Thermodynamic Properties of Hafnium

[1]  J. Arblaster Thermodynamic properties of zirconium , 2013 .

[2]  V. D. Tarasov,et al.  The thermophysical properties of hafnium in the temperature range from 293 to 2000 K , 2008 .

[3]  S. Hasegawa,et al.  Two-color resonance ionization spectroscopy of Rydberg states of hafnium atoms , 2006 .

[4]  N. Milošević,et al.  Thermophysical Properties of Solid Phase Hafnium at High Temperatures , 2006 .

[5]  A. I. Savvatimskii,et al.  Heat capacity of liquid hafnium from the melting point to the boiling point at atmospheric pressure , 2005 .

[6]  S. Yoda,et al.  Non-Contact Measurements of the Thermophysical Properties of Hafnium-3 Mass% Zirconium at High Temperature , 2003 .

[7]  H. Franz,et al.  Enthalpy measurements of the solid high-temperature β-phase and the liquid phase of hafnium (3 wt.% Zr) by levitation drop calorimetry , 2001 .

[8]  H. Franz,et al.  Calculation of the entropy of fusion for the group IVb metals titanium, zirconium, and hafnium by the vacancy theory , 2000 .

[9]  R. Goldberg,et al.  On the conversion of thermodynamic properties to the basis of the International Temperature Scale of 1990 , 1996 .

[10]  C. Ronchi,et al.  Determination of the melting point and the emissivity of refractory metals with a six-wavelength pyrometer , 1989 .

[11]  P. D. Desai Thermodynamic properties of titanium , 1987 .

[12]  R. Cahn Hafnium: Physico-chemical properties of its compounds and alloys , 1983 .

[13]  H. A. Peretti,et al.  The Hf−Zr (Hafnium−Zirconium) system , 1982 .

[14]  I. Makarenko,et al.  Thermal, electrical, and radiative properties of titanium, zirconium, and hafnium in the temperature region 1000–2100°K , 1979 .

[15]  J. Wyart A Systematic Study of Even Configurations in the Neutral Atoms of the Platinum Group , 1978 .

[16]  S. P. Garg,et al.  The high temperature phase diagrams for zirconium-molybdenum and hafnium-molybdenum , 1977 .

[17]  J. McClure,et al.  Measurement of Melting Point and Radiance Temperature (at Melting Point and at 653 nm) of Hafnium-3 (wt. %) Zirconium by a Pulse Heating Method* , 1976, Journal of research of the National Bureau of Standards. Section A, Physics and chemistry.

[18]  B. W. Roberts Survey of superconductive materials and critical evaluation of selected properties , 1976 .

[19]  C. E. Moore,et al.  The First Spectrum of Hafnium (HF I) , 1976 .

[20]  J. McClure,et al.  Simultaneous Measurements of Specific Heat, Electrical Resistivity, and Hemispherical Total Emittance by a Pulse Heating Technique: Hafnium-3 (Wt. %) Zirconium, 1500 to 2400 K. , 1975, Journal of research of the National Bureau of Standards. Section A, Physics and chemistry.

[21]  F. Schmidt,et al.  Electrotransport of carbon, nitrogen, and oxygen in hafnium metal , 1973 .

[22]  L. P. Filippow Untersuchung der thermischen eigenschaften im stoff an der moskauer universität , 1973 .

[23]  R. J. Ackermann,et al.  The thermodynamics and vaporization of thorium, hafnium, and zirconium☆ , 1972 .

[24]  R. J. Ackermann,et al.  DETERMINATION OF LIQUIDUS CURVES FOR THE Th--W, Th--Ta, Zr--W, AND Hf--W SYSTEMS: THE ANOMALOUS BEHAVIOR OF METALLIC THORIUM. , 1972 .

[25]  L. P. Filippov,et al.  High-temperature investigations of the thermal properties of solids , 1971 .

[26]  J. C. Ho,et al.  MAGNETIC-SUSCEPTIBILITY AND LOW-TEMPERATURE SPECIFIC-HEAT STUDIES OF Ti, Zr, AND Hf. , 1971 .

[27]  T. Douglas Conversion of Existing Calorimetrically Determined Thermodynamic Properties to the Basis of the International Practical Temperature Scale of 1968. , 1969, Journal of research of the National Bureau of Standards. Section A, Physics and chemistry.

[28]  E. Rudy,et al.  The phase diagrams hafnium-vanadium and hafnium-chromium , 1968 .

[29]  J. Betterton,et al.  Low-Temperature Specific Heats of Zr-Ti, Zr-Hf, and Zr-Sc Alloys , 1968 .

[30]  G. N. Bates,et al.  THE SOLID‐PHASE TRANSFORMATION IN HAFNIUM , 1967 .

[31]  R. V. Sara THE HAFNIUM-CARBON SYSTEM , 1965 .

[32]  R. Ruh,et al.  THE HAFNIUM-OXYGEN SYSTEM , 1965 .

[33]  R. G. Bedford HIGH-TEMPERATURE ELECTRICAL RESISTIVITY AND ALLOTROPIC TRANSFORMATION TEMPERATURE OF HAFNIUM , 1965 .

[34]  V. Schomaker,et al.  RESEARCH ON PHYSICAL AND CHEMICAL PRINCIPLES AFFECTING HIGH TEMPERATURE MATERIALS FOR ROCKET NOZZLES , 1964 .

[35]  D. T. Hawkins,et al.  HIGH-TEMPERATURE HEAT CONTENT OF HAFNIUM , 1963 .

[36]  G. Kneip,et al.  LOW-TEMPERATURE SPECIFIC HEATS OF TITANIUM, ZIRCONIUM, AND HAFNIUM , 1963 .

[37]  E. Rudy,et al.  Zum aufbau des systems hafnium-sauerstoff , 1963 .

[38]  J. A. Coffman,et al.  CARBONIZATION OF PLASTICS AND REFRACTORY MATERIALS RESEARCH , 1963 .

[39]  M. Panish,et al.  Thermodynamics of the Vaporization of Hf and HfO2: Dissociation Energy of HfO , 1963 .

[40]  N. Grant,et al.  THE CONSTITUTION DIAGRAM TUNGSTEN-HAFNIUM , 1962 .

[41]  N. Doyle,et al.  The constitution diagram of the molybdenum-hafnium binary system☆ , 1961 .

[42]  O. Paasche,et al.  The transformation temperature of hafnium , 1959 .

[43]  N. M. Wolcott,et al.  The atomic heats of titanium, zirconium and hafnium , 1957 .

[44]  H. A. Wilhelm,et al.  Preparation of Zirconium and Hafnium Metals by Bomb Reduction of Their Fluorides , 1957 .

[45]  H. Kolsky,et al.  THE THERMODYNAMIC PROPERTIES OF 54 ELEMENTS CONSIDERED AS IDEAL MONATOMIC GASES , 1956 .

[46]  D. Deardorff,et al.  Melting Point Determination Of Hafnium, Zirconium, and Titanium , 1956, JOM.

[47]  F. H. Spedding,et al.  Quarterly summary research report in metallurgy , 1955 .

[48]  R. B. Russell On the Zr‐Hf System , 1953 .

[49]  J. Fast The Allotropic Transformation of Hafnium and a Tentative Equilibrium Diagram of the System Zirconium‐Hafnium , 1952 .

[50]  F. Litton Preparation and Some Properties of Hafnium Metal , 1951 .

[51]  P. Duwez The Allotropic Transformation of Hafnium , 1951 .

[52]  G. B. Skinner,et al.  THERMAL, STRUCTURAL, ELECTRICAL, MAGNETIC AND OTHER PHYSICAL PROPERTIES OF TITANIUM, ZIRCONIUM, HAFNIUM AND THORIUM AND SOME OF THEIR SIMPLE COMPOUNDS. PART 3 HAFNIUM, ITS OXIDES, HALIDES, CARBIDE, AND THE ALKALINE EARTH HAFNATES. Technical Report No. 102-AC49/2-100-3 , 1950 .

[53]  F. Simon,et al.  Die spezifischen Wärmen von Beryllium, Germanium und Hafnium bei tiefen Temperaturen , 1934 .