High-Strength PA66-CF60 Carbon Fiber - Carbon Fiber Compounds Manufacturer | Supplier
High-Strength PA66-CF60 Carbon Fiber - Carbon Fiber Compounds Manufacturer | Supplier
High-Strength PA66-CF60 Carbon Fiber - Carbon Fiber Compounds Manufacturer | Supplier
High-Strength PA66-CF60 Carbon Fiber - Carbon Fiber Compounds Manufacturer | Supplier
High-Strength PA66-CF60 Carbon Fiber - Carbon Fiber Compounds Manufacturer | Supplier
High-Strength PA66-CF60 Carbon Fiber

PA66-CF60 is an enhanced version of polyamide 66, containing 60% carbon fiber. It offers significantly improved tensile strength (up to 160 MPa) and exceptional rigidity (flexural strength exceeding 300 MPa), making it highly suitable for high-load and harsh environments. This material is not only lightweight but also provides excellent impact resistance and structural stability, making it widely used in engineering and industrial applications.

  • Model number: PA66-CF-BCA6
  • Matrix Resin: Nylon6 6(Polyamide66) (PA66)
  • Reinforcing Filler: Carbon fiber
  • Appearance: Granules
  • Grade: Injection/extrusion grade
  • Packaging: 25kgs/bag
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PA66-CF60 Overview

PA66-CF60 is an advanced composite material that incorporates 60% carbon fiber into nylon 66 (PA66). This innovative material is designed for applications demanding superior strength, stiffness, and thermal stability, making it an excellent choice for high-performance environments.

Key Features of PA66-CF60

Exceptional Tensile Strength: The integration of 60% carbon fiber significantly enhances the tensile strength of PA66 CF60, generally exceeding 300 MPa. This outstanding strength positions it well for high-stress applications across various industries, including automotive, aerospace, and industrial sectors.

Lightweight Composition: PA66 CF60 maintains a strong yet lightweight profile, with a density of approximately 1.35-1.45 g/cm³. This characteristic is crucial in sectors where reducing weight can lead to improved performance and cost efficiency, such as in automotive and aerospace applications.

Outstanding Impact Resistance: With high impact resistance values ranging from 160 to 200 kJ/m², PA66 CF60 can withstand significant pressures and impacts. This durability is essential for applications that demand resilience under challenging conditions.

Enhanced Wear Resistance: The increased carbon fiber content contributes to lower wear rates, typically between 0.008 and 0.025 mm³/kWh. This property is particularly beneficial in high-wear environments, such as gears and bearings, ensuring long-lasting performance and minimal maintenance.

Application Industries

Automotive Industry: PA66-CF60 is ideal for structural components, housings, and brackets that require an excellent strength-to-weight ratio. Its robustness and lightweight nature make it suitable for various automotive applications, both interior and exterior.

Aerospace Industry: In the aerospace sector, the need for lightweight and strong materials is paramount. PA66 CF60 is perfect for creating lightweight components that must operate reliably under extreme conditions.

Industrial Equipment: The material is widely employed in high-performance machinery and equipment, including gears and wear-resistant parts. Its superior strength and durability make it an ideal choice for demanding industrial applications.

Consumer Goods: PA66-CF60 is increasingly used in high-end consumer products, such as sporting goods, power tools, and durable household items, delivering enhanced performance and longevity.

Summary Table

Category Details
Definition PA66 CF60 is a composite material with 60% carbon fiber added to nylon 66 (PA66).
Advantages 1. Exceptional Tensile Strength: Tensile strength > 300 MPa.
2. Lightweight: Density 1.35-1.45 g/cm³.
3. Outstanding Impact Resistance: Impact strength 160-200 kJ/m².
4. Enhanced Wear Resistance: Wear rate 0.008-0.025 mm³/kWh.
Industries of Application 1. Automotive Industry
2. Aerospace Industry
3. Industrial Equipment
4. Consumer Goods

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PA66-CF60 granules

PA66-CF60 granules typically have a round or irregular shape, with diameters generally ranging from 1 to 2 centimeters. This shape ensures uniform flow during processing, providing consistency in molding and extrusion techniques. The granules feature a smooth surface, facilitating easy mixing with other materials and enhancing their versatility across various applications. Their size also makes these granules convenient for storage and transportation, effectively minimizing space requirements. These characteristics make PA66-CF60 granules widely utilized in diverse industries, meeting various processing demands and ensuring the quality and performance of the final products.

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In the strength comparison, the tensile strength of PA66 typically ranges from 70 to 80 MPa, while the tensile strength of PA66-CF60 can reach 160 MPa, an increase of about twofold. Additionally, the flexural strength of PA66 is around 100 to 120 MPa, whereas that of PA66-CF60 can exceed 300 MPa, demonstrating a significant increase in rigidity. These values indicate that PA66-CF60 exhibits superior mechanical performance when subjected to high loads and harsh environments, making it suitable for engineering applications that require higher strength and stability.

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Frequently Asked Questions

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!

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  • What are CF Reinforced Thermoplastic Composites?

    CF Reinforced Thermoplastic Composites are materials where carbon fibers are incorporated into a thermoplastic matrix. They combine the strength and stiffness of carbon fibers with the processability and recyclability of thermoplastics. For instance, they are used in automotive parts like bumper beams.

  • What are the benefits of CF Reinforced Thermoplastic Composites over traditional composites?

    The key benefits include faster production cycles, easier recyclability, and better impact resistance. They also offer design flexibility. An example is in the manufacturing of consumer electronics casings where complex shapes can be achieved more easily.

  • How are CF Reinforced Thermoplastic Composites processed?

    Common processing methods include injection molding, extrusion, and compression molding. Injection molding is widely used for mass production. For example, in the production of small components for the medical industry.

  • What industries use CF Reinforced Thermoplastic Composites?

    They are utilized in aerospace, automotive, medical, and sports equipment industries. In aerospace, they can be found in interior components. In the medical field, they might be used in prosthetics.

  • How does the carbon fiber content affect the properties of the composites?

    Higher carbon fiber content generally leads to increased strength and stiffness but may reduce ductility. A moderate content is often balanced for specific applications. For example, a higher content might be preferred in structural parts of a race car.

  • What are the challenges in using CF Reinforced Thermoplastic Composites?

    Challenges include higher material costs, complex processing equipment requirements, and ensuring uniform fiber dispersion. Issues with adhesion between the fibers and the matrix can also arise. An example is in achieving consistent quality in large-scale production.

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