Carbon fibres with good mechanical properties have been produced from linear low density polyethylene (LLDPE). The melt-spun LLDPE fibres were made infusible by treatment with chlorosulphonic acid. The cross-linked fibres were pyrolysed at temperatures between 600 and 1100 °C under tension, in a nitrogen atmosphere, within 5 min. Carbon fibres prepared at 900 °C had a tensile strength of 1.15 GPa and a Young's modulus of 60 GPa. The elongation at break was extremely high, up to 3%. The carbon yield of the process was 72 to 75%
The purpose of this study was the synthesis of novel low-cost carbon fibers along with the investiga...
The thermal and ablative properties of phenol formaldehyde resin (PF) composites reinforced with car...
The conversion of poly (hexamethylene adipamide) or polyamide 66 precursor fiber to carbon fibers wa...
Carbon fibres with good mechanical properties have been produced from linear low density polyethylen...
Carbon fibres with good mechanical properties have been produced from linear low density polyethylen...
Carbon fibres with good mechanical properties have been produced from linear low density polyethylen...
The mechanical properties of amorphous carbon fibers, derived from linear low density polyethylene s...
The mechanical properties of amorphous carbon fibers, derived from linear low density polyethylene s...
The mechanical properties of amorphous carbon fibers, derived from linear low density polyethylene s...
The mechanical properties of amorphous carbon fibers, derived from linear low density polyethylene s...
Carbon fibre was recovered from a thermoset composite via a solvo-thermal process and used as reinfo...
The advantage of mesophase pitch-based carbon fibres is their high modulus, but pitch-based carbon f...
High strength, high modulus carbon fibres are becoming increasingly important as high performance en...
The purpose of this study was the synthesis of novel low-cost carbon fibers along with the investiga...
A high modulus of elasticity is a distinctive feature of carbon fibres produced from mesophase pitch...
The purpose of this study was the synthesis of novel low-cost carbon fibers along with the investiga...
The thermal and ablative properties of phenol formaldehyde resin (PF) composites reinforced with car...
The conversion of poly (hexamethylene adipamide) or polyamide 66 precursor fiber to carbon fibers wa...
Carbon fibres with good mechanical properties have been produced from linear low density polyethylen...
Carbon fibres with good mechanical properties have been produced from linear low density polyethylen...
Carbon fibres with good mechanical properties have been produced from linear low density polyethylen...
The mechanical properties of amorphous carbon fibers, derived from linear low density polyethylene s...
The mechanical properties of amorphous carbon fibers, derived from linear low density polyethylene s...
The mechanical properties of amorphous carbon fibers, derived from linear low density polyethylene s...
The mechanical properties of amorphous carbon fibers, derived from linear low density polyethylene s...
Carbon fibre was recovered from a thermoset composite via a solvo-thermal process and used as reinfo...
The advantage of mesophase pitch-based carbon fibres is their high modulus, but pitch-based carbon f...
High strength, high modulus carbon fibres are becoming increasingly important as high performance en...
The purpose of this study was the synthesis of novel low-cost carbon fibers along with the investiga...
A high modulus of elasticity is a distinctive feature of carbon fibres produced from mesophase pitch...
The purpose of this study was the synthesis of novel low-cost carbon fibers along with the investiga...
The thermal and ablative properties of phenol formaldehyde resin (PF) composites reinforced with car...
The conversion of poly (hexamethylene adipamide) or polyamide 66 precursor fiber to carbon fibers wa...