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  • phylogeny
  • thermal diffusivity
  • Springer  (2)
  • Blackwell Publishing Ltd
  • 1980-1984  (2)
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  • Springer  (2)
  • Blackwell Publishing Ltd
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Year
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    International journal of thermophysics 5 (1984), S. 41-52 
    ISSN: 1572-9567
    Keywords: heat capacity ; laser-flash method ; thermal diffusivity ; thermal conductivity ; vanadium-oxygen alloy
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract Several recent advances made in the author's laboratory in the experimental apparatus and measuring procedures for precise measurements of thermophysical properties by the laser-flash method are reviewed. Heat-capacity measurement has been done on metals and ceramics within an accuracy of ±0.5% in the range from 80 to 800 K, and within ±2% from 800 to 1100 K. Thermal diffusivity has been also measured from 80 to 1300 K with reasonable corrections for heat leak and finite pulse width. As an example of the experimental results by the method, the data of heat capacity, thermal diffusivity, and thermal conductivity of vanadium-oxygen alloys containing 1.07 and 3.46 at.% of oxygen from 80 to 800 K are presented and compared with those of pure vanadium metal.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    International journal of thermophysics 5 (1984), S. 219-228 
    ISSN: 1572-9567
    Keywords: iron oxide pellet ; reduction rate ; specific heat ; thermal conductivity ; thermal diffusivity
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract The thermal properties of iron oxide pellets of different porosity and prepared by reduction at different rates were investigated in the range of room temperature to about 800°C. The thermal diffusivity a was measured by a laser flash method and the specific heat C p was measured by adiabatic scanning calorimetry. The thermal conductivity was calculated from the relation λ=aC ρ p, where ρ is the density of the specimen. For nonreduced iron oxide pellets, the thermal diffusivity and thermal conductivity decreased with increase in temperature and porosity. The specific heat increased with increasing temperature and there was a transformation point at which the specific heat reached a maximum. In prereduced iron oxide pellets, the thermal diffusivity and thermal conductivity were very small compared with the nonreduced pellets and they gradually increased with increasing temperature. The specific heat had a minimum and a maximum at about 300 and 600°C, respectively, and the scale of these features became smaller with increase in the reduction rate.
    Type of Medium: Electronic Resource
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