Carbon Fiber

Carbon shortcut fiber is a type of high-performance fiber that is manufactured using carbon-based materials. It is known for its exceptional strength, stiffness, and thermal conductivity properties. The term “shortcut” refers to the relatively short length of the fibers, typically ranging from a few millimeters to several centimeters.
Carbon shortcut fiber is widely used in various industries, including aerospace, automotive, sports equipment, and construction. It serves as a reinforcement material, enhancing the mechanical properties of composites and other materials. Due to its high strength-to-weight ratio, carbon shortcut fiber offers superior structural integrity and durability, making it ideal for applications that require lightweight and strong components.
One of the key advantages of carbon shortcut fiber is its excellent thermal conductivity. This property allows for efficient heat dissipation, making it suitable for applications where thermal management is crucial, such as in electronic devices and high-performance machinery.
In addition to its mechanical and thermal properties, carbon shortcut fiber also exhibits excellent corrosion resistance and electrical conductivity. It can withstand harsh environments and is often used in applications that require resistance to chemicals, moisture, and extreme temperatures.
Overall, carbon shortcut fiber is a versatile and highly sought-after material due to its exceptional strength, stiffness, thermal conductivity, corrosion resistance, and electrical conductivity. Its unique combination of properties makes it an essential component in the development of advanced and high-performance products across various industries.
Property | Description |
---|---|
Material | Carbon-based |
Fiber Length | Relatively short, typically a few millimeters to several centimeters |
Strength | High strength-to-weight ratio |
Stiffness | Excellent stiffness and rigidity |
Thermal Conductivity | High thermal conductivity, efficient heat dissipation |
Corrosion Resistance | Excellent resistance to corrosion |
Electrical Conductivity | High electrical conductivity |
Application | Aerospace, automotive, sports equipment, construction, electronics |
Benefits | Lightweight, strong, durable, good thermal and electrical properties |
Usage | Reinforcement material, structural components, thermal management |
Certainly! Here’s a parameter table for carbon shortcut fiber:
Parameter | Value |
---|---|
Material | Carbon-based |
Fiber Length | Short (1.5mm-5cm) |
Density | 1.75-2.2 g/cm³ |
Tensile Strength | 2000-5000 MPa |
Young’s Modulus | 200-500 GPa |
Thermal Conductivity | 200-500 W/m·K |
Electrical Conductivity | High |
Chemical Resistance | Excellent |
Moisture Resistance | High |
Temperature Resistance | Up to 1000°C |
Corrosion Resistance | Excellent |
Flame Retardancy | Yes |
Application | Aerospace, automotive, sports equipment, construction, electronics |
Benefits | Lightweight, high strength, thermal and electrical conductivity, corrosion resistance, flame retardant |
Common Usage | Reinforcing composites, structural components, heat sinks, electrical conductors |
RECOMMENDED PRODUCTS
- View details
Nylon Flocked Short Fibers
Nylon Flocked Short Fibers
- View details
PVA Fiber
PVA Fiber
- View details
Bicomponent Fiber
Bicomponent Fiber
- View details
PE Fiber
Polyethylene fiber
loading…
已经是到最后一篇内容了!