PAN carbon fiber
PAN carbon fiber is produced from polyacrylonitrile fiber by pre oxidation, carbonization, and graphitization. It has excellent characteristics such as high temperature resistance, low density, and high strength, as well as extremely high tensile and compression, impact resistance, and fatigue resistance.
Carbon fiber is widely used in aerospace, pressure vessels, wind turbine blades, transportation construction, sports and leisure.
◆ Aerospace: Carbon fiber composites can be used for the structural materials of aircrafts and achieve weight reduction. And carbon fiber can be used as heat-proof and integrated structure-function materials for astronautics greatly reducing the launch weight and saving the cost and increasing the effective flying range.
◆ Wind turbine blade: Because glass fiber-based blade can‘t meet the increasing requirements of large-scale and lightweight, carbon fiber with lower density as well as greater strength and rigidity become a more ideal choice. Under the premise of meeting the requirements of rigidity and strength, wind blade made by carbon fiber is over 30% lighter than glass fiber blades.
◆ Automotive: Carbon fiber composites can be used for the automotive parts to lighten the automotive weight and reduce fuel consumption. Besides, carbon fiber composites have the advantages of good overall shape, easy design and excellent shock absorption.
◆ Rail transit: Lightweight and energy saving are important guidelines for the rail transit equipment. Because of light weight, high strength, energy absorption, shock resistance and high weather resistance, carbon fiber composites have been widely applied to the streamlined headliner, seat skeleton, wall and roof panels of the carriages.
◆ Pressure vessel: Carbon fiber wrapped cylinders have a broad prospect in the field of pressure vessel due to light weight, safety, reliability and higher efficiency storage. At present mainly used in natural gas and hydrogen storage tanks, high-pressure storage tanks, rocket engines, etc.
◆ Sports and leisure: Carbon fiber composites have light-weight and high rigidity, and that brings unparalleled advantage in the field of advanced sports equipment such as golf club, tennis rackets, fishing rods, skis, bicycles, racing cars, sailboats, etc. People can enjoy remarkable experience by using carbon fiber composites.
Type | Tensile Strength | Elastic Modulus | Elongation at Break | Diameter of Filament | Density |
MPa | GPa | % | μm | g/cm³ | |
TIK-542 | 4500 | 230 | 2.0 | 7 | 1.80 |
TIK-544 | 4400 | 435 | 1.0 | 5 | 1.80 |
TIK-545 | 4200 | 475 | 1.0 | 5 | 1.80 |
TIK-552 | 4900 | 240 | 2.0 | 7 | 1.80 |
TIK-553 | 5700 | 380 | 1.5 | 5 | 1.80 |
TIK-562 | 6000 | 265 | 2.0 | 7 | 1.80 |
TIK-563 | 6400 | 295 | 2.0 | 5 | 1.80 |
TIK-564 | 6600 | 340 | 2.0 | 5 | 1.80 |
TIK-573 | 7000 | 325 | 2.0 | 5 | 1.80 |