LFT-G® PA6 CF30 BC03B Material
| Product Name |
LFT-PA6 CF30 BC03B Carbon fiber Nylon6 Compound |
|
Model No
Matrix Resin Brand |
LFT-PA6-BC03B LFT-PA6+LCF30% Polyamide 6 LFT-G® |
| Filled Fiber Type | 30% Long Carbon Fiber (China's) |
| Delivery Form | Pellets |
| Processing | Injection Molding |
| Special characteristics | High Strength, High Modulus, Good Wear Resistance, Lightweight, Replace Metal Part |
What Is PA6 CF30 ?
LFT-G® BC03B PA6 CF30 is a 30% long carbon fiber (china's) reinforced polyamide6(nylon6) Compound. This high-performance carbon fiber reinforced plastic is engineered for applications demanding a superior balance of strength, high modulus, and low weight. By reinforcing a durable Polyamide 6 matrix with 30% long carbon fiber, this reinforced polymer provides a significant performance increase over short fiber versions, especially in impact strength and creep resistance. It is an ideal lightweight solution for replacing metal parts in automotive, industrial, and high-end sporting goods where structural integrity is critical.
How Strong Is nylon carbon fiber material?
LFT-G® BC03B PA6-CF30 Datasheet
Mechanical PropertiesProperty |
Value |
Unit |
Test Standard |
|---|---|---|---|
| Tensile Strength | 231 | MPa | ISO 527 |
| Tensile Modulus | 22120 | MPa | ISO 527 |
| Elongation at Break | 0.8 - 1.5 | % | ISO 527 |
| Flexural Strength | 331 | MPa | ISO 178 |
| Flexural Modulus | 14096 | MPa | ISO 178 |
| Notched Izod Impact Strength (23°C) | 356 | J/m |
ISO 180
|
| Notched Charpy Impact Strength (23°C) | 37 | kJ/m² |
ISO 179
|
Other PropertiesProperty |
Value |
Unit |
Test Standard |
|---|---|---|---|
|
Specific Gravity (Density)
|
1.23 |
g/cm³
|
ISO 1183
|
|
Molding Shrinkage (Flow)
|
0.1 - 0.3 | % |
ISO 294-4
|
|
Heat Deflection Temperature (1.8MPa)
|
208 |
°C
|
ISO 75-2/A
|
|
Melt Temperature
|
240 - 270 |
°C
|
|
|
Mold temperature
|
60- 95 |
°C
|
Disclaimer: Please note: The data provided for LFT-G® PA6 CF30 represents typical values obtained from controlled laboratory testing according to international standards. These figures are intended for reference and comparison purposes only. The final properties of a molded component can be influenced by processing parameters, part design, colorant usage, and other manufacturing variables.
Download Complete BC03B PA6-CF30 Datasheet PDF
Processing Information
To unlock the full potential of LFT-G® PA6 CF30, precise control of the injection molding process is crucial. As a polyamide-based reinforced polymer, proper pre-drying is essential to prevent hydrolysis. Processing at elevated melt and mold temperatures is required to ensure a homogeneous melt and preserve the integrity of the long carbon fiber network.

| ①Drying Time | 4-6 hours |
|
Drying Temperature |
80-110°C |
| ② Temperature Zone (Melt) | 230-270°C |
| ③Mold Temperature | 60-90°C |
Why choose Long Carbon fiber and not short fiber?
The choice between long and short carbon fiber is critical for achieving high performance. A long carbon fiber composite creates an internal skeletal network within the polymer, providing vastly superior impact strength, a higher modulus, and better creep resistance. This structure allows for more effective stress transfer along the fibers, resulting in a much tougher and more durable part compared to the random, disjointed nature of short fiber reinforcement, making it the superior choice to replace metal parts.
Benefits Filled Long Carbon fiber
- Exceptional Strength & High Modulus
- Extremely Lightweight for Metal Replacement
- Superior Fatigue & Creep Resistance
- Excellent Dimensional Stability & Low Shrinkage
- Good Wear Resistance and Low Friction
- Inherent Electrical Conductivity

What is carbon fiber nylon material used for?
Long carbon fiber reinforced nylon, especially a high-performance grade like our LFT-G®PA6 carbon fiber composite, is used for demanding engineering applications where strength, stiffness, and low weight are critical. In the automotive sector, it is ideal for structural components and brackets. For aerospace and defense, it is used for structural drone components and lightweight equipment. In industrial settings, it excels in high-speed machinery parts and robotics. This PA6 CF30 is a premier material designed to replace metal in many high-stress applications.

Automotive Part
The high stiffness and lightweight nature of this composite make any PA6-CF30 part an excellent choice for replacing metal in high-load structural and functional automotive components.
Expert Insight: Light weighting Success
"We worked with an automotive tier-1 supplier to replace a die-cast aluminum bracket with LFT-G® PA6 CF30. The result was a 40% weight reduction with improved fatigue performance. The client was able to reduce vehicle mass and simplify assembly, showcasing the immense potential of this material to replace metal parts effectively."
- Structural chassis brackets and reinforcements
- Seat frames and structural components
- Pedal boxes and shifter assemblies
- Mirror housings and support stalks
- Engine and transmission components
Sport Equipment Part
The excellent stiffness-to-weight ratio of our LFT-G® PA6 CF30 makes it a fantastic material for high-performance sporting goods where reducing weight while increasing strength is a key goal.
- High-performance bicycle frames and components
- Components for high-end ski bindings
- Structural parts for competitive drones
- Lightweight stocks for sporting firearms
- High-end fishing reel bodies and handles

FAQ about PA6 CF30
Why is the carbon fiber from China?
A: We source high-quality fiber to ensure excellent performance and provide a cost-effective solution for our customers. For applications with specific aerospace or premium OEM requirements, our LFT-G®PA6 CF30 is also available with fibers from other world-renowned brands upon request.
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