Carbon fiber reinforced nylon composite material refers to a modified composite material prepared by a certain production process with nylon as the base material and carbon fiber as the filler. This material has excellent properties such as high strength, high hardness, light weight, wear resistance, conductivity, anti-static property, etc., and is widely used in aerospace, military equipment, rail vehicles, automotive industry, household goods and other fields.
Nylon CF Reinforced Composites have several common application areas. They are widely used in the automotive industry for manufacturing parts like engine covers and gears due to their high strength and heat resistance. In the aerospace field, they can be found in structural components for lightweight and durability. They are also employed in the production of sports equipment, such as tennis rackets and bicycle frames, where strength and weight reduction are essential. Additionally, they are utilized in the manufacturing of industrial machinery parts for enhanced performance and longevity.
In recent years, “plastics replacing steel” has become the mainstream of the times. Plastic products need to have high strength, high heat resistance, conductivity, antistatic and other properties. Huashida Engineering Plastics has been committed to modifying plastics for 20 years. PA66 CF10 plastics have high rigidity, high heat resistance and…
Learn MorePA6 CF30 is a 30% carbon fiber reinforced polyamide 6 with high flexural strength and good sliding performances. PA6 CF30 is a material that tends to absorb moisture from the air. If PA6 CF30 is not fully dried before injection molding, problems can occur during the injection molding or molding…
Learn MoreThe density of PA66/CF composite material like pa66 cf30 is less than 1.3. Compared with the density of steel (7.85), it is less than one-sixth of its density, achieving the purpose of lightweight and conducive to energy saving and consumption reduction. As the CF content increases, the tensile strength and…
Learn MoreMXD6 CF30 is an injection grade engineering plastic, which is reinforced and modified with 30% carbon fiber and 70% high fluidity nylon high rigidity nylon MXD6. It has super hydrolysis resistance, excellent barrier properties, high strength, high hardness, and conductivity grade reinforced plastic.
Learn MorePPA CF30 are mainly formulated for high demands that require high stiffness & good impact strength like metal substitution or other structural applications. Positive characteristics of PPA CF30 composites include improved impact strength, elastic modulus & material strength over a wide temperature range from below room temperature to high temperature.…
Learn MoreHeat resistant PA6 CF30 (30% Carbon fiber-reinforced PA6 ) compounds produced by Carbon Element (Xiamen) New Materials Co., Ltd. can be used for metal replacement, special grades of advanced aesthetic solutions that meet specific engineering properties, including strength, stiffness, weight management, specific gravity or solid feel, and heat resistance. ,…
Learn MorePA12 Carbon Fiber Composite Materials are a new high-performance compound that mixes carbon fiber with polyamide 12 to form a uniform particle mass. PA12 Carbon Fiber material is heat-resistant, corrosion-resistant, lightweight, strong and stiff. It is widely used in multiple industries (including but not limited to) aerospace, automotive industry, rail…
Learn MorePA6 CF 30, a thermoplastic composite material, is a leading choice for applications in chemical processing equipment, automotive, aerospace, and industrial machinery. Its high toughness, fatigue resistance, and excellent wear resistance make it ideal for moving parts. PA6 CF 30 also exhibits excellent tribological performance, making it suitable for applications…
Learn MoreThe density of PA66 carbon fiber is around 1.28. The strength of carbon fiber is 20 times than that of iron, and its strength will not decrease even at high temperatures of 2000°C. It is also resistant to fatigue and corrosion.
Learn MoreIt has high strength and hardness, capable of withstanding large loads and stresses.
Compared to traditional materials, it is lighter, helping to reduce the weight of the overall structure, which is of great significance in fields such as aerospace and automotive.
This enables it to perform well in components with frequent friction, prolonging the service life of the product.
It can maintain stable performance in high-temperature environments and is suitable for high-temperature working components such as engines.
This feature can prevent the accumulation of static electricity in the electronic and electrical fields, ensuring the safe operation of equipment.
It can resist the erosion of various chemicals and adapt to different working environments.
It can be customized in shape and size according to specific needs to meet complex design requirements.
Although the initial cost may be higher, due to its long service life and high performance, it is cost-effective in the long run.
For example, in the aerospace field, its lightweight and high-strength characteristics help reduce the fuel consumption of aircraft. In electronic devices, conductivity and antistatic properties ensure the normal operation of the equipment without being affected by static electricity interference.
Carbon (Xiamen) New Material offers all-round, prompt, and professional after-sales support. A dedicated team responds within 24 hours. They solve problems remotely or on-site and provide installation and maintenance training. Feedback is used to improve service. The company also establishes long-term relationships with customers by providing regular maintenance checks and updates, ensuring the longevity and optimal performance of its products.
Carbon (Xiamen) New Material has a comprehensive quality inspection process in place, from raw material selection to finished product delivery. In raw material procurement, high-precision tests are done. During production, each step is monitored and sampled. Non-destructive testing checks for defects in finished products. This meticulous approach, coupled with continuous improvement efforts based on quality data analysis, ensures that every product leaving the factory meets or exceeds the most stringent industry standards.
In modern factory facilities, carbon fiber-reinforced thermoplastic composites are becoming increasingly important. They are precisely manufactured on highly automated production lines, combining the advantages of carbon fibers and thermoplastics. With strict quality checks and continuous R&D, they are delivered efficiently to customers worldwide, facilitating industrial development.
1. Performance Testing Equipment Equipped with universal material testing machines, dynamic mechanical analyzers (DMA), thermogravimetric analyzers (TGA), differential scanning calorimeters (DSC), thermal conductivity testers, electrical property testers, etc., to comprehensively evaluate various properties of the materials. 2. Microstructure Analysis Instruments Including scanning electron microscopes (SEM), transmission electron microscopes (TEM), X-ray diffraction analyzers (XRD), etc., for observing and analyzing the microstructure and phase distribution of the materials.
Carbon (Xiamen) New Material is flexible and can meet unique customer demands. For aerospace, it uses advanced design and simulation for complex, high-performance parts. For the automotive industry, it combines strength with aesthetic and surface treatment. By closely collaborating with customers at every stage of the production process and leveraging its technical expertise, the company ensures that the final product precisely aligns with the customer's specifications and expectations.
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!
FAQ 1: What are the key properties of Nylon Fiber-Reinforced Composites?
Answer: These composites typically exhibit increased strength, stiffness, and improved heat resistance compared to plain nylon.
FAQ 2: How are Nylon Carbon Fiber Reinforced Materials manufactured?
Answer: They are usually produced through processes such as injection molding or extrusion, where carbon fibers are incorporated into the nylon matrix.
FAQ 3: In what applications are Nylon Fiber-Reinforced Composites commonly utilized?
Answer: They are frequently found in automotive components, aerospace parts, and industrial machinery due to their high performance.
FAQ 4: What are the advantages of using Nylon Carbon Fiber Reinforced Materials over traditional metals?
Answer: They offer weight reduction, better corrosion resistance, and design flexibility.
FAQ 5: How does the cost of Nylon Fiber-Reinforced Composites compare to other composites?
Answer: The cost can vary depending on the specific formulation and manufacturing process, but it may be higher than some common composites.
FAQ 6: Are Nylon Carbon Fiber Reinforced Materials recyclable?
Answer: To some extent, but the recycling process can be challenging and may not be as straightforward as for some other materials.
FAQ 7: What kind of maintenance is required for products made from Nylon Fiber-Reinforced Composites?
Answer: Generally, minimal maintenance is needed. Regular cleaning and inspection for damage are often sufficient.
FAQ 8: Can the properties of Nylon Carbon Fiber Reinforced Materials be customized?
Answer: Yes, by adjusting the composition and processing parameters, the properties can be tailored to specific requirements.
FAQ 9: How do environmental factors affect the performance of Nylon Fiber-Reinforced Composites?
Answer: Exposure to extreme temperatures, humidity, and UV radiation can have an impact, but they are designed to withstand certain environmental conditions.
FAQ 10: What are the latest trends in the development of Nylon Carbon Fiber Reinforced Materials?
Answer: Current trends include the development of more efficient manufacturing methods, improved fiber-matrix adhesion, and enhanced material performance.