Mechanical and Thermal Properties of Ceramics: Proceedings |
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absorption alumina apparatus Appl ASTM atoms behavior brittle calculated carbides ceramic materials ceramics Chem coefficient component composition compression crack tip creep rate crystalline curve cylinder deformation density diffusion discussed dislocation ductivity effect elastic constants elastic moduli electrical electronic emittance equation equilibrium experimental flux fracture surface energy frequency function given glass grain boundary heat conduction heat flow heat transfer high temperatures impurities increase insulation isotropic Kingery lattice liquid load low temperatures mean free path measurements mechanical melting point metals method microstructure obtained optical oxide percent phase phonons Phys plane plastic polycrystalline porosity pressure Proc propagation properties reference relaxation rutile sample scattering shear shown in figure silica single crystals solid specimen spectral Standards strain strength structure surface energy technique tensile stress theory thermal conductivity thermal expansion thermal radiation thermocouples tion tivity ture values velocity viscosity volume wave wavelength Young's modulus