Carbon fiber (CF)-reinforced high-temperature thermoplastics such as poly(phenylene sulphide) (PPS) are widely used in structural composites for aerospace and automotive applications. The porosity of CF-reinforced polymers is a very important topic for practical applications since there is a direct correlation between void content and mechanical properties. In this study, inorganic fullerene-like tungsten disulphide (IF-WS2) lubricant nanoparticles were used to manufacture PPS/IF-WS2/CF laminates via melt-blending and hot-press processing, and the effect of IF-WS2 loading on the quality, thermal and mechanical behaviour of the hybrid composites was investigated. The addition of IF-WS2 improved fiber impregnation, resulting in lower degree ...
The thermal and thermomechanical properties of poly(phenylene sulphide) (PPS) based nanocomposites i...
The objective of this research was to generate shock-resistant materials based on inorganic fulleren...
With the aim to develop a new generation of materials that combine either the known energy absorbing...
Carbon fiber (CF)-reinforced high-temperature thermoplastics such as poly(phenylene sulphide) (PPS) ...
Novel carbon fiber (CF)-reinforced poly(phenylene sulphide) (PPS) laminates incorporating inorganic ...
The thermal and mechanical behaviour of isotactic polypropylene (iPP) nanocomposites reinforced with...
Novel isotactic polypropylene (iPP)/glass fiber (GF) laminates reinforced with inorganic fullerene-l...
Polymer/inorganic nanoparticle nanocomposites have garnered considerable academic and industrial int...
Novel isotactic polypropylene (iPP)/glass fiber (GF) laminates reinforced with inorganic fullerene-l...
Using inorganic fullerene-like (IF) nanoparticles and inorganic nanotubes (INT) in organic-inorganic...
Trabajo presentado a la 16th European Conference on Composite Materials (ECCM), celebrada en Sevilla...
Enhancing the mechanical, thermal properties and obtaining the thermal degradation mechanism of poly...
Using inorganic fullerene-like (IF) nanoparticles and inorganic nanotubes (INT) in organic-inorganic...
A possibility was examined to enhance carbon-epoxy laminated composite mechanical properties by intr...
More effective and safe fire prevention solutions for polymer derivatives are necessary to address r...
The thermal and thermomechanical properties of poly(phenylene sulphide) (PPS) based nanocomposites i...
The objective of this research was to generate shock-resistant materials based on inorganic fulleren...
With the aim to develop a new generation of materials that combine either the known energy absorbing...
Carbon fiber (CF)-reinforced high-temperature thermoplastics such as poly(phenylene sulphide) (PPS) ...
Novel carbon fiber (CF)-reinforced poly(phenylene sulphide) (PPS) laminates incorporating inorganic ...
The thermal and mechanical behaviour of isotactic polypropylene (iPP) nanocomposites reinforced with...
Novel isotactic polypropylene (iPP)/glass fiber (GF) laminates reinforced with inorganic fullerene-l...
Polymer/inorganic nanoparticle nanocomposites have garnered considerable academic and industrial int...
Novel isotactic polypropylene (iPP)/glass fiber (GF) laminates reinforced with inorganic fullerene-l...
Using inorganic fullerene-like (IF) nanoparticles and inorganic nanotubes (INT) in organic-inorganic...
Trabajo presentado a la 16th European Conference on Composite Materials (ECCM), celebrada en Sevilla...
Enhancing the mechanical, thermal properties and obtaining the thermal degradation mechanism of poly...
Using inorganic fullerene-like (IF) nanoparticles and inorganic nanotubes (INT) in organic-inorganic...
A possibility was examined to enhance carbon-epoxy laminated composite mechanical properties by intr...
More effective and safe fire prevention solutions for polymer derivatives are necessary to address r...
The thermal and thermomechanical properties of poly(phenylene sulphide) (PPS) based nanocomposites i...
The objective of this research was to generate shock-resistant materials based on inorganic fulleren...
With the aim to develop a new generation of materials that combine either the known energy absorbing...