We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Carbon Fiber.
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Carbon Fiber Product List and Ranking from 44 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

Carbon Fiber Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. 東レ Tokyo//fiber
  2. 大塚化学 Tokyo//Chemical
  3. 三菱ケミカル コンポジットパーツ本部 Asia事業部 Tokyo//Resin/Plastic
  4. 4 トウチュウ 本社 Aichi//Manufacturing and processing contract
  5. 5 アミカ向日葵 Gunma//Resin/Plastic

Carbon Fiber Product ranking

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. High-performance thermoplastic composite "Pochicon" 大塚化学
  2. Seamless exterior material "Lap Siding" 東レ
  3. Ceramic matrix composite materials (CMC) 三菱ケミカル コンポジットパーツ本部 Asia事業部
  4. 4 Recycling of aluminum vapor-deposited film (pelletization) アミカ向日葵
  5. 4 Albany silica sand トウチュウ 本社

Carbon Fiber Product List

31~45 item / All 83 items

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"Snow cave" made from high-strength carbon fiber, high-rigidity carbon fiber, washi paper, and aluminum alloy.

The light of "healing" that leaks from geometric line drawings!

● Due to the freedom of shaping and the inherent mechanical properties of composite materials, their application in interiors and lifestyle products has begun to gain popularity. It seems that "snow lanterns" have a meaning beyond just providing light for living, such as creating an atmospheric effect through landscape lighting. ● Moldable shapes of CFRP We accept processing into various shapes according to customer specifications. This product is made from high-strength carbon fibers, high-rigidity carbon fibers, washi paper, and aluminum alloy. ★ For more details, please request materials or download the documents ★

  • fiber

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Carbon fiber (dry/wet nozzle)

Used as an acrylic precursor for the production of high-strength, high-modulus carbon fibers.

Carbon fibers (dry and wet nozzle) have superior strength and elasticity compared to carbon fibers produced by the wet spinning method, making them widely used as acrylic precursors for the manufacture of high-strength and high-elasticity carbon fibers. They are utilized in a wide range of applications, including structural materials for aerospace and industrial fields, as well as in sports and leisure sectors. The dry and wet spinning method involves directing the polymer ejected from the nozzle into a gas stream and then immediately guiding it into a coagulation bath to solidify. The nozzle size tends to increase depending on the spinning conditions, and using precious metals for the material can lead to increased costs, so relatively inexpensive stainless steel is commonly used. For more details, please download the catalog.

  • nozzle

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PAN-based carbon fiber "SIGRAFIL C"

High-strength, high-elasticity large toe 50K fibers are used in automotive, aerospace, and wind power applications.

Introducing SIGRAFIL C (carbon fiber) products. SIGRAFIL C, made from PAN (polyacrylonitrile), is a high-strength, high-elasticity carbon fiber. 【Products Available】 ◎ Long fiber 50K *For more details, please request a document or view the PDF data available for download.

  • fiber
  • Other polymer materials

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Numerous application development achievements in various industries! Lightweight and strong [carbon fiber].

Our range of carbon fiber-related products is expected to be applied in various fields!

Sakai Ovex is promoting the development of carbon fibers as a new business in the non-apparel sector. Carbon fibers not only have the characteristics of being lightweight, strong, and corrosion-resistant, but they also excel in conductivity, heat resistance, dimensional stability, and chemical stability. Due to these excellent properties, they are used as advanced materials in various fields such as aerospace, construction, civil engineering, vehicles, and ships, and their applications are continuing to expand. [About Open Fiber] - The process of spreading carbon fiber bundles, which are used as reinforcement materials for carbon fiber composite materials, into a wide and thin state is called open fiber. - Based on patented technology from Fukui Prefecture, a manufacturing method for open fiber yarns that spreads carbon fiber bundles into tape form has been established. - Thousands to tens of thousands of carbon fibers are spread out in the width direction, and the cross-section is flat. *For more details, please refer to the PDF document or feel free to contact us.

  • fiber

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Three benefits of solving common issues and challenges encountered during lightweight design considerations.

A technical document explaining common concerns about weight reduction during design and development, and the additional benefits that arise from the use of CFRP. Samples are also available.

"The 'Common Issues and Three Benefits of Solving Challenges During Weight Reduction Consideration' is a technical document that explains the common concerns and problems related to weight reduction during design and development, as well as the additional benefits that arise from the use of CFRP." "Do you have any of these concerns?" ■ I want to achieve weight reduction while maintaining strength... ■ I want to use resin for weight reduction, but it's impossible due to high vibration areas... ■ I want to block electromagnetic waves with a lightweight material... * Please view the PDF of the technical document available for download. * If you would like a sample of CFRP, please specify "Sample Request" and provide details about your application and concerns when contacting us. (Samples are limited in quantity and may be declined. Thank you for your understanding.)

  • Prototype Services
  • Processing Contract
  • Composite Materials

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Rice husk ash, shell and resin composite plastic MGC pellets

We will significantly reduce the use of fossil materials and contribute to the preservation of the Earth's environment!

Rice husks, which are a staple food for Japanese people, are produced annually in Japan (2.3 million tons) and around the world (120 million tons), primarily in Asian countries. During the process of milling the harvested rice, rice husks are generated, and a large portion of them is utilized as a thermal resource for thermal power generation. Some of the incinerated rice husk ash is used as a soil amendment or as insulation material in steelmaking, but the majority becomes industrial waste. The main component of rice husk ash is silica (SiO2), which consistently contains over 90%, and due to its porous nature, it is a functional resource that is being utilized and researched in various industrial fields, although significant effective utilization has not been achieved. Additionally, most of the shells are treated as industrial waste and discarded. Since these shells are attached to internal organs, they cause foul odors and lead to soil and groundwater contamination due to the leaching of heavy metals (especially cadmium) contained in the organs, posing environmental conservation issues. The MCG pellets, which effectively utilize these materials, are environmentally friendly materials that can significantly contribute to the preservation of the global environment by leveraging the characteristics of natural materials compared to conventional resin materials. For more details, please contact us or refer to the catalog.

  • Composite Materials
  • plastic

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Phenolic resin-coated carbon fiber "CFPS series"

It is a material in which carbon fibers are coated and granulated with phenolic resin using a special method.

The "CFPS series" is made by processing high-performance carbon fiber powder and phenolic resin in a special way to create a powdered form. By performing hot press molding, it can be shaped into any desired form, allowing for the easy production of products with excellent heat resistance and durability. Additionally, being granular, it has good flowability and dispersibility, making it easy to mix with various materials. 【Features】 ○ Easily insoluble and non-fusible through hot press molding ○ Capable of molding into any shape For more details, please contact us or download the catalog.

  • fiber
  • Composite Materials
  • Other polymer materials

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Fujii Chemical Industry Co., Ltd. Business Introduction

We are engaged in the manufacturing and sales of ECO and plastic recycling.

Plastic is lightweight, durable, easy to process, and has excellent weather resistance, making it an indispensable material in modern society due to its low cost and ability for mass production. In recent years, the increase in usage has significantly raised consumption levels. However, on the flip side, the convenience of plastic has led to a continuous rise in emissions, making waste disposal a social issue. From the perspectives of reducing waste and preserving living environments, there is a strong demand for promoting recycling. Fujii Chemical Industry Co., Ltd. has proactively engaged in material recycling, focusing on plastic recycling as much as possible. Recently, with the establishment of a circular society, it is considered essential to fundamentally promote reduce, reuse, and recycle. Through our main business of plastic regeneration processing, we strive to contribute to society by minimizing environmental impact in a responsible manner that complies with ISO 14001 standards, while being closely connected to the local community. 【Business Activities】 - Plastic regeneration processing and coloring - Sales of recycled raw materials For more details, please contact us or download the catalog.

  • plastic
  • Processing Contract

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Max Sorb Technical Document "Introduction to Activated Carbon Fiber Products"

Introduction of activated carbon fiber products made from high-performance porous carbon "Maxorb".

The technical document "Introduction to Activated Carbon Fiber Products" by Max Sorb provides an explanation of the alkali-activated activated carbon "Max Sorb," which successfully entered mass production in 1992. This product can achieve a specific surface area exceeding 3000 m², which is three times that of conventional activated carbon, allowing it to exhibit various high adsorption performances that cannot be realized with regular activated carbon. [Contents] ■ Adsorption performance of alkali-activated activated carbon fiber ■ Active surface area of alkali-activated activated carbon fiber For more details, please refer to the catalog or feel free to contact us.

  • Other polymer materials

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Recycled Carbon: Recovering Carbon Fibers from CFRP Waste in Fiber Form!

Recycling carbon technology that extracts carbon fibers from CFRP using electrolysis!

The "Electrolytic Oxidation Method" is a technology for recovering carbon fibers in fibrous form from carbon fiber reinforced plastic (CFRP) waste using electrolysis. Since it is a manufacturing method conducted in water, a slurry containing well-dispersed carbon fibers of several centimeters in length is obtained, from which a thin non-woven fabric with well-dispersed fibers can be produced using the papermaking method. The process is simple, does not require large-scale capital investment, has high productivity, and allows for the recovery of the matrix resin. 【Features】 ■ Technology for extracting carbon fibers from CFRP through electrolysis ■ The lowest manufacturing cost ■ Simple process ■ No need for large-scale capital investment ■ Recovery of matrix resin is also possible *For more details, please request materials or view the PDF data available for download.

  • fiber

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<Examples of Processing by Extrusion> *Processing example materials available

Introducing examples of processing using extrusion molding for air conditioner filters, shutter rails, water leak prevention materials, cable protection, and more!

Oyodo Kasei Kogyo is an extrusion molding manufacturer that produces components for various fields, from window frames to solar panels. This document introduces numerous processing examples using materials such as "TPO," which has excellent electrical insulation and rubber elasticity, and "SPVC," which offers chemical resistance, oil resistance, weather resistance, ozone resistance, and can be adjusted for hardness, providing high cost performance. [Featured Examples (Excerpt)] ■ Desk Material: TPO ■ Air Conditioner Filter Material: RPVC + SPVC ■ Shutter Rail Material: LDPE ■ Unit Bath Joint Material: SPVC + RPVC ■ Glass Protection Material: SPVC *For more details, please download the PDF or feel free to contact us.

  • Other machine elements
  • Contract manufacturing
  • Processing Contract

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Nakayashiki Giken Co., Ltd. Technical Introduction

Developed with unique technology! Also compatible with the environment!

This technology is a method for mass-producing pellets that combine modified thermoplastic resin and carbon fibers while achieving high speed and uniform high molecular weight. Carbon fibers can be made from new or recycled materials, and these pellets can be used not only for injection molding but also for extrusion molding. The increase in melt viscosity allows for horizontal non-standard extrusion technology. The molded products feature high strength, lightweight, high heat resistance, and high durability. 【Features】 ■ Injection molding is possible ■ Extrusion molding is possible ■ Non-standard molding is possible *For more details, please refer to the catalog or feel free to contact us.

  • Composite Materials

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Nanide Corporation's Efforts in Waste Recycling

Transforming ocean debris and old poly pots into decorative boards! Introducing initiatives for reusing old wood.

We would like to introduce our company's efforts in recycling waste. We are implementing initiatives such as the recycling of recycled plastics, addressing marine debris, and converting old plastic pots into decorative boards. In the reuse of old wood, we use all Repla as aggregate to adhere to the old wood. 【Flow of Recycled Plastic Recycling】 ■ Crush Repla scraps ■ Pelletize the crushed Repla ■ Feed the pellets as raw material ■ Melt the pellets and pour them into molds ■ Cool the finished Repla beams *For more details, please refer to the PDF document or feel free to contact us.

  • others

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Recycled Carbon Fiber <From Recycled Scheme Development to Processed Product Development>

Would you like to recycle the scrap and waste from the CFRP production process?

Our company provides technology for separating and recovering carbon fibers from scrap and waste generated during the manufacturing of CFRP products, and for recycling them into carbon fiber composites. The recycled carbon fiber composites can be utilized as filling materials for CFRP, reinforcing fillers, as well as insulation materials for construction, and functional materials that leverage X-ray permeability and electromagnetic wave shielding properties. We contribute to reducing the amount of CFRP industrial waste and developing products that utilize recycled carbon fibers, thereby strengthening your brand power. 【Features】 ■ Possession of carbon fiber recovery technology using solvent methods (chemical recycling) ■ Capable of separation and recovery while maintaining long fiber state ■ Can provide molded products such as non-woven fabrics, CFRTP boards, and pipes, allowing for designs tailored to applications in industrial materials, construction materials, sports goods, etc. ■ Support from product commercialization to marketing and channel development *For more details, please refer to the PDF materials or feel free to contact us.

  • fiber

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