Explore our top-tier industrial carbon fiber sheets, custom molded structural components, prepregs, and composite fabrications.
An authoritative analysis of Carbon Fiber Reinforced Plastics (CFRP) adoption, material science advancements, and supply chain efficiencies for international B2B procurement.
In the modern industrial manufacturing ecosystem, Carbon Fiber Reinforced Plastics (CFRP) have transitioned from specialized aerospace materials into foundational structural elements across automotive, renewable energy, unmanned aerial vehicles (UAVs), and medical equipment sectors. Characterized by an extraordinary strength-to-weight ratio, high modulus of elasticity, minimal coefficient of thermal expansion (CTE), and superior resistance to chemical corrosion, CFRP represents the pinnacle of material science engineering.
Global industrial procurement directors and engineering leads are increasingly replacing legacy structural alloys—such as Aluminum 6061-T6, Titanium Grade 5, and Structural Steel S355—with tailored carbon fiber composites. By embedding continuous carbon filament chains within epoxy, vinyl ester, or thermoplastic matrix resins, engineers achieve structural rigidities capable of withstanding extreme mechanical fatigue while reducing overall system mass by up to 70%. This weight reduction directly translates to increased payload capacity for commercial UAVs, extended range for battery electric vehicles (EVs), higher operating speeds for automated robotic arms, and reduced lifecycle operating costs.
Integrating continuous research, modern autoclaves, multi-axis CNC machining, and comprehensive OEM/ODM manufacturing excellence from Guangzhou, China.
Guangzhou RAXis Fiber Co., Ltd. is a professional manufacturer specializing in carbon fiber sheets, tubes, and custom composite products, delivering lightweight and high-strength solutions for global industries. Based in Guangzhou, China, we integrate research, development, production, and sales to provide advanced carbon fiber materials tailored to diverse application needs.
Our product portfolio includes carbon fiber sheets, tubes, plates, CNC-machined parts, and customized composite components widely used in aerospace, automotive, drones, sports equipment, and industrial structures. With a focus on precision engineering and material innovation, we ensure each product offers excellent strength-to-weight ratio, corrosion resistance, and long-term durability.
Equipped with modern production facilities and experienced technical teams, RAXis Fiber maintains strict quality control throughout the entire manufacturing process, from raw material selection to final inspection. We also provide flexible OEM and ODM services, supporting clients with custom designs, rapid prototyping, and scalable production.
Driven by continuous innovation and customer-oriented service, we are committed to delivering reliable products, competitive pricing, and efficient lead times. Guangzhou RAXis Fiber Co., Ltd. strives to be a trusted partner in providing lightweight composite solutions that enhance performance and efficiency across multiple industries worldwide.
Utilizing high-pressure vacuum autoclave curing and automated compression molding lines to ensure minimal resin void fraction (<0.5%), optimal fiber volume ratio (60-65%), and exceptional interlaminar shear strength.
Equipped with specialized high-speed diamond-coated tool CNC centers designed specifically for composite machining. We guarantee chamfering, counter-sinking, and dimensional accuracy to within ±0.05mm without delamination.
Every production batch undergoes ultrasonic non-destructive testing (NDT), C-scan flaw detection, flexural modulus verification, and automated optical dimensional inspection to guarantee 100% compliance with international standards.
Why leading global OEMs partner with Guangzhou RAXis Fiber Co., Ltd. to optimize component costs, lead times, and engineering execution.
China's domestic polyacrylonitrile (PAN) precursor production capacity has expanded significantly, securing raw tow access (T300, T700, T800, T1000). Direct raw material sourcing allows RAXis Fiber to pass cost savings directly to wholesale buyers without sacrificing structural integrity.
Leveraging Guangzhou’s robust industrial ecosystem, custom aluminum and steel composite molds are manufactured within 5 to 7 business days. Rapid prototype samples can be delivered via air freight within 10 to 12 days worldwide, drastically shortening time-to-market.
Located adjacent to major deep-water seaports in Guangzhou and Shenzhen, RAXis Fiber maintains optimized export logistics routes. We offer flexible Incoterms including FOB, CIF, DDP, and DAP with full customs documentation compliance.
Comprehensive engineering comparison between carbon fiber reinforced polymers and traditional industrial metals.
| Material Property | Carbon Fiber (T700 / Epoxy) | Carbon Fiber (T300 / Epoxy) | Aluminum 7075-T6 | Titanium Grade 5 (Ti-6Al-4V) | Structural Steel S355 |
|---|---|---|---|---|---|
| Density (g/cm³) | 1.55 | 1.50 | 2.81 | 4.43 | 7.85 |
| Tensile Strength (MPa) | 4900 | 3530 | 572 | 1170 | 510 |
| Tensile Modulus (GPa) | 230 | 230 | 71.7 | 114 | 210 |
| Strength-to-Weight Ratio | 3161 (Highest) | 2353 | 203 | 264 | 65 |
| Thermal Expansion CTE (10⁻⁶/K) | -0.1 to 0.5 (Ultra-Stable) | 0.1 to 0.7 | 23.2 | 8.6 | 12.0 |
| Corrosion Resistance | Impervious | Impervious | Moderate | High | Low (Requires Coating) |
Featuring standard 3K (3,000 filaments per tow) weave construction available in 2x2 twill or plain patterns. Ideal for drone chassis plates, automotive trim components, camera gimbals, and luxury structural enclosures requiring visual aesthetic elegance combined with torsional stiffness.
Unidirectional prepregs position carbon fibers along a single axis to maximize directional load resistance. Multi-axial knitted fabrics (+/-45°, 0°/90°, Triaxial 600GSM) deliver uniform multi-directional stress dispersion tailored for wind turbine blades, high-load robotic arms, and aerospace wing spars.
Engineering innovation combining carbon fiber stiffness with interior decorative technology. UV-coated carbon crystal stone boards, SPC/WPC bamboo composite wall panels, and ultra-flexible 3D decorative sheets provide fire-retardant, moisture-proof, and high-impact resistance for modern architecture.
Delivering tailored composite solutions engineered to satisfy rigorous mechanical and environmental requirements across diverse sectors.
Aerospace-grade T700 carbon fiber plates and CNC-machined arms provide light frames for survey drones, delivery UAVs, and satellite brackets. Minimizing structural weight extends battery flight endurance by 25-40% while maintaining vibration damping.
From custom rear aerodynamic diffusers and motorcycle controller covers (Sur-Ron accessories) to structural race car chassis components and battery enclosure reinforcement plates, our carbon composites withstand extreme thermal cycles and impact forces.
High-speed automated end-effectors, delta robot arms, and pneumatic actuation beams crafted from high-modulus carbon fiber tubes significantly reduce rotational inertia, allowing pick-and-place robots to operate at higher acceleration rates without structural deflection.
Heavy-duty 400GSM biaxial and 600GSM triaxial carbon fiber knitted fabrics provide critical spar cap reinforcement for ultra-long wind turbine blades, ensuring fatigue durability against stormy offshore wind loads.
Solid shock-resistant metal detector rods, 700c aero triathlon full carbon disc wheels, prosthetic limb frames, and X-ray radiolucent patient tables leverage carbon fiber's supreme rigidity, energy return, and non-magnetic property.
Integration of carbon fiber composite technology into interior architecture: UV wall panel technology wood veneer and carbon crystal boards provide fireproof, scratch-resistant wall surfaces with high thermal efficiency.
A streamlined step-by-step roadmap from CAD engineering review to volume manufacturing and international delivery.
Submit 3D CAD files (.STEP, .IGS, .DWG). Our engineering team performs Design for Manufacturability (DFM) analysis, confirming ply layup angles, fiber orientation, and thickness tolerances.
Precision aluminum or steel molds are machined in-house. Vacuum bag prepreg layup or compression molding tooling is validated for high-temperature thermal uniformity.
Post-curing, components undergo 5-axis CNC router machining. Surface options include 3K Twill/Plain gloss, matte UV protective clear coat, or custom water transfer printing.
100% C-scan and CMM dimensional inspection. Parts are packaged in export-grade protective foam and wooden crates, shipped via express, air, or sea freight worldwide.
Detailed technical answers to common B2B wholesale procurement queries regarding raw materials, engineering tolerances, lead times, and customization.
T300 is an industry-standard commercial carbon fiber offering a tensile strength of approximately 3,530 MPa and a tensile modulus of 230 GPa. T700 is an aerospace-grade fiber providing significantly higher tensile strength (approx. 4,900 MPa) with enhanced impact resistance at identical density. T700 is recommended for mission-critical structural applications such as high-stress drone frames, automotive impact zones, and pressure vessels.
Guangzhou RAXis Fiber Co., Ltd. produces carbon fiber sheets in thicknesses ranging from ultra-thin 0.2mm flexible veneers up to 50mm heavy structural armor plates. Standard panel dimensions include 400x500mm, 500x600mm, 1000x1000mm, and custom oversized panels up to 2500x1500mm, all customizable via CNC routing.
Yes. We specialize in custom OEM CNC cutting, drilling, countersinking, pocket milling, and edge chamfering. You can send us 2D/3D CAD drawings (DXF, STEP, DWG) and our 5-axis CNC machining centers will maintain strict tolerances down to ±0.05mm with burr-free edge finishes.
Untreated epoxy resins can experience yellowing or surface degradation under prolonged solar UV exposure. We apply specialized automotive-grade anti-UV clear polyurethane coatings (available in matte or high-gloss finish) to guarantee long-term weatherability and maintain structural clarity in harsh marine or outdoor environments.
For standard carbon fiber sheets and stock tubes, our MOQ is as low as 5 to 10 pieces. For custom tooling OEM parts, prototype samples are completed within 5-7 working days, while bulk production runs typically require 12 to 18 days depending on mold complexity and volume.
Our facility operates under ISO 9001:2015 Quality Management Standards. All raw carbon fiber tow and resin systems comply with REACH and RoHS standards. Full material certification reports (MTC) and ultrasonic C-scan non-destructive testing reports can be supplied per batch.
Discover our comprehensive collection of carbon fiber fabrics, specialized tubes, automotive components, and custom structural parts.