Silicon carbide-based fiber-bonded ceramics, obtained from hot pressing of woven silicon carbide fibers, are a cost-effective alternative to ceramic-matrix composites due to their ease of fabrication, involving few processing steps, and competitive thermomechanical properties. In this work, we studied the high-temperature strength and thermal shock resistance of Si-Al-C-O and Si-Ti-C-O fiber-bonded SiC ceramics obtained from hot pressing of two types of ceramic fibers, by mechanical testing in four-point bending. The bending strength of Si-Al-C-O-based fiber-bonded ceramics at room temperature is ∼250–260 MPa and remains constant with temperature, while the bending strength of Si-Ti-C-O increases slightly from the initial 220 to ∼250 MPa fo...
Aerospace provides a strong driving force for technological development. Recently a novel class of c...
Hybrid thermal protection systems for aerospace applications based on carbon-bonded carbon fiber com...
A key to the successful application of metal and ceramic composite materials in advanced propulsion ...
Fiber bonded silicon carbide ceramic materials provide cost-advantage over traditional ceramic matri...
Thermal shock behavior of unidirectionally reinforced Si-Ti-C-O fiber bonded ceramics was experiment...
International audienceThe chapter examines failure characteristics of silicon carbide fibers and the...
Silicon carbide fibers have high strength and high modulus and they are provided with flexible, mult...
Porous silicon carbide ceramics were prepared by an in situ reaction bonding process using clay and ...
The mechanical properties of fibre reinforced ceramic matrix composites (CMC) are predominated by th...
The development of a silicon carbide-type fiber from an organometallic precursor has led to a major ...
During the last decades, a number of fiber reinforced ceramic composites have been developed and tes...
Tensile strength, creep strength, and rupture strength properties were measured for the following ty...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
Thermal stability of four non-oxide ceramic matrix composites was studied. The materials studied wer...
The thermo-elastic properties of a novel class of ceramic composites based on an ultra-refractory ma...
Aerospace provides a strong driving force for technological development. Recently a novel class of c...
Hybrid thermal protection systems for aerospace applications based on carbon-bonded carbon fiber com...
A key to the successful application of metal and ceramic composite materials in advanced propulsion ...
Fiber bonded silicon carbide ceramic materials provide cost-advantage over traditional ceramic matri...
Thermal shock behavior of unidirectionally reinforced Si-Ti-C-O fiber bonded ceramics was experiment...
International audienceThe chapter examines failure characteristics of silicon carbide fibers and the...
Silicon carbide fibers have high strength and high modulus and they are provided with flexible, mult...
Porous silicon carbide ceramics were prepared by an in situ reaction bonding process using clay and ...
The mechanical properties of fibre reinforced ceramic matrix composites (CMC) are predominated by th...
The development of a silicon carbide-type fiber from an organometallic precursor has led to a major ...
During the last decades, a number of fiber reinforced ceramic composites have been developed and tes...
Tensile strength, creep strength, and rupture strength properties were measured for the following ty...
Silicon Carbide based Ceramic Matrix Composites (CMCs) are attractive materials for use in high-temp...
Thermal stability of four non-oxide ceramic matrix composites was studied. The materials studied wer...
The thermo-elastic properties of a novel class of ceramic composites based on an ultra-refractory ma...
Aerospace provides a strong driving force for technological development. Recently a novel class of c...
Hybrid thermal protection systems for aerospace applications based on carbon-bonded carbon fiber com...
A key to the successful application of metal and ceramic composite materials in advanced propulsion ...