Find answers about carbon fiber, fiberglass, aramid/Kevlar and related composite materials. Product selection, ordering, storage, processing, and shipping—all in one place.
Carbon fiber offers the highest stiffness and strength-to-weight ratio, excellent for structural parts where weight and stiffness matter (aerospace, automotive, sports equipment). It is conductive, so avoid direct contact with metals like aluminum.
Fiberglass is the most flexible, cost-effective option. It has good strength and electrical insulation and is widely used in marine, automotive, and general industrial applications where budget and corrosion resistance are priorities.
Aramid (Kevlar) provides exceptional impact and abrasion resistance, ballistic protection, and good flexibility. It is ideal for protective gear, cut-resistant applications, and hybrid laminates where toughness matters more than stiffness.
Many projects use hybrids—e.g., carbon for stiffness with a layer of aramid for impact resistance.
The K number indicates how many thousands of filaments are in one carbon fiber tow. For example, 3K means 3,000 filaments per strand.
Lower K values drape better and give a finer visual pattern; higher K values build thickness more quickly but can be harder to work on tight curves.
Plain weave has a checkerboard pattern with balanced strength in both directions. It is stiff and stable but less drapable—best for flat or gently curved surfaces.
Twill weave (2Ă—2, 4Ă—4) is the most common choice. It offers good drape for compound curves, a characteristic diagonal pattern, and a balance of strength and workability. Ideal for automotive body panels, marine parts, and sports equipment.
Satin weave (4HS, 5HS, 8HS) has longer floats and minimal crimp, so it drapes best and yields the smoothest finish. Best for complex molds and visible cosmetic surfaces. Can be less stable during handling.
Unidirectional (UD) has all fibers in one direction—maximum strength in that direction but no cross-direction reinforcement. Often used in combination with woven plies.
GSM (grams per square meter) or ounces per square yard indicates fabric weight per unit area. Heavier fabrics add thickness and stiffness faster; lighter fabrics drape better and suit thin, curved parts.
For most projects, 200–280 g/m² offers a good balance of workability and strength.
Dry fabric is carbon fiber, fiberglass, or aramid cloth without resin. You apply epoxy, polyester, or vinyl ester resin during layup (hand lay-up, vacuum bagging, or infusion). It has no shelf-life concerns when stored dry and is suitable for most hobby and industrial work.
Prepreg is fabric pre-impregnated with partly cured (B-stage) resin. It requires controlled storage (often refrigerated or frozen) and must be cured in an oven or autoclave. Prepreg offers higher fiber volume, consistent resin ratio, and better mechanical properties, but is more demanding to handle and store.
Epoxy is the preferred choice for carbon fiber and aramid. It provides excellent adhesion, good mechanical properties, and is widely used in aerospace and high-performance applications. Choose epoxy grades suited to your cure temperature and application.
Polyester and vinyl ester resins are compatible with fiberglass and some aramid uses. They are often more cost-effective for large parts and marine applications, though they generally offer lower performance than epoxy.
Always confirm resin compatibility with the reinforcement. Some resin systems are formulated specifically for carbon fiber to avoid galvanic corrosion when carbon contacts metals.
MOQ depends on the product. Many standard items can be ordered in small quantities; wholesale and custom orders may have different minimums. For larger or project-specific orders, contact us at service@bulkcomposites.com or via WhatsApp for a quote and MOQ details.
Yes. We offer custom specifications including width, areal weight, weave pattern, and fiber type. For carbon fiber plates and tubes, custom thickness, dimensions, and laminate structure can be discussed. Please provide your requirements or drawings and we will assess feasibility and provide a quote.
Standard items in stock typically ship within a few days. Custom or large orders may need additional production time—often 1–4 weeks depending on complexity. We will confirm lead times when you place your order or request a quote.
Sample availability depends on the product. For many fabrics and materials, we can arrange small samples for evaluation. Contact our sales team to discuss your needs.
We accept common payment methods including T/T (bank transfer), and others as agreed. Payment terms for larger orders can be discussed with our sales team.
Store dry fabric in a cool, dry place, away from direct sunlight and moisture. Keep it in sealed bags or containers to avoid dust and humidity. Avoid excessive heat, which can affect any sizing or coatings. Properly stored dry fabric can last for years without degradation.
Unopened epoxy resin and hardener, stored at room temperature in sealed containers, typically have a shelf life of 1–2 years or longer depending on the formulation. Check the manufacturer’s datasheet for the specific product. Avoid freeze-thaw cycles, which can cause crystallization in some resins. If crystals appear, warming and stirring may restore usability—follow the manufacturer’s instructions.
Prepreg must be stored cold—often at -18°C (0°F) or below for long-term storage, or in a refrigerator for short periods. Room-temperature exposure is limited (days to weeks depending on formulation). Improper storage leads to premature curing, reduced tack, and poorer part quality. Always follow the supplier’s storage and out-life specifications.
Handle fabric with clean hands or gloves to avoid contamination. Use sharp scissors or a rotary cutter to minimize fraying. Support larger pieces when moving them to prevent creasing. Avoid prolonged UV exposure before layup—store in opaque bags when not in use.
Use sharp scissors, a rotary cutter, or a sharp blade. Cut on a stable surface. For aramid (Kevlar), sharp tools are especially important as the fibers are very tough. Some builders use a hot knife for aramid to seal the edges. Always cut slightly oversized and trim after layup if needed.
Carbon fiber is electrically conductive. When in contact with aluminum or other reactive metals in the presence of moisture, galvanic corrosion can occur, weakening the metal. Use a barrier layer (e.g., glass fiber) between carbon and aluminum, or use non-reactive metals (e.g., stainless steel, titanium) or plastic fittings where direct contact is required.
Epoxy resin can degrade under UV light, leading to yellowing, chalking, and loss of strength. Apply a UV-resistant clear coat or paint (e.g., polyurethane) to exposed surfaces. Some resins include UV inhibitors, but a dedicated topcoat is recommended for outdoor or long-term use.
Use a smooth, polished mold with a quality release agent. Place the carbon fiber against the mold for the best surface. Apply adequate resin without excess, and use proper consolidation (roller, squeegee, or vacuum) to avoid voids. After cure, sand lightly if needed and apply a clear coat for protection and gloss.
Yes. Carbon fiber parts can be painted, cleared, or coated. Ensure the surface is clean, lightly abraded if necessary, and compatible with your chosen coating. Epoxy-based parts generally accept automotive paints and clear coats well. Test on a small area first for adhesion.
Yes. We ship to customers worldwide. Shipping cost depends on weight, volume, and destination. Add items to your cart and proceed to checkout to see shipping options and costs before placing your order. For large or complex orders, contact us for a custom shipping quote.
Epoxy and other liquid resins are classified as hazardous materials (hazmat) for transport. They require special handling and packaging, and are often restricted to ground shipping. As a result, shipping costs for these products are typically higher and weight may be charged at a premium (e.g., doubled) in our shipping calculator.
We send a dispatch notification by email with tracking information once your order is shipped. You can track your parcel at 17TRACK or on the carrier’s website (DHL, UPS, FedEx, EMS, etc.). See our Shipping Information page for full details.
BulkComposites is a China-based supplier with headquarters in China. We sell to customers worldwide—hobbyists, manufacturers, fabricators, and businesses in the Americas, Europe, Asia, and elsewhere. We combine a strong supply chain with international sales and support.
Yes. Our technical team can help with product selection, layup advice, and troubleshooting. Contact us by email at service@bulkcomposites.com or via WhatsApp. We aim to reply on business days as soon as possible.
Yes. Visit our Wholesale & Custom page to view or download the product catalog. For custom specs or datasheets, contact our sales team.
Carbon fiber can be recycled, but recycled material is generally weaker than virgin fiber and is often used in non-structural applications. Recycling processes (e.g., pyrolysis) are evolving. For now, virgin carbon fiber remains the standard for high-performance structural use.
Carbon fiber production involves expensive raw materials (precursors), energy-intensive processing, and specialized equipment. The result is a material with exceptional strength and stiffness. Fiberglass uses more common raw materials and processes, making it lower in cost. The choice depends on your performance requirements and budget.
Our team is here to help with product selection, custom orders, and technical support.
service@bulkcomposites.com · +86 181 4876 2750