A new class of ZrB2 composites reinforced with 40 vol% C short fibers and containing 5 vol% SiC in combination with 5 vol% MoSi2, HfSi2 or WSi2 successfully withstood extreme conditions in a oxyacetylene torch. Different responses to the torch testing were recorded depending on which secondary phase was present; this was primarily a result of the final density which ranged between 83 and 94% of the theoretical value. The temperatures achieved on the surfaces of the samples tested also varied as a function of the residual porosity and ranged from 2080 to 2240 °C. HfSi2 additions offered the best performance and exceeded that of the baseline material that contained only SiC. It is believed that this was due to its ability to promote the elimi...
A series of high-density ceramic composites with carbon fibre content between 40 and 65% and ultra-r...
International audienceFully dense ZrB2/SiC and HfB2/SiC ceramic composites with various compositions...
International audienceFully dense ZrB2/SiC and HfB2/SiC ceramic composites with various compositions...
Ultra-high temperature composite ceramic matrix composites ZrC-SiC, ZrB2-ZrC-SiC and HfB2-HfC-SiC we...
Ultra-high temperature composite ceramic matrix composites ZrC-SiC, ZrB2-ZrC-SiC and HfB2-HfC-SiC we...
An experimental campaign has been carried out to characterize a new class of Ultra-High-Temperature ...
An experimental campaign has been carried out to characterize a new class of Ultra-High-Temperature ...
An experimental campaign has been carried out to characterize a new class of Ultra-High-Temperature ...
In space propulsion applications, the development of new ceramic matrix composites with improved res...
In space propulsion applications, the development of new ceramic matrix composites with improved res...
Please click Additional Files below to see the full abstract. Please click Download on the upper rig...
Improved technologies and (re-usable) materials capable of operating under extreme conditions of tem...
Improved technologies and (re-usable) materials capable of operating under extreme conditions of tem...
The project will involve the process development and characterisation of an ultra-high temperature c...
The oxidation behaviour of Cf/ZrB2-SiC with different fibre architectures, manufactured by slurry im...
A series of high-density ceramic composites with carbon fibre content between 40 and 65% and ultra-r...
International audienceFully dense ZrB2/SiC and HfB2/SiC ceramic composites with various compositions...
International audienceFully dense ZrB2/SiC and HfB2/SiC ceramic composites with various compositions...
Ultra-high temperature composite ceramic matrix composites ZrC-SiC, ZrB2-ZrC-SiC and HfB2-HfC-SiC we...
Ultra-high temperature composite ceramic matrix composites ZrC-SiC, ZrB2-ZrC-SiC and HfB2-HfC-SiC we...
An experimental campaign has been carried out to characterize a new class of Ultra-High-Temperature ...
An experimental campaign has been carried out to characterize a new class of Ultra-High-Temperature ...
An experimental campaign has been carried out to characterize a new class of Ultra-High-Temperature ...
In space propulsion applications, the development of new ceramic matrix composites with improved res...
In space propulsion applications, the development of new ceramic matrix composites with improved res...
Please click Additional Files below to see the full abstract. Please click Download on the upper rig...
Improved technologies and (re-usable) materials capable of operating under extreme conditions of tem...
Improved technologies and (re-usable) materials capable of operating under extreme conditions of tem...
The project will involve the process development and characterisation of an ultra-high temperature c...
The oxidation behaviour of Cf/ZrB2-SiC with different fibre architectures, manufactured by slurry im...
A series of high-density ceramic composites with carbon fibre content between 40 and 65% and ultra-r...
International audienceFully dense ZrB2/SiC and HfB2/SiC ceramic composites with various compositions...
International audienceFully dense ZrB2/SiC and HfB2/SiC ceramic composites with various compositions...