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401.
402.
Weiping Gong Sergey V. Ushakov Can Agca Alexandra Navrotsky 《Journal of the American Ceramic Society》2018,101(12):5827-5835
The BaO–Sm2O3 system is of interest for the optimization of synthesis of electroceramics. The only systematic experimental study of phase equilibria in the system was performed more than 40 years ago. The reported experimental values of the enthalpy of formation of BaSm2O4 are in conflict, and the reported compound Ba3Sm4O9 has never been confirmed. In this work we synthesized BaSm2O4 by solid‐state reaction and determined its heat capacity, enthalpy of formation, and phase transitions by differential scanning calorimetry, high‐temperature oxide melt solution calorimetry and ultra‐high‐temperature differential thermal analysis, respectively. We confirmed the existence of Ba3Sm4O9 and its apparent stability from 1873 to 2273 K by X‐ray diffraction on quenched laser‐melted samples but were not able to obtain single‐phase material for calorimetric measurements. The CALPHAD method was used to assess phase equilibria in the BaO–Sm2O3 system, using both available literature data and our new measurements. A self‐consistent thermodynamic database and the calculated phase diagram of the BaO–Sm2O3 system are provided. This work can be used to model and thus to understand the relationships among composition, temperature, and microstructure for multicomponent systems with BaO and Sm2O3. 相似文献
403.
A. E. Ushakov A. A. Safonov I. V. Sergeichev A. Yu. Konstantinov F. K. Antonov 《Journal of Machinery Manufacture and Reliability》2014,43(1):36-41
A method for estimating the strength of structural elements made of composite materials with a thermosetting matrix, which was characterized by the presence of exfoliation-like defects and process-induced deformations, was proposed. In order to determine the process-induced deformations, a mathematical model, which considered thermal and chemical deformations, heat release in the course of matrix polymerization, as well as changes in the matrix properties in transition from the superelastic to the solid state, was implemented. A modeling of the deformation of a standard blank with an interstitial exfoliation-like defect was carried out. A quantitative defect of the effect of the process-induced deformations and the initial dimensions of the defects on the load at which the defect begins to grow was made. 相似文献