Properties of Se-based infrared chalcogenide glasses using dynamical mechanical analysis
2003
Mechanical properties of glassy selenium and selenium based IR chalcogenide glasses Se 55 As 45 , Se 67.5 As 20 Ge 12.5 and Se 57 I 20 As 18 Te 3 Sb 2 were first studied using dynamical mechanical analysis (DMA). DMA method gave the valuable information about complex Young's modulus of the glassy materials. In parallel with the study of mechanical properties of pure Se and Se-based IR glasses there also has been cleared the character of the glass transition process. The results of DMA study were compared with data obtained by differential calorimetry. The glass transition temperature, established by calorimetric measurements is lower than the temperature, which corresponds to peaks of the loss tangent for all kinds of materials under study. Activation energies of relaxation processes in IR chalogenide glasses were calculated using DMA data.
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