HfB{sub 2} and ZrB{sub 2} are of interest for thermal protection materials because of favorable thermal stability, mechanical properties, and oxidation resistance. We have made dense diboride ceramics with 2 to 20 % SiC by hot pressing at 2000 C and 5000 psi. High-resolution transmission electron microscopy (TEM) shows very thin grain boundary phases that suggest liquid phase sintering. Fracture toughness measurements give RT values of 4 to 6 MPam{sup 1/2}. Four-pt flexure strengths measured in air up to 1450 C were as high as 450-500 MPa. Thermal diffusivities were measured to 2000 C for ZrB{sub 2} and HfB{sub 2} ceramics with SiC contents from 2 to 20%. Thermal conductivities were calculated from thermal diffusivities and measured heat ca...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Research into ultra high temperature materials has increased in recent years due to the need for mat...
Après relecture une erreur est apparue dans le document et doit être retiréInternational audienceThe...
International audienceUltra-High Temperature Ceramics (UHTCs), more specifically diborides of the IV...
International audienceUltra-High Temperature Ceramics (UHTCs), more specifically diborides of the IV...
International audienceUltra-High Temperature Ceramics (UHTCs), more specifically diborides of the IV...
Among ultra high temperature ceramics (UHTCs), ZrB2-based ceramics have received the most attention ...
Ultra-high temperature ceramics, such as ZrB2, are convenient for application in hypersonic systems ...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ultrahigh temperature ceramics (UHTCs) such as diborides of zirconium, hafnium tantalum and their co...
Ultrahigh temperature ceramics (UHTCs) such as diborides of zirconium, hafnium tantalum and their co...
The refractory diborides (HfB2 and ZrB2) are considered as promising ultra-high temperature ceramic ...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Research into ultra high temperature materials has increased in recent years due to the need for mat...
Après relecture une erreur est apparue dans le document et doit être retiréInternational audienceThe...
International audienceUltra-High Temperature Ceramics (UHTCs), more specifically diborides of the IV...
International audienceUltra-High Temperature Ceramics (UHTCs), more specifically diborides of the IV...
International audienceUltra-High Temperature Ceramics (UHTCs), more specifically diborides of the IV...
Among ultra high temperature ceramics (UHTCs), ZrB2-based ceramics have received the most attention ...
Ultra-high temperature ceramics, such as ZrB2, are convenient for application in hypersonic systems ...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ultrahigh temperature ceramics (UHTCs) such as diborides of zirconium, hafnium tantalum and their co...
Ultrahigh temperature ceramics (UHTCs) such as diborides of zirconium, hafnium tantalum and their co...
The refractory diborides (HfB2 and ZrB2) are considered as promising ultra-high temperature ceramic ...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...
Ceramics based on group IV-V transition metal borides and carbides possess melting points above 3000...