Short CF Thermoplastic Composites, or chopped carbon fiber thermoplastic composites, have the following performance characteristics: 1. High strength and stiffness: The incorporation of chopped carbon fibers greatly improves the mechanical properties of the thermoplastic matrix, making them suitable for applications demanding strong structural support. 2. Excellent fatigue resistance: They can endure repeated loading and unloading without significant performance deterioration, essential for components under cyclic stresses. 3. Good impact resistance: The combination of carbon fibers and the thermoplastic matrix enables absorption and dissipation of energy upon impact, lowering the risk of failure. 4. Good thermal stability: They can retain their mechanical properties at high temperatures, suitable for applications in high-heat environments. 5. Enhanced dimensional stability: They have low shrinkage and warpage during processing and in-service, ensuring consistent and precise part dimensions. 6. Lightweight: Compared to traditional metal materials, they provide comparable or superior mechanical performance while being lightweight, beneficial in weight-sensitive applications like aerospace and automotive.
Applications in various fields: 1. Aerospace Industry: They are used in aircraft components such as wing structures, fairings, and interior parts where high strength-to-weight ratio and durability are crucial. 2. Automotive Sector: Applied in car bodies, chassis, and engine components to reduce weight and improve fuel efficiency while maintaining structural integrity. 3. Electronics: Utilized in manufacturing lightweight and durable casings for electronic devices. 4. Sports Equipment: Found in the production of high-performance sports gear like bicycle frames, tennis rackets, and golf clubs. 5. Medical Devices: Used for creating lightweight and strong prosthetics and medical equipment. 6. Industrial Machinery: Incorporated into parts of industrial machinery where resistance to wear and high mechanical strength are required. 7. Consumer Goods: Can be seen in products like luggage and furniture for enhanced durability and lightweight design.
PC CF40 is made of polycarbonate and 40% carbon fiber, combining polycarbonate’s toughness with carbon fiber’s high strength, resulting in exceptional mechanical properties, offering superior tensile strength, rigidity, and impact resistance while being lighter than metals. It also features good heat resistance and dimensional stability.
Learn MorePC CF30 is a polycarbonate reinforced with carbon fiber at approximately 30%. It showcases outstanding strength, heat tolerance, low mass, and excellent resistance to wear and corrosion. Boasting favorable electrical characteristics, it’s extensively utilized in aerospace, automotive, electronics and sports.
Learn MorePC CF20 developed by Carbon (Xiamen) New Material is ingeniously applied in the frame of new electric bicycles in urban transportation, offering remarkable advantages like excellent strength, lightweight, and outstanding heat and corrosion resistance, significantly enhancing their performance and reliability.
Learn MorePC CF10 is a polycarbonate composite with 10% carbon fibers. It has advantages like high strength, good heat resistance, low expansion, conductivity, wear resistance, and is lightweight. It’s chosen for better performance and durability over similar materials.
Learn MorePEEK CF40%, as a carbon fiber-reinforced thermoplastic, is widely recognized for its exceptional mechanical properties, outstanding thermal stability, and superior chemical resistance. Its wide-ranging applications in the aerospace, automotive, and medical fields are a clear testament to its high performance and reliability. The scrupulous control exercised over the manufacturing process…
Learn MorePBT CF20 is a blend of PBT and 20% carbon fiber. It notably boosts mechanical strength, rigidity, and thermal resistance. Widely employed in automotive and aerospace, it offers superior stability and significantly reduces weight, enhancing performance.
Learn MorePBT CF40 is a specialized thermoplastic. It combines high performance and durability. The carbon fiber reinforcement boosts its properties. Key features include mechanical strength, thermal stability, chemical resistance, and dimensional stability. It’s used in automotive, electrical, industrial, and consumer goods. Consider factors for best price and quality.
Learn More10% Carbon Fiber Reinforced Polypropylene Thermoplastic Composite is a cutting-edge material. It consists of polypropylene and 10% carbon fibers. This material offers excellent mechanical strength and heat resistance. Its main functions and features include high stiffness and low weight. It finds wide applications in the automotive and aerospace industries. The…
Learn MorePBT CF30, with 30% carbon fiber in a PBT matrix, is highly valuable. It offers excellent mechanical strength and stiffness, good thermal stability, improved electrical conductivity, and dimensional stability. It also has chemical resistance and customizable surface finishes. Processed by injection molding, it’s ideal for various industries like automotive and…
Learn MorePP CF40 is a thermoplastic composite comprising polypropylene matrix reinforced with 40% carbon fibers. Known for its superior mechanical strength, stiffness, and lightweight nature, it finds applications in automotive, aerospace, and consumer electronics industries. Produced by Carbon (Xiamen) New Material, PP CF40 contributes to innovative, high-performance solutions in material science.
Learn MorePP CF10 is a carbon fiber-reinforced thermoplastic composite. It blends polypropylene with carbon fibers, typically in woven or chopped forms. This composite offers high strength-to-weight ratio, stiffness, and impact resistance, crucial for lightweight, mechanically robust applications. Carbon (Xiamen) New Material employs advanced manufacturing techniques to ensure uniform fiber distribution. PP…
Learn MorePP CF20 is a thermoplastic composite featuring polypropylene with 20% carbon fiber reinforcement. It excels in lightweight strength, heat resistance, corrosion resistance, impact resistance, and processability. Widely used in automotive, electronics, aerospace, and industrial sectors, it offers reliable solutions for high-performance applications.
Learn MoreIt has excellent tensile and bending strength and can withstand large external forces. It can enhance the stability of the structure and improve collision safety.
It has a high elastic modulus and good rigidity. In the aerospace field, it helps to reduce weight while ensuring the shape stability of components.
It is lighter, which helps to reduce the weight of the overall structure. Applied in sports equipment, such as bicycle frames, it makes it easier for athletes to control.
It can withstand repeated loads and stresses without being easily damaged. In mechanical transmission components, it prolongs the service life.
It has a high resistance to chemical substances and environmental factors. Suitable for chemical equipment to reduce damage caused by corrosion.
It can still maintain its performance in high-temperature environments. It can be used in high-temperature working scenarios such as engine components.
It performs well in some applications that require electrical conductivity. For example, the shell of electronic equipment.
It can be manufactured through various processes such as injection molding and extrusion. To meet the needs of different shapes and sizes.
It has the characteristic of recyclability and reuse, which is in line with environmental protection requirements. It helps to reduce the generation of waste.
Carbon (Xiamen) New Material Co., Ltd., a shining pearl in the field of carbon fiber modified materials, is driven by technological innovation and has distinct product characteristics: light weight, high strength, excellent performance; customized production, flexible to meet diverse needs; environmentally friendly technology, leading the trend of green manufacturing. Modern production lines ensure high efficiency and stability, and are the trusted choice of the industry.
R&D laboratories, the cradle of technological innovation, gather top talents and precision equipment. Here, every fantastic idea is carefully nurtured, and through countless experiments and tests, theories are transformed into practical applications. In the brightly lit space, researchers are exploring the unknown day and night, promoting technological progress, and bringing disruptive solutions to society.
Carbon (Xiamen) New Material Co., Ltd. aims to provide buyers with "one-stop" worry-free high-quality services. Here you can find all information about carbon fiber engineering plastics. If you still have questions, please send us an email for consultation!
1: What is the main advantage of Chopped CF Thermoplastic Composites over traditional materials?
Chopped CF Thermoplastic Composites offer a combination of high strength, lightweight, and good resistance to fatigue and impact. They are also easier to process and recycle compared to some traditional materials.
2: How does the cost of Chopped CF Thermoplastic Composites compare to other composites?
The cost can vary depending on factors such as the quality and quantity of carbon fibers used. Generally, they may be more expensive than some common composites initially, but their superior performance and potential for reduced manufacturing costs in the long run can offset the higher upfront expense.
3: Can Chopped CF Thermoplastic Composites be used in extreme temperature environments?
They have good thermal stability and can perform well in a wide range of temperatures. However, the specific temperature limits depend on the type of thermoplastic matrix and the amount of carbon fiber reinforcement.
4: Are Chopped CF Thermoplastic Composites electrically conductive?
Yes, they can have some level of electrical conductivity depending on the composition and arrangement of the carbon fibers.
5: How difficult is it to machine Chopped CF Thermoplastic Composites?
Machining can be challenging due to their high strength and hardness. Specialized tools and techniques are often required, but advancements in processing methods are making it more manageable.
6: Do Chopped CF Thermoplastic Composites have any environmental benefits?
They are more recyclable than many other composite materials, reducing waste and the environmental impact. Also, their lightweight nature leads to lower energy consumption during transportation.
7: What types of bonding methods are suitable for joining parts made of Chopped CF Thermoplastic Composites?
Adhesive bonding, welding, and mechanical fastening methods can be used. The choice depends on the specific application and design requirements.
8: Can Chopped CF Thermoplastic Composites be colored?
Yes, they can be colored using specialized dyes or coatings without significantly affecting their properties.
9: How long is the lifespan of products made from Chopped CF Thermoplastic Composites?
With proper design and maintenance, they can have a long lifespan, often outlasting similar products made from traditional materials.
10: Are there any limitations to the size and shape of components that can be made from Chopped CF Thermoplastic Composites?
While they offer considerable design flexibility, very large or complex shapes may pose manufacturing challenges. However, continuous advancements in processing technologies are expanding the possibilities.
11: Which do common representatives of Chopped CF Thermoplastic Composites include?
1. Carbon Fiber Reinforced Polyamide (CFPA) has good mechanical, heat and chemical stability. 2. Carbon Fiber Reinforced Polyester (CFPET) has decent wear, heat and chemical resistance. 3. Carbon Fiber Reinforced Polyimide (CFPI) composites are high-performance prepreg tapes due to polyimide's high heat and chemical resistance. 4. Carbon Fiber Reinforced Polycarbonate (CFPC) has excellent mechanical, heat and corrosion resistance, used in high-performance manufacturing. 5. Continuous Fiber Reinforced Polyphenylene Sulfide (PPS-CF/UD), made by melt impregnation, has multiple advantages and is used in automotive, aerospace, etc. for various parts.