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Composites Product List and Ranking from 43 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Aug 20, 2025~Sep 16, 2025
This ranking is based on the number of page views on our site.

Composites Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Aug 20, 2025~Sep 16, 2025
This ranking is based on the number of page views on our site.

  1. CFCデザイン Fukui//Other manufacturing
  2. 大塚化学 Tokyo//Chemical
  3. JAPAN FINE CERAMICS CO., LTD. (JFC) Tokyo//Ceramics Tokyo Sales Office
  4. 4 アドバンスコンポジット Shizuoka//Machine elements and parts 本社 富士事業所 
  5. 5 ヘガネスジャパン Tokyo//Ferrous/Non-ferrous metals

Composites Product ranking

Last Updated: Aggregation Period:Aug 20, 2025~Sep 16, 2025
This ranking is based on the number of page views on our site.

  1. CFC Design Inc. Business Introduction CFCデザイン
  2. High-performance thermoplastic composite "Pochicon" 大塚化学
  3. Carbon fiber reinforced composite "C/C composite" CFCデザイン
  4. 4 Tisumo blended 3D printer resin composite material "Pochi Con Filament" 大塚化学
  5. 5 Soft Magnetic Composite (SMC) 'Somaloy(R)' Overview ヘガネスジャパン

Composites Product List

166~180 item / All 265 items

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[Material Presentation] Rubber × Resin Cross-linked Composite Material 'Radicalock'

Introducing the composite material 'Radicalock(R)', which firmly bonds rubber and plastic using a bridge lock without the use of adhesives!

"Radicalock(R)" is a formulated rubber made by adding auxiliary materials and additives to peroxide-crosslinked synthetic rubber such as EPDM and silicone rubber, and then mixing it with a crosslinking reaction accelerator for plastics. It utilizes the technology of direct adhesion between plastics and rubber developed by Daicel Evonik Co., Ltd. Through the chemical reactions occurring in a mold loaded with plastic components, molecular chains (crosslinking chains) are formed at the interface between the rubber and plastic, creating a strong bond. 【Features】 ■ Solves adhesive problems ■ Usable with plastics ■ Simplifies the manufacturing process *For more details, please download the PDF or feel free to contact us.

  • Composite Materials
  • roller

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Presentation of Materials: Benefits of Rubber × Resin Cross-linked Composite Material "Radicalock"

Introducing the manufacturing technology 'Radicalock(R)' that strongly bonds plastic and rubber without using adhesives!

"Rajikarokku" is a technology that firmly bonds rubber and plastic, which are difficult to adhere using adhesives or double-sided tape, through direct chemical bonding to create composite materials. It applies the rubber crosslinking reaction using peroxides for the bonding of rubber and plastic. At the interface between rubber and plastic, the molecular chains of rubber and plastic are crosslinked. This also contributes to the simplification of the manufacturing process, eliminating the need for steps required in traditional adhesive processes, such as surface roughening, degreasing, primer application, and adhesive application, leading to a reduction in manufacturing time and improvement in yield. [Features] - Capable of bonding silicone and nylon - Adhesive strength exceeding the tensile strength of rubber - No concerns about solvent odor, degradation peeling, or reduction in physical properties - No need for adhesive application or alignment *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
  • Rubber
  • Other polymer materials

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Carbon fiber reinforced carbon composite products "C/C composite products"

Achieved thermal conductivity surpassing copper through carbon structure control technology using CVI processing.

"C/C composite products" are composite materials reinforced with carbon fibers, possessing excellent properties such as lightweight, high strength, and high elasticity. Compared to metal materials, they have high strength at high temperatures and can be used at ultra-high temperatures exceeding 2000°C in inert atmospheres. They are utilized in a wide range of fields, including electronics, environmental energy, general industry, and automotive transportation equipment. 【Features】 ■ High strength, high elasticity, high toughness ■ Ultra heat-resistant material ■ Lightweight and excellent handling ■ High thermal conductivity *For more details, please download the PDF or contact us.

  • Composite Materials

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Technical documentation on the material properties of films and laminates, as well as precision press processing know-how.

High thermal conductivity materials (metal base substrates), mica sheets, engineering plastics and super engineering plastics, carbon fiber composites (CFRP, CFRTP)

Our company can handle everything from thin films to thick laminated boards. Additionally, since we manufacture our own molds, we can flexibly respond to customer requests in terms of delivery time and cost. We are committed to continuously challenging ourselves with materials we have never processed before, so if you are having difficulties with non-metallic material processing, please feel free to consult us. This document introduces examples of materials we handle. It includes high thermal conductivity materials (metal base substrates) consisting of aluminum on the surface and a resin insulation layer in the core, as well as mica sheets formed from natural minerals. We outline the characteristics, advantages, and disadvantages of each material, along with our solutions, so please use this information when considering implementation. [Contents] ■ High thermal conductivity materials (metal base substrates) ■ Mica sheets ■ Engineering plastics and super engineering plastics ■ Carbon fiber composites (CFRP, CFRTP) *For more details, please refer to the PDF document or feel free to contact us.

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  • Composite Materials

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Nanocellulose + PBAT composite polybutylene adipate terephthalate

There is also the possibility of improved biodegradability, foaming properties, and crystallinity!

By compounding PBAT with nanocellulose (cellulose nanofiber: CNF), the mechanical strength of PBAT, such as tensile strength and elasticity, is improved. There is also a possibility of enhanced biodegradability, foaming properties, and crystallinity. (Currently under verification) This product is a material that mixes nanocellulose with various biodegradable plastics. 【Features】 ■ Compounding of PBAT and nanocellulose ■ Improved mechanical strength such as tensile strength and elasticity ■ Certified material by the Japan Biomass Plastic Association for Green Plastics and Biomass Plastics * For more details, please refer to the PDF document or feel free to contact us. * If you would like a paid sample, please inquire.

  • plastic
  • Other polymer materials

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Quantum dot + UV (infrared curing type) resin composite material

Introducing a material that can be molded into various shapes and has adjustable luminescent colors! It is a composite of quantum dots and UV (ultraviolet) curing resin.

We would like to introduce the quantum dot + UV resin composite material developed by our company. This product is a material that combines quantum dots with UV (ultraviolet) curing resin. Since it is a UV curing resin, it can be shaped into various forms using molds. By changing the type of quantum dots, it is also possible to produce light emission colors of various wavelengths. We plan to improve water resistance, weather resistance, and heat resistance as well. 【Features】 ■ Since it is a UV curing resin, it can be shaped into various forms using molds. ■ By changing the type of quantum dots, it is also possible to produce light emission colors of various wavelengths. *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
  • Other polymer materials

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PLA/hydroxyapatite composite material

Creating 3D shapes! It is expected to be developed as a material for 3D printers for medical use.

"PLA/Hydroxyapatite composite materials" are materials that have the potential to be applied as artificial bones and bone fillers. Using a 3D printer, it is possible to create arbitrary three-dimensional shapes, enabling the fabrication of complex shapes of artificial bones tailored to each patient, which is expected to be developed as a material for 3D printers for custom-made medical applications. The PDF document below includes photos of the shapes of toy bones printed with a 3D printer, as well as the shapes of screws that could potentially be used for bone fixation. Please feel free to download and take a look. [Features] ■ Printable with a 3D printer ■ Applicable as scaffold materials for artificial bones and regenerative medicine *For more details, please refer to the PDF document or feel free to contact us.

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  • Composite Materials

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Rigid urethane foam composite "Dancourt 5Five"

A lightweight composite flame-retardant material that demonstrates excellent workability!

"Dancoat 5Five" is a composite flame-retardant material primarily suitable for fire protection in temperature-controlled, frozen, and refrigerated warehouses. It has obtained flame-retardant certification through a rigid polyurethane foam composite. It can also be used in interior control areas. 【Features】 ■ Flame-retardant certification obtained through rigid polyurethane foam composite ■ Usable in interior control areas ■ Composite flame-retardant certification can be obtained for polyurethane foam thickness up to 200 mm (Dancoat application thickness of 9 mm to 11 mm) ■ Lightweight with excellent workability (surface material weight of approximately 5 kg/m² at a thickness of 10 mm) ■ Formaldehyde emission grade F☆☆☆☆ *For more details, please download the PDF or feel free to contact us.

  • others

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Injection molding thermoplastic carbon fiber composite PP CF 20%

Excellent wear resistance and sliding properties! Technical support is also available, from material analysis to defect countermeasures.

"Thermoplastic Carbon Fiber Composite (PP CF 20%)" is used in the front-end module of automotive parts. In injection molding, there is flexibility in the choice of resin base, and we propose suitable grades. We conduct CAE analysis to suggest appropriate product shapes and optimal wall thicknesses. Additionally, with support from material manufacturers, we can provide technical support ranging from material analysis and crack analysis to development support and defect countermeasures. Furthermore, we customize injection molding machines to maximize the performance of carbon fiber reinforced resins. 【Features】 ■ High strength and high elasticity ■ Excellent wear resistance and sliding properties ■ Superior conductivity and electromagnetic shielding ■ Low specific gravity (compared to Al/Mg metals and glass fiber reinforced resins) ■ Design flexibility, thin-walling, and recyclability are possible *For more details, please refer to the PDF document or feel free to contact us.

  • plastic

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Injection Molding Glass Fiber Composites and Thermoplastic Carbon Long Fiber Composites

Excellent wear resistance and sliding properties! Introducing five features of carbon long fiber reinforced thermoplastic resin.

"Thermoplastic carbon fiber long fiber composite material" consists of PP CF 20% and has a proven track record in automotive front-end module components. The injection molding of "carbon long fiber reinforced resin" offers flexibility in resin base selection, allowing for the proposal of suitable grades. We conduct CAE analysis to suggest appropriate product shapes and wall thicknesses, and with support from material manufacturers, we can provide technical support ranging from material analysis and crack analysis to development support and defect countermeasures. We customize molding machines to maximize the performance of carbon long fiber resin. 【Features of carbon long fiber reinforced thermoplastic resin】 ■ High strength, high elasticity ■ Excellent wear resistance and sliding properties ■ Superior conductivity and electromagnetic shielding ■ Low specific gravity (compared to Al/Mg metals and glass fiber reinforced resins) ■ Design flexibility, thin-walling, and recyclability (characteristics of thermoplastic resins) *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing
  • Processing Contract

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Composite material "Roving (for FRP)" processed appropriately for its intended use.

A fundamental glass fiber roving with a wide range of applications as a composite material substrate. It enables the simplification of customer work setups and yarn joining tasks!

"Roving (for FRP)" is a fundamental product that has a wide range of applications as a composite material substrate, consisting of strands that have been treated appropriately according to their intended use and aligned to a specified gauge. Among them, the super-large jumbo roving (150-200 kg) simplifies the customer's work setup and yarn splicing tasks, contributing to improved work efficiency and quality through uniform distribution. Additionally, we respond to customer needs with a wide variety of offerings, including those for preforms, spray-up, and wave flat plates. [Features] - Smooth extraction with "zero" loops - Uniform strand thickness (gauge) - Even impregnation - Uniform flow of sheets, resulting in homogeneous molding *For more details, please download the PDF or contact us.

  • Composite Materials

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Metal Matrix Composite (MMC) 'ACM-io'

Surface treatment is possible! It can significantly reduce dust generation during use compared to graphite.

Metal Matrix Composite (MMC) 'ACM-io' is a new material that combines graphite (CIP) and aluminum, which has been considered difficult to achieve, and exhibits minimal deformation at high temperatures while effectively conducting heat. It has a specific gravity comparable to graphite, and its thermal expansion rate is similar to that of ceramics. The strength is improved compared to graphite, allowing for finer machining and reduced dust generation. Additionally, we offer "ACM-io Surface Treatment (XDP Coat)," which improves the adhesion of plating compared to conventional trivalent chromium plating, making it suitable for more complex-shaped components. 【Features】 ■ High thermal conductivity ■ Low linear expansion rate/thermal deformation ■ Heat cycle resistance ■ Lightweight comparable to graphite ■ Strength exceeding that of graphite *For more details, please refer to the PDF document or feel free to contact us.

  • Contract manufacturing

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Metal Matrix Ceramic Composite "AC-Alsic"

A metal matrix ceramic composite with a stiffness 1.8 times higher than aluminum and reduced thermal expansion by 2/3. Thermal conductivity has also improved!

"AC-Alsic" is a metal-based ceramic composite material suitable for heat spreaders and substrates for high-power semiconductors, where high strength and high thermal conductivity are required. Additionally, it is suitable as a heating element with good thermal uniformity, low thermal expansion, and minimal high-temperature deformation, achieved by embedding a sheath heater pattern into a SiC preform and integrating it with molten aluminum. 【Features】 ■ High rigidity with a Young's modulus 1.8 times that of aluminum, and thermal expansion reduced to 2/3 ■ Specific rigidity 2.8 times that of cast iron, and thermal conductivity improved by 3 times ■ Suppression of deformation and strain caused by thermal expansion differences ■ Thermal expansion rate similar to that of stainless steel and carbon steel *For more details, please download the PDF or feel free to contact us.

  • Other metal materials
  • Contract manufacturing

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Metal Matrix Composite (MMC) 'AC-Alcon'

The specific rigidity is higher than Alsic and three times that of cast iron! There is no gas emission in a vacuum environment.

Metal matrix composite (MMC) 'AC-Alcon' is a composite material made of Si (silicon) and Al (aluminum). It is lighter than aluminum and can be processed with ultra-hard tools. Its specific stiffness is higher than Alsic (30% Si, 70% Al) and is three times that of cast iron. Additionally, it has excellent vibration damping properties and a thermal expansion rate that is closer to that of SUS guides. 【Features】 ■ Specific gravity: Lighter than aluminum (2.45 Gcm²) ■ Young's modulus: Comparable to steel (117 GPa) ■ Specific stiffness (Young's modulus/specific gravity): Higher than Alsic (30% Si, 70% Al) and three times that of cast iron ■ Thermal expansion rate: Closer to that of SUS guides ■ Machinability: Can be machined with ultra-hard tools ■ Vibration damping: Excellent vibration damping properties *For more details, please refer to the PDF document or feel free to contact us.

  • Other metal materials

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Advance Composite Co., Ltd. Company Profile

Supporting the future of the Earth with materials! Achieving remarkable improvements in properties that cannot be attained with single metals through unique characteristics and functions.

Advance Composite solves challenges such as weight reduction, high rigidity, thermal expansion, and heat dissipation through the customized design and development of composite materials centered around aluminum. By developing new composite materials, we enable favorable properties that could not be achieved with a single material, promoting revolutionary weight reduction and energy efficiency, innovating global industries, creating a sustainable society, and contributing to solving global environmental issues. We leverage world-class "melt forging technology," "design technology" that realizes the required properties of materials according to their purpose, and our "experience and achievements in manufacturing metal matrix composites" centered around aluminum as our strengths. 【Business Overview】 ■ Development, manufacturing, and sales of metal matrix composite materials and composite products through melt forging. *For more details, please refer to the PDF materials or feel free to contact us.

  • Contract manufacturing

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