Tailoring the SiC fiber-matrix interface in micron-sized fibers is crucial to attaining enhanced mechanical properties in ceramic reinforced composites. Herein, the authors report the growth of boron nitride nanotubes (BNNT) onto SiC fibers (SiCf), creating a fuzzy fiber architecture to promote the surface area for a defined load path fiber to the matrix and improve the mechanical properties of these structures. Successful BNNT-growth is achieved by a boron oxide chemical vapor deposition method combined with growth vapor trapping with optimum parameters of 1200 °C and 1 hour, comparatively low temperature to those reported in the literature. The strength loss of SiCf after exposure to 1200 °C was attributed to high process temperature, sim...
Carbon nanotubes are known as one of the strongest materials in nature and since their discovery; th...
The mechanical properties of the matrix and the fiber/matrix interface have a relevant influence ove...
AbstractA new carbon nanotube (CNT)–hybridized carbon fiber (CF) was introduced in an attempt to imp...
The most recent and innovative silicon carbide (SiC) fiber ceramic matrix composites, used for light...
In recent years, carbon nanotubes (CNTs) grown on fibers have attracted a lot of interest as an addi...
Ceramic matrix composites (CMC's) require strong fibers for good toughness and weak interphases so t...
Chemical vapor deposition (CVD) is used as a method for the synthesis of carbon nanotubes (CNT) on s...
Mechanical properties of ceramic composites can be improved by controlling interfacial bonding and c...
Exploring boron nitride (BN) structures at materials science carries a great potential for evolving ...
Low interlaminar mechanical properties is the foremost drawback of glass fiber reinforced composites...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 2...
The investigation of several parameters during fiber push‐out micromechanical tests on the interfaci...
Nitridation of Nextel(TM) 312 alumino-borosilicate fibers produces a boron-nitride-rich surface laye...
The influence of fiber/matrix interface microstructure and interfacial shear strength on the mechani...
Boron carbide is light-weight, is thermally stable, has high hardness/stiffness, and is multi-functi...
Carbon nanotubes are known as one of the strongest materials in nature and since their discovery; th...
The mechanical properties of the matrix and the fiber/matrix interface have a relevant influence ove...
AbstractA new carbon nanotube (CNT)–hybridized carbon fiber (CF) was introduced in an attempt to imp...
The most recent and innovative silicon carbide (SiC) fiber ceramic matrix composites, used for light...
In recent years, carbon nanotubes (CNTs) grown on fibers have attracted a lot of interest as an addi...
Ceramic matrix composites (CMC's) require strong fibers for good toughness and weak interphases so t...
Chemical vapor deposition (CVD) is used as a method for the synthesis of carbon nanotubes (CNT) on s...
Mechanical properties of ceramic composites can be improved by controlling interfacial bonding and c...
Exploring boron nitride (BN) structures at materials science carries a great potential for evolving ...
Low interlaminar mechanical properties is the foremost drawback of glass fiber reinforced composites...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 2...
The investigation of several parameters during fiber push‐out micromechanical tests on the interfaci...
Nitridation of Nextel(TM) 312 alumino-borosilicate fibers produces a boron-nitride-rich surface laye...
The influence of fiber/matrix interface microstructure and interfacial shear strength on the mechani...
Boron carbide is light-weight, is thermally stable, has high hardness/stiffness, and is multi-functi...
Carbon nanotubes are known as one of the strongest materials in nature and since their discovery; th...
The mechanical properties of the matrix and the fiber/matrix interface have a relevant influence ove...
AbstractA new carbon nanotube (CNT)–hybridized carbon fiber (CF) was introduced in an attempt to imp...