LFT-G® PA6 CF30 High-Strength Long Carbon Fiber Nylon 6 Compound

LFT-G® PA6 CF30 High-Strength Long Carbon Fiber Nylon 6 Compound

Details
LFT-G® PA6 CF30 BC03B is an ultra-structural 30% continuous long carbon fiber reinforced nylon 6 engineering compound, pultrusion-synthesized to achieve exceptional tensile strength, low isotropic shrinkage, and high surface wear resistance for demanding metal-replacement applications.
√Extreme 24,500 MPa Tensile Rigidity Strength
√Ultra-Low Isotropic Shrinkage Dimensional Stability
√Superior Long-Strand Mechanical Surface Wear Resistance
√Definitive Structural Metal Lightweighting Replacement Efficiency
Category
PA6 LCF Compound
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Description
Technical Parameters

What is PA6 CF30?

LFT-G® PA6 CF30 BC03B is a 30% carbon fiber reinforced polyamide 6 composite engineered for high-performance applications requiring extreme mechanical strength and lightweighting. The premium grade from LFT-G® PA6 CF30 (Model: LFT-G® PA6 LCF30-BC03B) utilizes an advanced continuous pultrusion method to encapsulate long carbon strands rather than traditional short chopped fragments. This structural approach preserves a continuous internal 3D carbon fiber skeleton that uniformly distributes dynamic load forces, offering an ideal solution for challenging structural metal replacement layouts.LFT-G PA6 LCF30 VS PA6 CF30 Carbon fiber composite

 

Core Product Advantages:

  • Extreme Structural Rigidity: 22,500 MPa tensile modulus replaces die-cast metals and machined steel.
  • Low Isotropic Shrinkage: Near-zero mold contraction (0.1% - 0.2%) ensures reliable dimensional stability with zero part warping.
  • Superior Surface Wear Resistance: Continuous fiber network reinforces the polymer matrix against sliding friction and wear abrasion.
  • Inherent EMI Shielding: Conductive network infrastructure provides permanent electromagnetic protection for electronics enclosures.
 

The Tribo-Mechanical Armor: Standard PA6 CF30 vs. LFT-G® PA6 LCF30

Sourcing engineers often specify generic 30% carbon fiber nylon only to face part cracking or cooling deformation. Discover how continuous long carbon fiber network architecture redefines industrial part life.

LFT-G Elite PA6 CF30  Long Carbon Fiber VS Short carbon fiber PA6 CF30

Standard Short PA6 CF30

- Fragmented Core Base: Broken chopped carbon fiber fragments easily detach under dynamic friction, increasing surface wear.
- High Differential Warping: Non-uniform cooling forces cause noticeable part deformation and assembly errors.
- Brittle Stress Points: Limited energy dissipation curves result in fracturing under unexpected heavy mechanical impacts.
- Structural Reliability: RISK-PRONE

LFT-G® PA6 LCF30-BC03B

- Interlocking 3D Skeleton: Continuous long carbon core filaments absorb external forces uniformly to prevent creep deformation.
- Isotropic Control Balance: Uniform shrink characteristics eliminate component warping during cooling cycles.
- Premium Tribo-Performance: Continuous interlocking fiber distribution securely reinforces the surface against abrasive wear.
- Structural Reliability: UNMATCHED

Typical Material Properties (LFT-G® PA6 LCF30-BC03B)

The engineering parameters detailed below represent typical properties recorded inside the LFT-G® Polymer Characterization Laboratory under Dry-As-Molded (DAM) conditions. Testing complies with specific ISO and ASTM standards to ensure strict laboratory data validation.

Mechanical Testing Profile

Property Test Standard Value (DAM State)
Tensile Modulus ISO 527 22,500 MPa
Tensile Strength ISO 527 231 MPa
Flexural Modulus ISO 178 15,000 MPa
Flexural Strength ISO 178 335 MPa
Notched Izod Impact (23°C) ISO 180/A 21 kJ/m²

Thermal & Physical Analysis

Property Test Standard Value
Density ISO 1183 1.24 g/cm³
HDT (0.45 MPa) ISO 75 208 °C
HDT (1.80 MPa) ISO 75 212 °C
Mold Shrinkage ISO 294-4 0.10 - 0.20 %

 

 

 

Processing Parameters & Recommendations

Standard molding guidelines for processing LFT-G® PA6 LCF30 composites. To protect the highly structural 30% carbon fiber nylon framework from premature mechanical shear and fiber breakage, implement a low-compression screw profile, keep back pressure strictly under 50 psi, and optimize gating structures.

Parameter Recommendation
Drying Temperature 80 - 100 °C
Drying Time 4 - 6 hours (Dehumidifying desiccant air dryer required)
Rear / Feed Zone (Zone ①) 260 - 280 °C
Center / Melt Zone (Zone ②) 270 - 290 °C
Front / Nozzle Temp (Zone ③) 275 - 295 °C
Mold Temperature 80 - 110 °C

Injection molding Process info for LFT-G High Performance Polyamides

 

Quality Assurance & Laboratory Compliance Framework

Our manufacturing plant operates under verified international control frameworks. Every manufacturing lot undergoes technical evaluation inside the calibrated LFT-G® Testing Laboratory prior to shipment clearance.

Our Certificate

 

 

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IATF16949 Certificate-LFT-G

IATF 16949:2016

ISO 9001 CERTIFICATE-1 at Xiamen LFT-G

ISO 9001:2015

ISO14001_Environment Manggement System Certificate of LFT-G

Environmental Management System Certificate

 

ISO 9001:2015

Quality Management Systems Certified

SGS Checked

Material Verification & Audited Provenance

RoHS & REACH

100% Compliant Non-Hazardous Lots

Multi-Industry Application Cases

Aerospace Drone Structural Arms PA6 LCF30 BC03B

Aerospace UAV & Drone Structural Arms

Industrial unmanned aerial vehicles demand extreme torsional rigidity to support complex tracking payloads under heavy wind forces. LFT-G® PA6 LCF30 directly replaces laminated carbon fiber tubes, shortening assembly run cycles while supplying identical structural rigidity and flight weight advantages.

Robotics Articulated Arm Joint PA6 CF30

Robotic Articulated Arms & Automation Hubs

Optimized specifically for structural industrial robotics layouts. The oriented 30% long carbon fiber skeleton minimizes dynamic inertia forces during rapid position tasks, eliminating structural fatigue without high custom tooling costs.

Automotive Engine Structural Brackets PA6 LCF30

High-Load Automotive Engine Brackets

Under-the-hood engine bracket modules require high mechanical stability and long-term resistance to cyclic mechanical vibration. LFT-G® PA6 LCF30 stands up to persistent structural fatigue, successfully bypassing die-cast zinc parts to lower total assembly mass.

Frequently Asked Questions (FAQ)

Q: Are you a factory or an trading?

A: We are a direct manufacturing enterprise specializing in continuous long fiber reinforced thermoplastics (LFT). Our ISO 9001:2015 certified plant in China manages the complete pultrusion manufacturing cycle, allowing us to supply consistent premium lots straight from our floor to international buyers with full batch traceability data.

Q: Can I obtain a sample compound lot for trial validation before launching a bulk contract?

A: Yes, absolutely. LFT-G welcome laboratory and tool trial confirmation testing. Please contact our sales representatives directly to prepare an expedited 25KG test sample bag.

Q: What is your standard lead time for shipment ?

A: Standard validation sample preparation logs require 2 to 5 working days, while standardized container-load bulk allocations clear factory logistics within 1 to 2 weeks.

Accelerate Structural Metal Replacement Solutions

Eradicate the weight penalties, surface friction wear, and cooling warping flaws of generic short-fiber compounds. Contact the global LFT-G® engineering department today for custom product optimizations.

Request LFT-G® PA6 CF30 Quote

Email Inquiry: Candyhu@lfrtplastic.com

WhatsApp Messenger: +86 139 5009 5707

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