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Thermal Analysis of Materials

Thermal Analysis of Materials

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The thermal analysis of materials encompasses a variety of methods used to detect changes in material properties as a function of temperature. Before temperature measurement became routine in all stages of metal and ceramic processing, early metallurgists relied on the color and brightness of hot metal, and glassmakers used viscosity for guidance. Nowadays, techniques of differential thermal analysis (DTA) and differential scanning calorimetry (DSC) routinely yield heat capacities, temperatures, and enthalpies of phase transformations in the temperature range from −150 to 1500 °C. The measurement of any physical property as a function of temperature brings the method into the realm of thermal analysis. This Special Issue provides a sampling of the current use, diversity, and ongoing developments of techniques and approaches in the thermal analysis of materials. It combines contributions solicited by editors that reflect their scientific interests and networks, with generally related submissions received over two years. It contains 16 articles and 1 short review submitted by authors from 10 countries.

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Keywords

  • absorbent
  • accelerated aging
  • aerodynamic levitation
  • aged cable
  • AlMgSi alloy
  • aluminium composite
  • Anesthesiology
  • calcium looping
  • calculation of phase diagrams (CALPHAD)
  • calorimeter
  • Carbon Dioxide
  • carbonate rock
  • cementite precipitation
  • Ceramics
  • chemical expansion
  • CO2 capture
  • cobaltites
  • combustion
  • composite cementitious materials
  • compressive creep test
  • copper composite
  • copper tailing powder
  • defect structure
  • degradation
  • density
  • differential scanning calorimetry
  • dissolution
  • DSC
  • dual-material lattices
  • electric current
  • electrical resistivity
  • EN AW-6082
  • fast scanning
  • GCr15 bearing steel
  • graphene oxide
  • hafnia
  • high entropy oxides
  • History of engineering & technology
  • hydration kinetics
  • hydrocarbon fires
  • indirect measurements
  • industrial thermal insulation
  • Interferometry
  • intermetallic compound
  • kinetic analysis
  • kinetic models
  • laser melting
  • levitation
  • lifetime
  • liquid metals
  • magnesium aluminate spinel
  • Materials science
  • Measurement
  • Mechanical engineering & materials
  • melting
  • mineral carbonation
  • n/a
  • natural sorbents
  • optimization
  • passive fire protection
  • phase transition
  • polymer
  • positrode
  • powder metallurgy
  • precipitation
  • PXRD analysis
  • pyrolysis
  • rare earth oxides
  • reducibility
  • scanning rate extension
  • sensitivity coefficients
  • serpentine
  • simultaneous estimation
  • soda lime
  • sound velocity
  • spark plasma sintering
  • spark plasma sintering apparatus
  • stress exponent
  • stress filed
  • synchrotron powder diffraction
  • Technology, engineering, agriculture
  • Technology: general issues
  • temperature-dependent thermal properties
  • TG-FTIR
  • TGA
  • TGA-DSC
  • thermal analysis
  • thermal conductivity
  • thermal expansion
  • Thermal properties
  • Thermodynamics
  • thermogravimetric analysis
  • time-temperature-dissolution diagram
  • TPS
  • uncertainty analysis
  • water adsorption
  • X-ray absorption spectroscopy
  • zirconia

Links

DOI: 10.3390/books978-3-0365-6847-8

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