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Long Carbon Fiber Reinforced Thermoplastics

Long CF reinforced thermoplastics allow them to be more easily combined with other materials (such as thermoplastic resins) to form composite materials, thereby giving full play to their excellent mechanical properties and design flexibility.
Advantages:
1. High Strength and Stiffness
2. Lightweight
3. Corrosion resistance and wear resistance
4. Excellent thermal conductivity
5. Design Flexibility

Application:
1. Aerospace
2. Automotive Industry
3. Sports Equipment
4. Energy Industry
5. Construction Industry

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Product By Features

PPS-LCF50 Precision Components
PPS-LCF50 Precision Components

PPS-LCF50 is a high performance thermoplastic reinforced with 50% long carbon fiber, delivering exceptional strength (≥ 220 MPa), stiffness (~22 GPa), and thermal stability up to 250 °C. Ideal for metal replacement, it excels in structural, high load, and chemically harsh environments across automotive, aerospace, and industrial applications.

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PPS-LCF40 Composites for Automotive Parts
PPS-LCF40 Composites for Automotive Parts

PPS-LCF40 is a high performance thermoplastic reinforced with 40% long carbon fiber, delivering exceptional stiffness, tensile strength (≥ 200 MPa), and thermal stability up to 240 °C. Ideal for metal replacement in high load, high temperature, and chemically aggressive environments, it excels in automotive, aerospace, and industrial structural applications.

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high performance PPS-LCF30 additive manufacturing
high performance PPS-LCF30 additive manufacturing

PPS-LCF30 is a high performance thermoplastic reinforced with 30% long carbon fiber, offering exceptional stiffness, tensile strength, and dimensional stability. It performs reliably in high load, high temperature (up to 230 °C), and chemically aggressive environments, making it ideal for metal replacement in automotive, aerospace, and industrial applications.

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Lightweight Structural Components PPS-LCF20
Lightweight Structural Components PPS-LCF20

PPS-LCF20 is a high-performance thermoplastic reinforced with 20% long carbon fiber, offering superior stiffness, tensile strength, and fatigue resistance compared to lower fiber grades. It maintains excellent dimensional stability, thermal resistance (up to 220 °C), and chemical durability in demanding environments, making it ideal for structural components in automotive, aerospace, and…

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PPS-LCF10 for aerospace applications
PPS-LCF10 for aerospace applications

PPS-LCF10 is a high performance thermoplastic reinforced with 10% long carbon fiber, offering enhanced strength, stiffness, and fatigue resistance compared to short fiber grades. It maintains excellent thermal stability (up to 200 °C) and chemical resistance in harsh environments, making it ideal for lightweight structural parts in automotive, aerospace, and industrial…

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High Strength PA612 LCF Composites Modified Nylon PA612
High Strength PA612 LCF Composites Modified Nyl...

1. 300MPa Tensile Strength -Rivals aerospace alloys 2. 95kJ/m² lmpact Resistance – Survives road debris impact 3. 2×107 Fatigue Cycles – Outlasts aluminum components 4. 85% Strength @130°C – Performs in hot zones 5. <0.3mm/m Warpage – Maintains precision in humidity

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High Mechanical Property Composites PA612 LCF30 PA612-LCF
High Mechanical Property Composites PA612 LCF30...

*280MPa Tensile – Rivals steel strength *90kJ/m² Impact – Survives brutal shocks *10⁷ Fatigue Cycles – Outlasts aluminum 5X *0.5% Creep@120°C – Holds shape under stress *1.32g/cm³ Density – 60% lighter than steel

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Antistatic PA12 LCF20 China Manufacturer Prices for ESD-safe Trays
Antistatic PA12 LCF20 China Manufacturer Prices...

Antistatic PA12 LCF20 Features: *Permanent ESD protection: 10⁶-10⁹ Ω surface resistance (IEC 61340-5-1) *High strength: 95-115 MPa tensile (ISO 527) *Chemical resistant: Withstands 500+ IPA cleaning cycles *Thermal stable: 155-165°C HDT (ISO 75-A)

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Electric Conductive Raw Materials LCF40 PA12 Thermoplastics
Electric Conductive Raw Materials LCF40 PA12 Th...

*High conductivity: 10²–10⁴ Ω·cm resistivity for ESD/EMI protection. *Enhanced strength: 120–140 MPa tensile, 30% stronger than pure PA12. *Heat resistant: 160–170°C HDT withstands soldering/automotive demands. *Low moisture absorption: <0.7% ensures dimensional stability.

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Chemical Resistant TPU-LCF60 for Fluid Handling Systems
Chemical Resistant TPU-LCF60 for Fluid Handling...

TPU-LCF60 is an ultra-high-strength thermoplastic polyurethane reinforced with 60% long carbon fiber, delivering metal-like rigidity, superior heat resistance, and exceptional dimensional stability—while retaining TPU’s shock absorption and fatigue resilience. Ideal for extreme-load, semi-structural applications in automotive, robotics, aerospace, and ruggedized systems.

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Flexible Polyamide Polymer TPU-LCF50
Flexible Polyamide Polymer TPU-LCF50

TPU-LCF50 is an ultra reinforced thermoplastic polyurethane composite with 50% long carbon fiber, offering exceptional tensile strength, stiffness, and thermal resistance while maintaining shock absorption and fatigue durability. Ideal for high load, semi structural components in automotive, industrial, and robotic applications requiring precision, toughness, and controlled flexibility.

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High Stiffness and Low Friction TPU-LCF40
High Stiffness and Low Friction TPU-LCF40

TPU-LCF40 is a high strength thermoplastic polyurethane reinforced with 40% long carbon fiber. It combines exceptional stiffness, tensile strength (≥ 80 MPa), and dimensional stability with retained flexibility and impact resistance, making it ideal for semi-structural components in automotive, robotics, and industrial applications exposed to vibration, heat (up to 110 °C), and chemical…

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Product Feature Box

WEAR RESISTANCE

CONDUCTIVE MATERIALS

HIGH STRENGTH

ANTI STATIC

SCRATCH RESISTANCE

ABRASION RESISTANCE

ECO FRIENDLY

LIGHT WEIGHT

Main characteristics

1. Outstanding mechanical strength – They possess high tensile and compressive strengths.
2. Excellent stiffness – Ensuring rigidity in various applications.
3. Good fatigue resistance – Can withstand repeated loading without significant degradation.
4. Superior impact toughness – Absorb and disperse impact energy effectively.
5. Low density – Leading to lightweight products.
6. High heat resistance – Maintain performance at elevated temperatures.
7. Excellent chemical resistance – Resist the effects of various chemicals.
8. Good electrical conductivity – Suitable for certain electrical applications.
9. Rapid molding process – Shorten production cycles.
10. Recyclability – Contribute to environmental protection and cost savings.
11. Design flexibility – Enable complex shapes and structures.
12. Long-term dimensional stability – Retain shape and size over time.

Company Advantage

Customization Production Capacity

Carbon (Xiamen) New Material Co., Ltd. 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.

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.

Professional R & D Team

Carbon (Xiamen) New Material Co., Ltd. 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.

Excellent After-sales Service

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 Long CF Thermoplastic Composites we imported have significantly improved our product quality. Fantastic!"

Madelaine Jovanović

"We are extremely satisfied with the performance of Long CF Thermoplastic Composites. It's a game-changer for our business."

Katarina Chaudhary

"Long CF Thermoplastic Composites have exceeded our expectations. Highly recommended for anyone in the industry."

Einar Skoglund

"The quality and durability of Long CF Thermoplastic Composites are top-notch. We will keep buying."

Alina Quintana

"These composites have given our products a competitive edge. Great job!"

Soren Wojciechowski

"Long CF Thermoplastic Composites are okay. They do the job, but nothing extraordinary."

Ximena Zambrano

"The performance of these composites is decent. Not amazing, but not bad either."

Thorbjorn González

"Long CF Thermoplastic Composites are average. Could be better, but could also be worse."

Ivy Kowalski
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!

  • What Are Long CF Thermoplastic Composites?

    Long CF Thermoplastic Composites are a type of advanced material having long carbon fibers in a thermoplastic matrix, offering high strength and other excellent properties.

  • What are the main advantages of Long CF Thermoplastic Composites?

    They provide high strength, stiffness, lightweight, good heat resistance, and excellent fatigue resistance.

  • How are Long CF Thermoplastic Composites different from short CF ones?

    Long fibers offer better mechanical properties and load-bearing capacity.

  • In which industries are they commonly used?

    Aerospace, automotive, electronics, and sports equipment industries.

  • Can long carbon fiber reinforced thermoplastics be recycled?

    Yes, but the process depends on the specific thermoplastic used.

  • How difficult is it to process these composites?

    Processing can be challenging and requires specialized equipment.

  • What is the impact of fiber orientation on the properties?

    Fiber orientation significantly affects strength and stiffness in specific directions.

  • Are they more expensive than traditional materials?

    Typically, but the performance justifies the cost in many high-performance applications.

  • How do environmental factors affect their performance?

    Moisture and UV radiation have limited effects, but extreme conditions may cause some changes.

  • Can they be combined with other materials?

    Yes, they can be combined with metals or other polymers for specific properties.

  • What are the future trends in the development of these composites?

    Continued improvement in properties, easier processing, and wider application areas.

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