Short fibre reinforced ceramic composites, based on ZrB2 with a carbon fibre content of 45 vol%, were produced by ball-milling and rapid Spark Plasma Sintering (SPS) at 1800–2300 °C by varying the holding times. Careful control of the sintering parameters, such as the heating rate, dwell temperature and holding time are required to produce a fully dense matrix and avoid fibre degradation. The sintered materials were characterized in terms of relative density, morphology of the fibres and microstructural features of the matrix. The final residual porosity ranged from 16 to 3 vol%. The carbon fibres maintained their original morphology and the matrix consisted of ZrB2, SiC and ZrC phases. In spite of the good adhesion between the fibre surfac...
Fe-based composites are an interesting and promising group of MMCs, which could compete in some appl...
Abstract ZrB2–SiC/ZrSi2 ceramics containing 30 vol% carbon fiber (Cf) additive were fabricated by ho...
International audienceThe processing of dense Ceramic Matrix Composites (CMC) by a short time and so...
For the first time we show that spark plasma sintering can efficiently replace hot pressing for the ...
For the first time we show that spark plasma sintering can efficiently replace hot pressing for the ...
The sintering behavior and mechanical properties of carbon fibre reinforced ZrB2/SiC/WC composites w...
Spark plasma sintering (SPS) is one of the most advanced techniques for consideration of highly refr...
ZrB2-TiC composites with and without nano-sized carbon black as the sintering additive were densifie...
We report here the development of ultrafine grained ZrB2-SiC composites using TiSi2 as the sintering...
Ultra-high temperature ceramics (UHTCs) exhibit a number of properties (thermal and chemical stabili...
A process technology for the processing of the continuous carbon fibre reinforced ZrB2 (Cf – ZrB2) u...
We report here the development of ultrafine grained ZrB2-SiC composites using TiSi2 as the sintering...
International audienceThe combination of Polymer-Derived Ceramics (PDC) and Spark Plasma Sintering (...
International audienceThe combination of Polymer-Derived Ceramics (PDC) and Spark Plasma Sintering (...
In this paper, for the first time, we report the manufacturing and characterization of large UHTCMCs...
Fe-based composites are an interesting and promising group of MMCs, which could compete in some appl...
Abstract ZrB2–SiC/ZrSi2 ceramics containing 30 vol% carbon fiber (Cf) additive were fabricated by ho...
International audienceThe processing of dense Ceramic Matrix Composites (CMC) by a short time and so...
For the first time we show that spark plasma sintering can efficiently replace hot pressing for the ...
For the first time we show that spark plasma sintering can efficiently replace hot pressing for the ...
The sintering behavior and mechanical properties of carbon fibre reinforced ZrB2/SiC/WC composites w...
Spark plasma sintering (SPS) is one of the most advanced techniques for consideration of highly refr...
ZrB2-TiC composites with and without nano-sized carbon black as the sintering additive were densifie...
We report here the development of ultrafine grained ZrB2-SiC composites using TiSi2 as the sintering...
Ultra-high temperature ceramics (UHTCs) exhibit a number of properties (thermal and chemical stabili...
A process technology for the processing of the continuous carbon fibre reinforced ZrB2 (Cf – ZrB2) u...
We report here the development of ultrafine grained ZrB2-SiC composites using TiSi2 as the sintering...
International audienceThe combination of Polymer-Derived Ceramics (PDC) and Spark Plasma Sintering (...
International audienceThe combination of Polymer-Derived Ceramics (PDC) and Spark Plasma Sintering (...
In this paper, for the first time, we report the manufacturing and characterization of large UHTCMCs...
Fe-based composites are an interesting and promising group of MMCs, which could compete in some appl...
Abstract ZrB2–SiC/ZrSi2 ceramics containing 30 vol% carbon fiber (Cf) additive were fabricated by ho...
International audienceThe processing of dense Ceramic Matrix Composites (CMC) by a short time and so...