Professional Custom Carbon Fiber Parts Manufacturer
Dongguan One Victor Composite Technology Co., Ltd.
We are a professional manufacturer of custom carbon fiber components. The company has over 16 years of OEM and ODM experience, and our factory covers an area of over 5,000 square meters.
1000
Project
16
5000m²
8
Factory Scale
Production line
Years
Who Are We?
One Victor Carbon Fiber are good at providing one-stop solution for carbon fiber project.
Customers only need to provide drawings or product specifications, our experts will partner with you every step of the way to ensure your project is on time, on budget, and on spec.
The company boasts over 16 years of OEM and ODM experience, with a factory exceeding 5000m².
We can control the entire production process. The company possesses a complete production workflow, including molding, autoclaving, forming, vacuum forming, blow molding, core forming, and manual lay-up, among other processes. It has a comprehensive processing system encompassing mold making, production, and surface treatment (painting, screen printing, laser engraving, etc.) to meet all customer needs.
Autoclave Process
Molding Process
Carbon fiber compression molding is a high efficiency, low-cost carbon fiber composite material molding technology suitable for mass production. It achieves rapid curing and molding by applying high temperature and high pressure to the carbon fiber blank in a closed mold.
Vacuum Infusion Process
The core liquid molding technology for low-cost, large-size carbon fiber composite products uses vacuum negative pressure to drive resin impregnation of dry fiber layups, achieving product curing without the need for high-pressure equipment. It is widely used in wind turbine blades, yacht hulls, large molds, and rail transit components, and is also a key process for OneVictor's carbon fiber customization business to achieve large size, low cost, small batch production.
Carbon Fiber Tube Winding Process
Carbon fiber tube winding is a specialized and efficient molding technology for tubular components. It involves impregnating continuous carbon fiber bundles with resin, winding them onto a mandrel at a predetermined angle and pattern, and then curing and demolding to obtain a high-performance carbon fiber tube. It is a core molding solution for mass production or customized carbon fiber tubes such as high-pressure gas cylinders, drive shafts, and drone arms.
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