

Carbon Fiber Composite Material Hot Pressing Molding Process
Our factory employs an advanced carbon fiber hot press process with a P20 steel mold, ensuring high efficiency, precision, durability, and cost-effectiveness for quality production.
We manufacture custom carbon fiber parts used in bicycles, e-bikes and cycling equipment. We do not focus on retail sales of complete standard bicycles. Instead, we support OEM and ODM carbon fiber bicycle components, including frame sections, forks, handlebars, fenders, guards, e-bike covers and custom lightweight structural parts.
For clients developing complete carbon fiber bikes, we can also provide reference models, component integration support and manufacturing evaluation based on your target weight, riding scenario, market positioning and budget.
We are not a retailer. We are a composite material manufacturing factory — not only a bicycle frame supplier, but a custom carbon fiber composite manufacturer for bicycle, e-bike and sports equipment projects. Our long-term experience across automotive, motorcycle, sports and industrial carbon fiber sectors is applied to bicycle component manufacturing for B2B clients across Europe, North America, Australia, Southeast Asia and the Middle East. To learn more about our background and manufacturing capabilities, visit our About page.
We support a wide range of carbon fiber bicycle components. Below is an overview of what we currently manufacture for OEM and ODM clients:
| Product Category | What We Can Make | Typical Carbon Process |
|---|---|---|
| Carbon fiber frame sections | Frame shells, repair sections, selected custom frame projects after engineering review | Prepreg / bladder molding |
| Carbon fiber bicycle fork components | Fork covers, selected full carbon fork projects after engineering review | Prepreg molding |
| Carbon fiber handlebar components | Custom handlebar projects, bar/stem concepts, selected safety-critical parts after testing review | Bladder molding |
| Carbon fiber wheel / rim-related parts | Wheel covers, aero covers, fairing-style parts, selected rim-related parts after engineering review | Prepreg / compression molding |
| Carbon fiber bicycle fender | MTB fender, road fender, e-bike fender, custom profile | Wet carbon / prepreg |
| Carbon fiber seatpost / tube | Round, aero profile, custom cross-section | Roll-wrapped / bladder molding |
| Carbon fiber e-bike parts | Battery cover, motor cover, frame guard, rack, chain guard | Compression / prepreg |
| Custom bicycle accessories | Bottle cage, saddle shell, protective cover, mounting bracket | Depends on design |
We do not supply standard open-mold frames under shared tooling. Every product we manufacture is custom-produced for each client’s specific project.
For safety-critical parts such as forks, handlebars, rims and load-bearing frame structures, final production is based on confirmed drawings, structural requirements and third-party testing where required by the target market.
In addition to custom carbon fiber bicycle parts, we also use complete lightweight bicycle reference models to help OEM and ODM clients evaluate frame structure, component matching, surface finish, packaging and market positioning.
These reference models are not fixed retail products. They are used to support technical discussion for clients who want to develop carbon fiber bicycles, lightweight cycling products or custom carbon bike components. For a broader overview of how carbon fiber is used across different bicycle types and components, see our Carbon Fiber Bicycle Guide.
| Reference Model | Approx. Complete Bike Weight | Development Focus | OEM Discussion Value |
|---|---|---|---|
| QS71 Reference Model | About 7.4 kg | Lightweight carbon fiber bicycle configuration | Frame structure, component matching, packaging reference |
| QS81 Reference Model | About 7.0 kg | Ultra-lightweight city / leisure bicycle concept | Weight target, visual design, private label development |
| QS91 Reference Model | About 7.5 kg | Compact lightweight bicycle platform | Portability, frame layout, component integration |
(Reference model images available on request. Contact us for product photos, weight records and configuration details.)
Final specifications can be adjusted according to the client’s target market, budget, riding scenario, certification requirement and brand positioning.
We support a range of B2B project types, from individual custom parts to complete bicycle concept development:
| Project Type | What We Can Support | Best For |
|---|---|---|
| Carbon fiber bicycle parts | Fenders, guards, covers, brackets, seatposts, handlebars, frame sections | Brands needing custom components |
| Lightweight complete bike reference | Frame + fork + handlebar + component matching reference | Clients evaluating full bicycle concepts |
| E-bike carbon parts | Battery covers, motor covers, frame panels, guards | E-bike manufacturers and integrators |
| Replacement / reverse engineering | Plastic or aluminum part converted to carbon fiber | Aftermarket and repair companies |
| Private label finishing | Color, logo, matte/gloss surface, custom packaging | Brands and distributors |
Our carbon fiber bicycle parts are manufactured for:
A complete lightweight carbon fiber bicycle project is not only about the frame. The final riding experience depends on the integration of frame geometry, fork stiffness, handlebar position, wheel selection, drivetrain compatibility, brake system, surface finishing and packaging.
Based on our reference bicycle projects, a typical lightweight carbon fiber bicycle development may include:
| System | Development Focus | Carbon Fiber Manufacturing Consideration |
|---|---|---|
| Frame | Weight, stiffness, geometry, mounting points | Layup direction, wall thickness, insert reinforcement |
| Fork | Steering stiffness and safety | Fatigue testing, crown reinforcement, dropout accuracy |
| Handlebar | Rider position and control | Bladder molding, internal routing, clamp reinforcement |
| Seatpost / tube | Weight and comfort | Tube wall consistency, anti-crush area |
| Fender / guard | Protection and appearance | Impact resistance, mounting hole reinforcement |
| E-bike cover | Battery or motor protection | Shell geometry, heat/electrical clearance, mounting accuracy |
| Packaging | Export protection | Scratch protection, foam support, carton strength |
This system-level view helps clients understand how each component decision affects the overall project, and where carbon fiber manufacturing choices matter most.
For OEM and ODM bicycle projects, specifications can be adjusted according to the client’s brand positioning and target market:
| Item | Custom Options |
|---|---|
| Frame / component geometry | Based on STEP files, sample scan or client design brief |
| Material | T700, T800, UD, 3K twill, carbon/Kevlar hybrid |
| Surface finish | Matte, gloss, raw carbon, painted, Pantone/RAL color, logo |
| Component matching | Fork, handlebar, seatpost, fender, guard, e-bike cover |
| Packaging | Plain export carton, private label packaging, retail box |
| Testing support | ISO 4210 / EN 15194 coordination where required |
We work with the following carbon fiber materials, selected based on the structural requirement, surface appearance, weight target and budget of each project:
| Material | Typical Use | Key Characteristic |
|---|---|---|
| T700 carbon fiber | Frame sections, forks, structural tubes | High tensile strength, reliable balance of cost and performance |
| T800 carbon fiber | High-performance frames, competition parts | Higher modulus than T700, better stiffness-to-weight ratio |
| T800 / high-modulus grades | Ultra-light racing components — available upon project requirement and MOQ review | Specified per project based on structural analysis |
| UD (unidirectional) carbon | Structural layers in frames and forks | Maximum stiffness along fiber direction |
| 3K twill weave | Surface layers for visual carbon appearance | Classic carbon look, balanced multi-directional strength |
| Forged carbon | Short-fiber compression molded parts | Complex 3D shapes, consistent batch production |
| Carbon / Kevlar hybrid | Impact-sensitive areas, protection guards | Improved impact resistance versus pure carbon |
| Carbon / fiberglass hybrid | Low-cost outer layers or structural hybrid parts | Cost reduction without full performance sacrifice |
Material grade, lot reference and cure date are documented per project. We can use Toray-origin prepreg when required and available, or Japan / Taiwan / China-origin equivalent prepreg based on the project budget and certification requirement.
The same material selection process we use for bicycle parts applies across our other product sectors. Clients with cross-industry projects can also explore our work in carbon fiber car parts and carbon fiber motorcycle parts, where similar material grades and processes are used in demanding structural and aesthetic applications.
Different bicycle components require different manufacturing processes. We select the process based on geometry, wall thickness, structural load, batch size and surface finish requirement.
Prepreg (pre-impregnated carbon fiber sheets) is our primary process for bicycle forks, handlebars and frame sections. Carbon fiber is pre-impregnated with epoxy resin under controlled factory conditions, then laid into precision tooling and cured under controlled temperature and pressure.
Best for: carbon fiber bicycle forks, frame sections, high-load structural components Advantage: Best fiber-to-resin ratio, highest strength-to-weight, consistent surface quality Limitation: Higher tooling cost, requires controlled material storage and temperature management
An inflatable bladder is placed inside the carbon fiber layup. During curing, internal pressure consolidates the carbon against the mold wall, creating a hollow structure with consistent wall thickness.
Best for: carbon fiber handlebars, seatposts, hollow frame tubes Advantage: Clean hollow internal surface, good pressure consolidation, compatible with complex tube profiles Limitation: Bladder removal path must be designed into the part geometry from the start
Carbon fiber mat or short-fiber prepreg is placed in matched metal tooling and pressed under heat and pressure.
Best for: carbon fiber bicycle fenders, guards, covers, small brackets, chain guards Advantage: Stable batch production, good repeatability, lower per-part cost at volume Limitation: Less suitable for large hollow frames or complex 3D structural tube sections
Dry carbon fiber fabric is placed in a mold and resin is applied under vacuum or by hand.
Best for: Large e-bike body covers, fairings, protective housings where weight is secondary to cost Advantage: Lower mold investment, suitable for prototyping large or single-curvature parts Limitation: Higher part weight versus prepreg, less consistent fiber ratio across batch
Flat carbon fiber sheets are CNC-machined to the required shape. No mold required.
Best for: Flat mounting brackets, stiffening plates, frame reinforcement inserts, custom flat components Advantage: Fast development, no mold cost, tight dimensional tolerances Limitation: Not suitable for complex 3D frame geometry or hollow tube sections
| Option | Best For | Tooling Cost | Design Ownership | Main Limitation |
|---|---|---|---|---|
| Open mold (existing tooling) | Standard frame shapes, quick private label launch | Low | Shared — not unique to your brand | Same geometry as other brands using the same mold |
| Custom mold (new tooling from your design) | Unique frame geometry, proprietary component design | High | Client-specific — your IP | Longer development cycle, higher upfront investment |
| Reverse engineering from sample | Replacement covers, discontinued parts, upgrade from plastic to carbon | Medium | Project-specific | Accuracy depends on sample condition and scan quality |
When open mold makes sense: You are launching a new bike brand with limited budget and need a functional product quickly. You can differentiate through components, finish and branding rather than frame geometry.
When custom mold makes sense: You have a unique geometry, a proprietary design, or a component that does not exist in any current catalog. You want full design ownership and exclusive tooling.
When reverse engineering makes sense: You have an existing plastic or aluminum part and want to replace it with a carbon fiber version — or you need to reproduce a part where no digital files exist. We work from the physical sample to create mold geometry.
Many carbon fiber bicycle projects begin with a target weight. However, weight alone is not enough to define a good carbon fiber bicycle part.
For B2B manufacturing, we review each part based on its real function: whether it is cosmetic, protective, semi-structural or safety-critical. A lightweight carbon frame section, fork, handlebar or seatpost must still meet the required stiffness, fatigue resistance, insert strength and long-term durability for its intended use.
Before reducing weight in any structural bicycle component, we check:
Our goal is not simply to make a carbon fiber part lighter. Our goal is to make it lighter, manufacturable and suitable for its intended use.
This checklist reflects real engineering questions we go through before committing to a development timeline and tooling cost.
Structural classification:
Manufacturing feasibility:
Testing and compliance:
Surface and finish:
The e-bike sector creates specific demand for carbon fiber parts that go beyond traditional bicycle components. We manufacture the following for e-bike brands and integrators:
For e-bike components connected to electrical systems, we manufacture the carbon fiber structural and cosmetic shell only. Electrical integration, waterproofing and EMI compliance are outside our manufacturing scope and remain the client’s responsibility.
We support both OEM and ODM manufacturing relationships:
OEM (Original Equipment Manufacturing): You provide STEP/STP files, 2D drawings or physical samples. We manufacture to your specification. You own the design. Mold tooling belongs to your project.
ODM (Original Design Manufacturing): You provide a brief, performance targets and visual direction. Our engineering team reviews geometry, suggests process and layup, designs tooling and manages production. Suitable for clients who do not have in-house carbon fiber engineering resources.
Private Label / Custom Branding: We support OEM logo application, Pantone or RAL color matching, matte / gloss / raw carbon surface options, custom packaging with client branding and confidential project handling. NDA agreements available on request.
If your project extends beyond bicycle parts into other carbon fiber product categories, our custom carbon fiber manufacturing service covers a broader range of industries and component types. We do not publish client project details without permission.
For serious OEM and ODM bicycle projects, we can provide visual references and project evidence before production starts, including:
This level of pre-production evidence helps clients make informed decisions before committing to tooling investment.
Our quality process covers the full production cycle:
On testing standards: For bicycle frames, forks and handlebars targeting regulated markets, we can coordinate third-party testing to ISO 4210 (cycles — safety requirements for bicycles) or EN 15194 (e-bikes) based on the client’s target market and compliance requirements. We do not claim parts are pre-certified to ISO 4210 unless that specific project has completed the required testing process.
We do not publish fixed price lists because every custom carbon fiber bicycle part project is different. The following factors determine both tooling cost and production lead time:
Factors that affect tooling cost:
Factors that affect lead time:
As a general guide: simple parts using existing tooling can be produced in 2–3 weeks. New custom mold projects typically run 8–16 weeks from design freeze to first production sample, depending on complexity. We provide a project-specific schedule with every quotation.
The following are representative project types we can support based on our carbon fiber manufacturing experience. Client names and commercial details are kept confidential.
Requirement: Lightweight MTB rear fender in matte 3K twill finish, client OEM logo, consistent production batch Challenge: Mounting points required local reinforcement to survive trail vibration and stone impact Process: Prepreg molding with additional carbon reinforcement around insert areas Suitable for: Aftermarket brands that need a lightweight carbon fiber replacement part with private label finishing
Requirement: Carbon fiber cover matching OEM plastic geometry, gloss black finish Challenge: No 3D file available; original plastic part used as reference Process: 3D scan of original part → mold design → prepreg layup → CNC trim → gloss clear coat Suitable for: E-bike brands needing to replace plastic OEM covers with lightweight carbon alternatives where no digital design files exist
Requirement: Custom geometry integrated bar and stem, UD raw carbon finish, specific drop and reach dimensions Challenge: Hollow structure required consistent wall thickness with smooth internal surface and clean bladder removal Process: Bladder molding with prepreg; two-part mold with bonded joint Suitable for: Racing teams or performance brands developing proprietary handlebar geometry with exclusive tooling
To provide an accurate quotation for custom carbon fiber bicycle parts, please share:
We will review files and respond with a preliminary assessment usually within 2–3 business days of receiving complete project information.
Yes. We can review STEP/STP or IGES files and assess geometry for carbon fiber manufacturing feasibility. This includes checking wall thickness, mold split lines, undercut areas, insert positions and suitable process selection. For load-bearing bicycle frames and forks targeting consumer markets, we recommend the client also arrange ISO 4210 third-party structural testing, which we can coordinate through partner testing laboratories.
We focus primarily on custom-mold projects where clients have their own design or need engineering development. We do not maintain a catalog of open-mold frames for resale. If you are starting a bike brand with limited budget, we recommend beginning with custom components — fork, handlebar, fender, cover — where tooling cost is lower, before committing to a full custom frame mold.
We work with T700 and T800 carbon fiber in unidirectional (UD) and woven (3K twill) formats as standard. Higher modulus grades are available on a project basis. We can use Toray-origin prepreg when required and available, or Japan / Taiwan / China-origin equivalent based on the project budget and certification requirement. Material grade, lot number and cure date are documented per project.
MOQ depends on whether tooling already exists. For second runs using existing molds, MOQ can be as low as 20–50 pieces depending on part complexity. For new custom mold projects, we recommend a pilot batch of 30–100 pieces after first-sample approval before committing to full production volume. We discuss MOQ based on each specific project.
We can coordinate third-party testing through accredited laboratories for clients who need ISO 4210 (bicycle safety) or EN 15194 (e-bike) compliance for their target market. This is arranged as a separate service alongside manufacturing. Test scope, cost and timeline depend on the product type and target market requirements.
Yes. We manufacture carbon fiber battery covers, motor covers, frame guards, body panels, racks and custom lightweight housings for e-bike brands and integrators. We manufacture the carbon fiber structure only. Electrical integration, waterproofing and EMI compliance remain the client’s responsibility.
Available finishes include: raw UD carbon, 3K twill carbon weave, matte clear coat, gloss clear coat, matte painted, gloss painted, custom Pantone or RAL color, two-tone finish, logo application by printed decal or painted mask, and textured finishes on request.
A typical project runs: file review and quotation (3–5 days) → mold design and fabrication (3–6 weeks) → first sample production (1–2 weeks) → client review and approval → pilot batch (2–4 weeks) → mass production. Simple parts with existing molds can be produced in 2–3 weeks. Full custom projects with new tooling typically take 3–5 months from design freeze to first production batch.
Yes. If no 3D file is available, we can work from a physical sample or an OEM plastic reference part. We use 3D scanning or manual measurement to create mold geometry. This adds approximately 1–2 weeks to the project timeline and is reflected in the tooling cost estimate.
Yes. We can provide parts in plain packaging, client-branded boxes, polybags with client labels or custom retail packaging. All project details are treated as confidential. NDA agreements are available at the client’s request.
Most carbon bicycle suppliers in China offer a catalog of existing frame designs available under your brand name. This is a fast, low-cost route to a branded bike — but it comes with limitations: identical geometry to competitors, no structural IP, limited finish options and no engineering support for unique requirements.
We are not a catalog supplier. Our value is in manufacturing custom carbon fiber bicycle components that do not exist yet — parts that require geometry development, layup engineering, tooling design and quality-controlled production. You can see the full range of what we manufacture across industries on our homepage.
This makes us the right manufacturing partner when:
If you need an existing frame design with your logo applied, there are faster and cheaper options. If you need something engineered and manufactured to your specific requirement, contact us.
Send us your STEP files, drawings, sample photos or project brief. We will review your requirement and respond usually within 2–3 business days.
Email: [[email protected]] WhatsApp: +86 136 2619 1009 Business hours: Monday to Sunday, 09:00–21:00 CST
We work with clients across Europe, North America, Australia, Southeast Asia and the Middle East. All project inquiries are handled confidentially.

Our factory employs an advanced carbon fiber hot press process with a P20 steel mold, ensuring high efficiency, precision, durability, and cost-effectiveness for quality production.
Our factory runs 100+ hot pressure autoclaves, using aluminum molds and vacuum induction to shape carbon fiber with precision. High heat and pressure enhance strength, stability, and flawless quality.


Our Carbon Fiber Research Center drives innovation in new energy, intelligence, and lightweight design, using advanced composites and Krauss Maffei FiberForm to create cutting-edge, customer-focused solutions.
Here are the answers to the frequently asked questions from the experienced carbon fiber products factory
We produce a wide range of carbon fiber components, including automotive parts, motorcycle parts, aerospace components, marine accessories, sports equipment, and industrial applications.
We primarily use high-quality prepreg carbon fiber and large-tow carbon fiber reinforced high-performance composites to ensure strength, durability, and lightweight characteristics.
Yes, our products are coated with UV-protective finishes to ensure long-lasting durability and maintain their polished appearance.
Yes, our facilities and equipment are capable of producing large-size carbon fiber components while maintaining precision and quality.
What are the benefits of using carbon fiber products?
Carbon fiber offers exceptional strength-to-weight ratio, corrosion resistance, stiffness, thermal stability, and a sleek, modern appearance.
We cater to automotive, motorcycle, aerospace, marine, medical, sports, and industrial sectors with a focus on lightweight and high-performance carbon fiber components.
Yes, we provide custom carbon fiber solutions tailored to your specifications, including unique designs, sizes, and patterns.
We utilize advanced technologies such as autoclave molding, hot pressing, and vacuum bagging, ensuring precision, stability, and quality in every product. wonders with the Hello Elementor Theme, we’re trying to make sure that it works great with all the major themes as well.
We use aluminum and P20 steel molds, designed for durability and high accuracy, to create complex and precise carbon fiber components.
Our products undergo rigorous quality control checks, including dimensional accuracy, material integrity, and performance testing, to meet industry standards.