iCOMAT develops patented Rapid Tow Shearing (RTS) technology for the production of lightweight carbon fiber composite parts, enabling faster manufacturing with reduced defects. This process significantly lowers costs and enhances sustainability in aerospace, automotive, and space industries by producing stronger components that outperform traditional materials.
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Top 50 Carbon Fiber Composite
Discover the top 50 Carbon Fiber Composite startups. Browse funding data, key metrics, and company insights. Average funding: $18.9M.
This company provides rapid manufacturing of high-quality composite parts, supporting needs from prototyping through production. They utilize the FiberPortal platform for instant quoting, configuration, and ordering of custom components using stocked carbon fiber, fiberglass, and core materials. Their automated process significantly reduces lead times for advanced composite fabrication, including out-of-autoclave and in-autoclave curing.
Blackwave specializes in lightweight carbon fiber reinforced plastics, utilizing advanced composite manufacturing techniques to enhance material strength and reduce weight. This technology addresses the need for durable yet lightweight materials in industries such as automotive and aerospace, improving performance and fuel efficiency.
The startup manufactures composite 3D printers that utilize continuous fiber reinforcement to produce customized parts for the composites fabrication sector. Their technology reduces lead times and costs by enabling efficient, end-to-end manufacturing with various material combinations.
Fairmat recycles carbon fiber composites into FairPly, a versatile and sustainable material designed for high-performance applications across various industries. This technology mitigates the environmental impact of carbon fiber waste, which is projected to reach 138 million tons in landfills over the next 50 years.
Lineat utilizes reclaimed carbon fiber to create uni-directional, fiber-aligned tapes that facilitate the manufacturing of new composite components. This technology enables the recycling of carbon fiber, reducing waste and lowering the carbon footprint in industries such as aerospace and automotive.
Boston Materials manufactures thermal interface materials and composite materials using patented Z-axis Fiber™ technology, which employs vertically aligned carbon fibers for efficient energy transfer. The company addresses performance and reliability issues in semiconductors, durability challenges in lightweight vehicles, and cost concerns in hydrogen fuel cells for heavy-duty applications.
Vartega manufactures low-cost recycled carbon fiber (rCF) from post-industrial dry fiber and prepreg scraps, providing a sustainable alternative to virgin carbon fiber for thermoplastic compounding and thermoset applications. By utilizing 96-99% less energy in production, Vartega's rCF maintains comparable mechanical properties while offering custom sizing solutions for enhanced compatibility with various polymers.
Onnes Cryogenics designs and manufactures carbon fiber reinforced plastic (CFRP) vessels for cryogenic applications in space, military, defense, and commercial sectors. These vessels are engineered to withstand extreme environmental conditions, providing reliable storage and transport solutions for cryogenic fluids.
Composite Recycling provides thermolysis-based recycling services for glass andcarbon fiber reinforced plastics, converting waste into reclaimed oil and fibers suitable for high-performance composites. The company offers mobile recycling units, recyclability testing, and advisory services to help manufacturers integrate recycled content and reduce emissions. Their reclaimed materials enable circularity in the composite sector, supporting decarbonized supply chains.
Carbonova produces carbon nanofibers through a proprietary synthesis process that enhances material strength and electrical conductivity. This technology provides lightweight, high-performance materials essential for applications in aerospace, automotive, and energy storage sectors.
Nova Carbon develops high-performance semi-finished products from carbon fiber waste using a patented Long Fiber Realignment technology that preserves fiber length and integrity. This process addresses the significant issue of carbon fiber waste, which is largely landfilled or incinerated, by recycling valuable materials for various industries, including automotive and construction.
AEHRA designs and manufactures ultra-premium, all-electric vehicles blending supercar aesthetics with SUV comfort. The company utilizes advanced materials like carbon fiber monocoques for enhanced aerodynamics and sustainability. AEHRA vehicles feature high-range battery technology and distinctive design elements such as dihedral doors.
Markforged offers an industrial 3D printing platform that produces metal and continuous‑fiber reinforced composite parts directly on the factory floor, eliminating the need for separate machining and reducing lead times. Its cloud‑connected Digital Forge suite automates design upload, slicing, print management, and provides secure, traceable workflows for scalable, on‑demand production in defense, aerospace, automotive and other high‑performance manufacturing sectors.
Continuous Composites manufactures parts using its proprietary Continuous Fiber 3D Printing (CF3D®) technology, which combines high-performance composite materials with rapid curing thermoset resins for on-demand production. This approach reduces manufacturing costs and lead times while enabling complex geometries and limitless material combinations tailored to specific applications across various industries.
ALUULA Composites develops high-performance fabrics that utilize advanced composite technology to create lightweight and durable materials suitable for various applications, including outdoor gear and aerospace. These materials address the limitations of traditional textiles by offering enhanced strength and recyclability, contributing to a more sustainable future.
ARRIS develops additive molding technology for the large-scale production of 3D-aligned continuous fiber thermoplastic composite parts, enhancing the strength and durability of products across various industries. This technology addresses the need for lightweight, high-performance materials in sectors such as aerospace, automotive, and consumer electronics, reducing lifecycle costs and improving sustainability.
Boston Materials provides a drop‑in thermal interface material, Liquid Metal ZRT®, that combines a carbon‑fiber scaffold with a liquid‑metal filler to deliver anisotropic heat conduction for high‑power GPUs and ASICs. The TIM reduces device junction temperatures by 5–8 °C on 1 kW+ workloads, enabling higher power limits and lower cooling energy, and is compatible with existing server and liquid‑cooling designs.
SCALE develops bio-based composite materials that enhance performance while significantly reducing production costs and greenhouse gas emissions compared to traditional carbon fiber. By utilizing renewable resources and low-impact processes, SCALE addresses the environmental impact of advanced composites used in various industries, including automotive and sporting goods.
Orbital Composites utilizes proprietary continuous-fiber 3D printing and hybrid manufacturing techniques to produce high-performance composite parts for aerospace, defense, and energy applications at automotive costs and rapid cycle times. The company addresses the need for efficient, scalable manufacturing solutions in a $163 billion composites market, enabling the production of advanced components for drones, hypersonics, and space exploration.
Nandina supplies precision‑engineered carbon‑fibre composites designed for extreme environments ranging from subsurface operations to space missions.
The startup manufactures a fiber-strengthened carbon composite material that combines carbon composites with specially developed steel fibers to enhance impact resistance while maintaining low weight and high stiffness. This technology enables the production of durable and lightweight bicycle frames, providing cyclists with improved safety and longevity.
Arceon engineers and manufactures proprietary carbon-ceramic composite materials designed for high-performance applications in extreme environments exceeding 1500 °C. These materials offer superior thermal resistance, damage tolerance, and lower density compared to traditional superalloys and carbon-carbon. The company provides near-net-shape components like propulsion nozzles and heat shields for the aerospace, defense, and industrial sectors.
Carbon Mobile develops HyRECM technology, which combines carbon fibers with a composite material to create ultra-thin, lightweight, and connected hardware for consumer electronics and e-mobility applications. This technology addresses the limitations of traditional materials by significantly reducing weight and e-waste while enhancing performance and sustainability in devices like smartphones and gaming consoles.
Mars Materials is developing a carbon-negative process for producing carbon fiber and acrylamide by sequestering captured carbon dioxide into these materials. This approach transforms carbon-intensive production methods into sustainable practices, reducing greenhouse gas emissions while providing affordable alternatives for various industries.
VOID Technologies specializes in developing advanced composite materials that enhance structural integrity and reduce weight in various applications. The company addresses the challenge of material inefficiency in industries such as aerospace and automotive, leading to improved performance and lower operational costs.
TechnoCarbon develops Pierre-Carbone, a patented low-carbon composite material that is five times more durable than steel and requires 50% less energy to produce than traditional materials. This technology provides a sustainable alternative for construction and infrastructure, significantly reducing greenhouse gas emissions and resource consumption.
KiwiFibre supplies a regenerative fibre composite made from fast‑growing native plants that matches carbon‑fibre tensile strength and stiffness. The material is compatible with standard epoxy resin systems and existing composite manufacturing processes, offering a biodegradable, lower‑embodied‑carbon alternative for high‑performance applications such as motorsport components, sports equipment, and precision survey hardware.
This contract manufacturer specializes in producing ultralight, load-bearing composite components using proprietary robotic Infinite Fiber Placement (IFP) technology. They offer rapid development from CAD to functional prototype and support flexible serial production volumes from 50 to over 200,000 parts annually. The company provides a 100% recyclable alternative to traditional prepreg and metal parts, achieving significant weight reduction while maintaining mechanical performance.
This startup manufactures carbon fiber automotive components and aerodynamic parts using computational fluid dynamics for aerodynamic analysis and design optimization. Their products enhance vehicle performance by improving aerodynamic efficiency, addressing the need for better performance in the automotive industry.
Ghostworks Marine manufactures lightweight carbon fiber hulls using advanced composite technology, enabling vessels to exceed traditional speed limits while maintaining stability in extreme conditions. Their customizable M-Hull platforms cater to various applications, including security, search and rescue, and logistics, significantly reducing lead times to market.
The startup designs and manufactures fully electric vertical takeoff and landing aircraft using carbon fiber composite materials and triple redundancy flight control systems. This technology enables urban commuters to significantly reduce travel time and lower flight emissions compared to traditional transportation methods.
The startup operates a golf entertainment platform that integrates advanced engineering and composite materials to create a unique superyacht golf experience. This solution provides clients with an engaging and dynamic entertainment option tailored for luxury maritime environments.
The startup produces carbon-reinforced composites using a proprietary technology that enables the continuous printing of fiber composites with various matrices. This approach enhances mechanical performance across industries, addressing the need for stronger and more durable materials in manufacturing applications.
Hycco manufactures ultra-thin, lightweight carbon fiber bipolar plates that enhance the power density of fuel cell stacks while offering a service life of over 30,000 hours. Their technology addresses the need for durable and efficient components in the hydrogen economy, particularly for heavy mobility applications like shipping and transportation.
Future Comp manufactures thermoplastic‑infused composite materials using automated robotics and a closed‑loop process that eliminates waste. Their high‑volume, rapid production delivers lightweight, impact‑resistant parts with recyclable thermoplastic matrices, helping OEMs and component makers across automotive, aerospace, outdoor recreation, industrial and medical sectors reduce lead times, costs, and carbon footprints.
Spherecube utilizes a proprietary Thermal Laser Curing technology to automate the production of high-performance composite parts without the need for molds, significantly reducing material waste and production costs. This approach addresses the challenges of traditional composite manufacturing by enabling the creation of lightweight, complex geometries with enhanced mechanical properties.
CarboMat transforms low-value industrial byproducts, such as asphaltenes, into high-value carbon fibers. These carbon fibers are engineered for advanced applications, including 3D printing of composite structures.
Rux Energy develops patented Metal-Organic Framework (MOF) technology integrated into carbon fiber composite tanks for the safe and efficient storage of hydrogen at moderate temperatures and lower pressures. This solution addresses the critical challenge of hydrogen storage density and safety, enabling cost-effective bulk hydrogen supply for heavy transport sectors such as maritime, rail, and aviation.
BlueLeaf engineers advanced composite materials that provide superior strength-to-weight ratios and enhanced durability for demanding applications. Our proprietary resin formulations and fiber architectures optimize structural integrity and extend component lifespan in aerospace, automotive, and defense sectors.
This startup manufactures pre-impregnated carbon fiber components tailored for water sports, focusing on naval architecture and hydrodynamics. By providing customized surfboards through a streamlined process from research and development to production, they enable customers to enhance performance and design precision.
WEAV3D Inc. utilizes a patented composite forming technology that integrates weaving and composite consolidation into an automated process, significantly reducing waste and cycle time. This technology enables the production of lightweight vehicle body structures and components at a cost reduction of 30 to 50% compared to traditional carbon fiber methods, addressing the need for more efficient and economical manufacturing in the automotive and construction industries.
This startup manufactures bicycles featuring a customized carbon fiber frame connection system that enhances structural integrity and personalization. By utilizing advanced carbon-fiber technology, the company provides cyclists with a tailored riding experience that improves performance and comfort.
The startup develops water-resistant biocomposite materials that can replace traditional composites like fiberglass and carbon fiber, as well as plastics and metals. These materials reduce the carbon footprint of manufacturing processes and enhance supply chain security by minimizing water absorption during production.
Pantheon Design manufactures high-speed 3D printing systems that produce up to 1 kg of production-quality parts daily using carbon and glass fiber composites, which can replace metal components. Their technology addresses the need for durable, reliable, and serviceable printing solutions that perform effectively in demanding environments.
Acus Composites develops smart composite molding technology utilizing reusable structures covered by additive manufactured surfaces. This system significantly reduces setup and machining time while lowering material costs and process waste for composite manufacturing. The technology offers manufacturers a flexible and cost-effective solution for producing adaptable composite structures.
Eve Reverse provides natural‑fiber reinforced composites with biobased polymer matrices that deliver net carbon‑negative emissions and high strength‑to‑weight performance. The company offers ready‑made Eve Tiles, full product‑development services, and carbon‑accounting tools that integrate with standard composite processing methods for manufacturers in construction, automotive and consumer‑goods sectors.
Vedasya specializes in the design and manufacturing of composite materials and storage solutions, focusing on high-performance applications in aerospace and defense. The company addresses the need for efficient and sustainable composite manufacturing technologies, including hydrogen storage tanks and advanced composite parts, to enhance operational capabilities in these sectors.
Gordon Plastics manufactures composite materials for applications in sporting equipment, building materials, and aviation, utilizing advanced layering and resin infusion techniques to enhance strength and durability. The company addresses the need for lightweight, high-performance materials that meet the rigorous demands of various industries while ensuring superior customer service throughout the product development process.