] I. Langmuir. The characteristics of tungsten filaments as functions of temperature , 1916 .
[86] Rajiv K. Kalia,et al. Computer-aided design of high-temperature materials , 1999 .
[87] Robert R. Reeber,et al. Thermal expansion, molar volume and specific heat of diamond from 0 to 3000k , 1996 .
[88] M. Kumar,et al. Analysis of thermal expansion for alkali halide crystals using the isobaric equation of state , 1991 .
[89] T. Hahn. Thermal expansion 8 , 1984 .
[90] G. White,et al. Thermal expansion of reference materials: tungsten and α−Al2O3 , 1983 .
[91] R. S. Krishnan,et al. Thermal expansion of crystals , 1979 .
[92] S. P. Srivastava. High temperature dependence of thermal expansion coefficient of lithium fluoride—an interatomic potential approach☆ , 1978 .
[93] G. A. Slack,et al. Thermal expansion of some diamondlike crystals , 1975 .
[94] S. I. Novikova. Thermal expansion of solids , 1974 .
[95] R. C. Weast. CRC Handbook of Chemistry and Physics , 1973 .
[96] G. Graham,et al. Thermal expansion--1971 , 1972 .
[97] A. A. Maradudin,et al. Theory of lattice dynamics in the harmonic approximation , 1971 .
[98] E. Rantavuori,et al. The Debye Temperature and the Coefficient of Thermal Expansion for V and Nb by X‐Ray Diffraction , 1970 .
[99] Y. S. Touloukian. Thermophysical properties of matter , 1970 .
[100] A. P. Nasekovskii. Temperature dependence of the thermal-expansion coefficient of certain polycrystalline materials , 1969 .
[101] H. W. King,et al. Precision Lattice Parameter Determination at Liquid Helium Temperatures by Double-Scanning Diffractometry , 1966 .
[102] J. G. Collins,et al. Thermal expansion of solids , 1964 .
[103] Robert Bruce Lindsay,et al. Physical Properties of Crystals , 1957 .
[104] M. Born,et al. Dynamical Theory of Crystal Lattices , 1954 .
[105] H. Erfling. Studien zur thermischen Ausdehnung fester Stoffe in tiefer Temperatur. III (Ca, Nb, Th, V, Si, Ti, Zr) , 1942 .
[106] F. C. Nix,et al. The Thermal Expansion of Pure Metals. II: Molybdenum, Palladium, Silver, Tantalum, Tungsten, Platinum, and Lead , 1942 .
[107] K. Becker. Eine röntgenographische Methode zur Bestimmung des Wärmeausdehnungskoeffizienten bei hohen Temperaturen , 1926 .
[108] P. Hidnert,et al. Thermal expansion of molybdenum , 1924 .