000 02805nab a2200301 c 4500
001 vtls000621844
003 RU-ToGU
005 20230319212128.0
007 cr |
008 180226|2017 ru s a eng d
024 7 _a10.22226/2410-3535-2017-4-407-411
_2doi
035 _ato000621844
040 _aRU-ToGU
_brus
_cRU-ToGU
100 1 _aSkripnyak, Vladimir V.
_989164
245 1 0 _aPredicting the mechanical properties of ultra-high temperature ceramics
_cV. V. Skripnyak, V. A. Skripnyak
504 _aБиблиогр.: 22 назв.
520 3 _aA model for predicting mechanical properties of ultra-high temperature ceramics (UHTC) and composites within a wide temperature range is presented. A model can be useful for predicting the mechanical properties of UHTC composites under dynamic loading and thermal shock. Results of calculations taking into account the dependences nonlinearity of the normalized elastic moduli on homologous temperature T/Tm in the range of 0.2 - 0.62. are presented.. Residual stresses in ZrB2 composites reinforced with particles of refractory borides, carbides and nitrides after selective laser sintering (SLS) or spark plasma sintering (SPS) were predicted. It is shown that the fracture toughness KIC of UHTC increases at the sintering temperature in the range 0.45 – 0.62 T/Tm. The residual stress in the matrix of ceramic composites can differ on a sign due to difference between the thermal expansion coefficients of the matrix and inclusion phases. It is shown that the fracture toughness and the flexural strength of ZrB2 matrix composites can be increased by 25% by the introduction of inclusions of specially selected refractory strengthening phases. Dependence of the normalized strength of composites ZrB2–B4C on the logarithm of normalized strain rate can be described by a power law in the range of strain rates from 10^-3 to 10^6 1/s and temperatures from 295 K to ~1673 K. Results of simulation confirm that the technologies of SLS and SPS can be used for the production of UHTC composites with high values of the specific strength and the fracture toughness.
653 _aвысокотемпературные керамические материалы
653 _aмеханические свойства
653 _aдинамическое нагружение
655 4 _aстатьи в журналах
_9879358
700 1 _aSkripnyak, Vladimir A.
_989128
773 0 _tПисьма о материалах
_d2017
_gТ. 7, № 4. С. 407-411
_x2218-5046
852 4 _aRU-ToGU
856 7 _uhttp://vital.lib.tsu.ru/vital/access/manager/Repository/vtls:000621844
908 _aстатья
999 _c431318