Explore our structural composite raw materials, precision carbon fiber plating, and high-strength custom mechanical components engineered for demanding industrial tasks.
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.
Sqm Production Capacity
CNC Machining Tolerance
Exporting Destination Countries
Raw Material Traceability
Why modern logistics systems for aerospace components, lithography equipment, and tactical systems demand the high-performance properties of Carbon Fiber Reinforced Polymers (CFRP).
Aircraft engines, avionics bays, and radar nose cones require custom-fitted structures that prevent vibration resonances. Composite packaging ensures low-mass transit with zero structural deflection.
Optical mirrors and lithography blocks cannot withstand changes in temperature. Custom carbon fiber housings provide near-zero thermal expansion, preserving alignments across climate-controlled flights.
Our carbon fiber packaging assemblies are ideal for sea-freight and deep-well exploration equipment. Excellent resistance to chemical mist, salts, and high humidity prevents surface degrade.
A technical engineering comparison illustrating why carbon fiber composites replace traditional steel, aluminum, and advanced polymers in logistics structures.
| Material Type | Density (g/cm³) | Tensile Strength (MPa) | Tensile Modulus (GPa) | Coefficient of Thermal Expansion (10⁻⁶/K) | Corrosion Resistance |
|---|---|---|---|---|---|
| RAXis 3K CFRP Laminate | 1.55 - 1.60 | 1200 - 1800 | 130 - 150 | -0.5 to 0.5 | Outstanding (Acids, Bases, Marine Salt) |
| Aerospace Grade Aluminum (7075-T6) | 2.81 | 572 | 71.7 | 23.6 | Moderate (Requires Coating/Anodizing) |
| Structural Steel (A36) | 7.85 | 400 | 200 | 12.0 | Poor (Prone to Oxidation/Rusting) |
| High-Density Polyethylene (HDPE) | 0.95 | 20 - 30 | 0.8 - 1.2 | 120.0 | Good (Vulnerable to Thermal Deflection) |
At our Guangzhou manufacturing base, RAXis Fiber maintains state-of-the-art facilities featuring large-scale autoclave systems, compression molding presses, and automated CNC routing machines. We ensure that our composite solutions meet precise specifications for challenging packaging and structural applications.
Our engineering services range from initial design and FEM structural analysis to prototype validation and high-volume component production. This ensures your components remain secure under high g-force acceleration, environmental changes, or mechanical loads.
Ensuring compliance with international aerospace, automotive, and hazardous material transport frameworks.
Our processes conform to the ISO 9001:2015 standard. From fiber verification to post-cure inspection, we provide material traceability certificates for every batch.
We select epoxies and resin formulations that satisfy RoHS, REACH, and environmental directives, eliminating outgassing issues during transport.
Our lightweight CFRP containers help operators reduce fuel consumption and emissions while meeting structural durability standards.
Our R&D efforts are focused on the integration of smart sensors, bio-based resin systems, and high-efficiency manufacturing technologies.
Embedding thin piezoelectric sensors directly into carbon fiber laminates to enable real-time tracking of impact loads and structural integrity.
Developing high-strength bio-based epoxy resins to lower the carbon footprint of structural packaging containers without compromising mechanical performance.
Combining continuous fiber 3D printing with CNC machining to manufacture custom protective enclosures without expensive molds.
Insights into custom carbon fiber laminates, material selection, and structural performance.
Explore our selection of specialized industrial parts, continuous fiber-reinforced 3D printed components, and custom raw materials.