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Insights into PA612 CF: Traits and Application Scenarios

"PA612 CF" refers to carbon fiber reinforced polyamide 612 material. The following are some characteristics and application scenarios of polyamide 612 (PA612):
Characteristics:
- Low water absorption rate and good dimensional stability; relatively low density.
- Excellent low-temperature resistance, which can reach -70℃.
- The melting point is relatively low, ranging from 170 to 180℃. The molding process is easy, and the molding temperature range is wide.
- It has good flexibility, chemical stability, oil resistance and wear resistance, and is a self-extinguishing material.
- The long-term operating temperature is 80℃ (up to 90℃ after heat treatment), and it can work for a long time at 100℃ in oil and at 110℃ in inert gas.
- Good electrical insulation performance, and the insulation performance will not be affected by humidity. It has good impact resistance and chemical stability.
- Good fluidity. The shrinkage rate is generally between 0.5% and 2%, depending on the material variety, wall thickness and other process conditions.

Application scenarios:
- It can be used to make advanced toothbrushes and other industrial bristles.
- Suitable for manufacturing precision mechanical parts, wire and cable coating, oil pipelines, oil-resistant ropes, conveyor belts, bearings, linings, etc.
- In the military field, it can be used to make gun stocks, helmets and military cables, etc.
- It can be processed into monofilaments, films, plates, rods, profiles, etc. by injection molding, extrusion and other methods; its powder can be processed by methods such as fluidized bed impregnation, electrostatic coating and rotational molding, especially suitable for coating and spraying on metal surfaces.
The addition of carbon fiber may further enhance the strength, rigidity and other properties of the material. The specific characteristics and applications may vary depending on the carbon fiber content, manufacturing process and other factors. In practical applications, "PA612 CF" can meet the occasions with high requirements for material strength, stability and wear resistance. At the same time, it may also have potential application value in some fields that require lightweight and high-performance, such as aerospace, automotive manufacturing, high-end industrial equipment, etc.

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Product By Features

Carbon fiber composite sheet PA612-CF60
Carbon fiber composite sheet PA612-CF60

PA612-CF60 is a high performance composite material with 60% carbon fiber reinforcement, offering exceptional stiffness, strength, wear resistance, and dimensional stability. With a tensile strength of ≥ 350 MPa and a heat deflection temperature of up to 290°C, it excels in extreme mechanical loads, high friction environments, and harsh thermal…

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Carbon fiber reinforced nylon PA612-CF50
Carbon fiber reinforced nylon PA612-CF50

PA612-CF50 is a high performance, carbon fiber reinforced nylon composite with 50% carbon fiber content, offering exceptional mechanical strength, wear resistance, and thermal stability. Ideal for high-duty applications in automotive, industrial manufacturing, and consumer goods, it excels in extreme conditions with superior resistance to chemicals, high temperatures, and friction.

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PA612-CF40 carbon fiber reinforced nylon
PA612-CF40 carbon fiber reinforced nylon

PA612-CF40 is a high performance material with 40% carbon fiber reinforcement, offering exceptional stiffness, strength, and wear resistance. With a tensile strength of ≥250 MPa and flexural strength of ≥350 MPa, it is ideal for extreme-duty applications. It excels in high-temperature and chemical environments with negligible water absorption and excellent…

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PA612-CF30 carbon fiber filled nylon
PA612-CF30 carbon fiber filled nylon

PA612-CF30 is a high performance material with 30% carbon fiber reinforcement, offering exceptional stiffness, strength, and wear resistance. With a tensile strength of ≥200 MPa and flexural strength of ≥280 MPa, it is ideal for high-duty applications. It excels in high temperature and chemical environments with extremely low water absorption…

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Carbon fiber filled nylon PA612-CF20
Carbon fiber filled nylon PA612-CF20

PA612-CF20 is a high performance material with 20% carbon fiber reinforcement, offering exceptional stiffness, strength, and wear resistance. It has a tensile strength of ≥150 MPa and flexural strength of ≥220 MPa, making it ideal for high-duty applications. It excels in high-temperature and chemical environments with low water absorption and…

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High-performance PA612-CF10 material
High-performance PA612-CF10 material

PA612-CF10 is a high performance material with 10% carbon fiber reinforcement, offering excellent mechanical strength, stiffness, wear resistance, and thermal stability. It has a tensile strength of ≥110 MPa and flexural strength of ≥160 MPa, making it suitable for medium to high load applications. It performs well in high temperature…

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PA612-CF5 High-performance material
PA612-CF5 High-performance material

PA612-CF5 is a nylon material reinforced with 5% carbon fiber, offering good mechanical performance, wear resistance, and thermal stability. Compared to unreinforced PA612, it performs better in moderate load and friction environments. It is ideal for applications in automotive, industrial manufacturing, electronics, and consumer goods. With low water absorption and…

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Carbon Fiber Nylon 612 PA612 CF Plastic Raw Material Granules
Carbon Fiber Nylon 612 PA612 CF Plastic Raw Mat...

PA612 CF Plastic Raw Material composite material, with its diverse composition, different types of carbon fibers, excellent series of products and outstanding main properties, has a wide range of application prospects.

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PA612 CF50 China FACTORY Price Per KG
PA612 CF50 China FACTORY Price Per KG

PA612 CF50 is Polyamide 612 reinforced with carbon fiber 50% , offering high strength, stiffness, lightweight, and excellent resistance to wear, chemicals, and dimensional stability for diverse industrial applications.

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High Strength PA612 CF60 Composites
High Strength PA612 CF60 Composites

PA612 CF60 features 60% carbon fiber reinforcement, offering high strength, stiffness, lightweight, excellent dimensional stability, and resistance to wear and chemicals, making it ideal for automotive, aerospace, and industrial applications.

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Factory Price ANTISTATIC PA612 CF5 Composites
Factory Price ANTISTATIC PA612 CF5 Composites

ANTISTATIC PA612 CF5 composites are materials combining polyamide 6.12 (Nylon 612) with 5% carbon fiber, engineered to dissipate static electricity. They provide enhanced mechanical strength and chemical resistance, crucial for static-sensitive applications.

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PA612 CF10 Nylon 6.12 CF10% Manufacturer Prices
PA612 CF10 Nylon 6.12 CF10% Manufacturer Prices

PA612 CF10 blends polyamide 6.12 with 10% carbon fibers, enhancing mechanical strength, stiffness, and dimensional stability, being ideal for applications needing robust performance, heat resistance, and moderate electrical conductivity, such as automotive components and industrial parts.

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Product Feature Box

CONDUCTIVE MATERIALS

WEAR RESISTANCE

HIGH STRENGTH

ANTI STATIC

SCRATCH RESISTANCE

ABRASION RESISTANCE

ECO FRIENDLY

Company Advantage

Advanced Technology and Innovation

Companies that invest in research and development and stay at the forefront of technological advancements can gain a significant advantage. Tesla's leadership in electric vehicle technology is a case in point.

Efficient Supply Chain Management

Carbon (Xiamen) New Material has a mature supply chain that ensures raw material supply and on-time product delivery. Close ties with global suppliers guarantee quality. Cooperation with logistics experts ensures fast transportation. Real-time tracking predicts and resolves issues. The company also maintains a buffer stock of critical raw materials to mitigate supply chain disruptions and has contingency plans in place to handle unforeseen circumstances promptly.

Stringent Environmental Protection Standards

Carbon (Xiamen) New Material follows environmental regulations. It uses recyclable materials, low-VOC resins, and eco-friendly auxiliaries. It has treatment facilities and works on energy reduction, contributing to sustainability. Furthermore, it actively promotes environmental awareness among its employees and partners, and participates in environmental protection initiatives within the industry to make a positive impact on the environment.

Professional R & D Team

Carbon (Xiamen) New Material has a team of experienced material scientists, engineers, and technical experts. They innovate and improve products. Material scientists enhance interfaces, engineers optimize designs, and experts use tech for monitoring and efficiency. The team actively participates in industry conferences and workshops, fostering a culture of learning and knowledge sharing, which leads to continuous improvement in product development and process optimization.

The quality of the products is outstanding. They meet and even exceed our expectations. The supplier's attention to detail and commitment to excellence is truly commendable.

Emma Watson

The delivery was prompt and on time, which helped us meet our production schedule without any delays. The logistics and supply chain management were seamless.

Mirna Sehovic

The communication with the foreign partner was clear and efficient. They were always responsive to our inquiries and provided useful solutions. It was a pleasure doing business with them.

Ryan Reynolds
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!

  • FAQ 1: What are the main advantages of PA612 CF Reinforced Composites compared to other materials?

    Answer: PA612 CF Reinforced Composites offer superior strength and stiffness, low weight, good chemical resistance, and improved thermal stability compared to many traditional materials.

  • FAQ 2: How is the fatigue resistance of PA612 CF Reinforced Composites?

    Answer: The fatigue resistance of PA612 CF Reinforced Composites is typically excellent, making them suitable for applications that involve repetitive loading and stress cycling.

  • FAQ 3: In what industries are PA612 CF Reinforced Composites commonly used?

    Answer: They are commonly used in aerospace, automotive, electronics, and sports equipment industries due to their high-performance properties.

  • FAQ 4: How does the cost of PA612 CF Reinforced Composites compare to similar materials?

    Answer: The cost of PA612 CF Reinforced Composites is relatively higher than some conventional materials, but the enhanced performance often justifies the expense in applications where high strength and lightweight are critical.

  • FAQ 5: What processing methods are suitable for PA612 CF Reinforced Composites?

    Answer: Common processing methods include injection molding, compression molding, and filament winding.

  • FAQ 6: How does the environmental impact of PA612 CF Reinforced Composites compare to other materials?

    Answer: The environmental impact depends on various factors such as the production process and end-of-life disposal. However, efforts are being made to improve the sustainability of these composites.

  • FAQ 7: Can PA612 CF Reinforced Composites be recycled?

    Answer: While recycling can be challenging, some recycling methods are being developed and explored to reduce waste and promote circularity.

  • FAQ 8: How do variations in the percentage of carbon fiber affect the properties of PA612 CF Reinforced Composites?

    Answer: Higher percentages of carbon fiber generally lead to increased strength and stiffness, but may also impact other properties such as ductility and impact resistance.

  • FAQ 9: What are the key challenges in the use of PA612 CF Reinforced Composites?

    Answer: Challenges include high initial cost, complex processing requirements, and the need for specialized manufacturing facilities.

  • FAQ 10: How can the performance of PA612 CF Reinforced Composites be further enhanced?

    Answer: This can be achieved through optimizing the fiber-matrix interface, improving the manufacturing process, and using advanced additives or coatings.

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