We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Composites.
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Composites Product List and Ranking from 97 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
This ranking is based on the number of page views on our site.

Composites Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
This ranking is based on the number of page views on our site.

  1. CFCデザイン Fukui//Other manufacturing
  2. JAPAN FINE CERAMICS CO., LTD. (JFC) Tokyo Sales Office Tokyo//Ceramics
  3. 大塚化学 Tokyo//Chemical
  4. 4 クラスターテクノロジー 本社 Osaka//Resin/Plastic
  5. 5 三菱ケミカル コンポジットパーツ本部 Asia事業部 Tokyo//Resin/Plastic

Composites Product ranking

Last Updated: Aggregation Period:Dec 31, 2025~Jan 27, 2026
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. "J106S・J116S" (EP) low linear expansion, low shrinkage rate, composite material クラスターテクノロジー 本社
  4. 4 【Seismic reinforcement achievements available】 Carbon fiber material 'Kabokoma Strand Rod' 小松マテーレ
  5. 5 Carbon fiber reinforced composite "C/C composite" CFCデザイン

Composites Product List

1~15 item / All 269 items

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Copper-clad aluminum composite material "CCAC"

For lightweighting copper components! Copper-based parts that couldn't be aluminumized in the past might be achievable with CCA!

CCAC (Copper Clad Aluminum Composite) is a new type of copper-aluminum clad material that uses isothermal processing technology (patented internationally) to achieve a metallurgical bond of copper to an aluminum core. While retaining the excellent properties of copper, such as conductivity, it also combines the advantages of aluminum, being lightweight and low-cost. Unlike clad materials made by bonding dissimilar metals, it features a shape where copper completely covers the aluminum. It boasts excellent conductivity, thermal conductivity, heat dissipation, solderability, and plating properties, along with high ductility and ease of processing. It is metallurgically bonded through a controlled high-temperature isothermal process, which also prevents oxidation. In addition to drilling and bending, it can be adapted for processing operations such as deep drawing, twisting, and cutting.

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Carbon Fiber Reinforced Polymer (CFRP)

Can resin replace metal? We will introduce its characteristics, adoption benefits, and current issues.

We would like to introduce our "Carbon Fiber Reinforced Plastic (CFRP)." Among FRP, those that incorporate carbon fibers as reinforcement are called CFRP, and their characteristics are particularly lightweight, hard, and strong. Furthermore, they possess excellent performance in various aspects such as wear resistance, heat resistance, conductivity, acid resistance, and corrosion resistance. 【Features】 ■ Lightweight: Density is about 1/5 that of iron ■ High strength: Hardness equivalent to that of iron ■ High rigidity: Twice that of iron *For more details, please refer to the PDF document or feel free to contact us.

  • fiber
  • Processing Contract
  • Composites

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Self-lubricating composite materials for high-temperature atmospheric and underwater use.

Lubricating materials that can be used up to 800°C in the atmosphere. They are also being used in seawater and chemical reaction tanks.

F metal is inexpensive because it can be manufactured through vacuum sintering without using hot pressing. Its characteristics are as follows: 1. It has good machinability, allowing for various applications in parts. 2. It can be used in the atmosphere up to 800°C. 3. Depending on the counterpart material, load, and speed, the friction coefficient is generally around 0.1 to 0.2. 4. It has a very low specific wear rate (10-8 mm³/kg·mm). 5. It demonstrates excellent corrosion resistance to weak acids, organic acids, seawater, and alkalis. 6. It can also be supplied in the form of ball bearings. For applications as ball bearings, please search and refer to "Vacuum and High-Temperature Bearings" on this site.

  • Heating device
  • Food Processing Equipment
  • Metal bearings
  • Composites

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Industry Solution (Materials) Composite Materials

Introduction to composite material testing applications and fixtures.

We offer a variety of electromechanical testing systems. For composite materials, tensile and compression tests are possible. We provide constant temperature chambers, grips, and fixtures to optimize tensile, compression, shear, and other testing systems under conditions other than room temperature. Additionally, we have a drop weight impact testing machine that can perform detailed analysis and testing (CAI) of composite materials based on damage performance. 【Testing Contents】 ■ Static Testing ■ Low/High-Temperature Testing ■ Fatigue/Fracture Testing ■ Damage Performance Testing *For more details, please refer to the PDF materials or feel free to contact us.

  • Testing Equipment and Devices
  • Strength Testing Equipment
  • Composites

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Composite material "CFRP"

It is a lightweight and strong material that excels in specific strength and specific elastic modulus compared to metal materials. It also possesses aesthetic beauty.

"CFRP" stands for Carbon Fiber Reinforced Plastics, which is a composite material made of carbon fibers as the reinforcement and thermosetting resin as the matrix. The main characteristics of CFRP include: ■ Lightweight and strong ■ Excellent X-ray transparency ■ Superior vibration damping ■ Low thermal expansion rate ■ Excellent design properties By designing a laminated structure tailored to various applications, it is possible to create products that make the most of CFRP's characteristics. *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
  • Composites

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"CAK" (COP) Low Water Absorption, High Environmental Stability Composite Material

A high-environmentally stable material that does not change in size despite fluctuations in temperature and humidity!

"Epoclast T CAK" is a composite material for thermoplastic ultra-precision molding. It is a cycloolefin composite with low water absorption and low linear expansion, providing high stability that does not change in size with temperature and humidity fluctuations. This material can be customized according to the customer's application. 【Features】 ○ Minimal water absorption (moisture) ○ Extremely low linear expansion rate ○ Options for conductivity and insulation For more details, please contact us or download the catalog.

  • Composite Materials
  • plastic
  • Engineering Plastics
  • Composites

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"Epohard Series" (EP) Insulation Composite Materials

Excellent mechanical properties! A material that allows for miniaturization and lightweighting that is impossible with porcelain.

"Epohard" is a resin composite material formulated with inorganic fillers, reinforcing agents, and coloring agents based on epoxy resin, developed as an insulating material to miniaturize and lighten ceramic insulators. It offers high freedom of molding and ensures dimensional accuracy, making insert molding of metal screws, flanges, copper rods, and more easy. It also achieves miniaturization and weight reduction that is impossible with porcelain, while exhibiting excellent mechanical properties. Additionally, due to its high productivity, it can also be used for compression and transfer molding. 【Features】 ○ Reliable track record from a top manufacturer ○ High freedom of molding and dimensional accuracy ○ Achieves miniaturization and weight reduction ○ Material with excellent productivity ○ High dielectric strength and tracking resistance For more details, please contact us or download the catalog.

  • Composite Materials
  • Engineering Plastics
  • plastic
  • Composites

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"CPE33" (PPE) Low moisture absorption, high regeneration rate composite material

Low moisture absorption / high regeneration rate resin composite material

"Epoclustar T CPE33" is a composite material designed for thermoplastic ultra-precision molding, featuring low moisture absorption, a low coefficient of linear expansion, and high recyclability. Due to its low moisture absorption and low linear expansion, it is a material that is less affected by environmental changes. Leveraging these characteristics, it has become possible to provide high-precision components, such as optical bases, which are sensitive to environmental changes. With a high material recycling rate, repeated recycling has little impact on mechanical properties. It contributes to reduced material management and quality control, as well as being eco-friendly.

  • plastic
  • Engineering Plastics
  • Composites

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"AEI501" (PEI) High precision and high heat resistance composite material

High heat resistance × high strength × high precision, leave the resinization of precision parts to us.

"Epoclustar AEI501" is a PEI resin molding material (plastic) developed based on polyetherimide resin (PEI), featuring excellent dimensional accuracy, heat resistance, and mechanical properties. Customization options are available based on required specifications. 【Features】 ■ Excellent isotropic dimensional accuracy Molding shrinkage rate of 0.13%! It can be used for parts that require precision. ■ High heat resistance With a continuous use temperature of 170°C, it can be used for parts that require high heat resistance. ■ Excellent mechanical properties The superior mechanical properties derived from PEI ensure the strength of the parts. ■ Excellent chemical resistance It is resistant to alkalis and acids, making it suitable for parts that require chemical resistance. For more details, please refer to the catalog. Feel free to contact us. *Basically, we provide molded products that we process. Please consult us if you are looking for molding materials.

  • Engineering Plastics
  • Composite Materials
  • plastic
  • Composites

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"APS300M" (PPS) High precision, high sliding composite material

High sliding × chemical resistance × high precision, leave the resinization of precision parts to us.

The "EPOCLUSTER APS300M" is a composite material (plastic) developed based on polyphenylene sulfide resin (PPS), featuring excellent friction coefficient, heat resistance, and chemical resistance. Customization options are available based on the required specifications. 【Features】 ■ Friction Coefficient and Wear Resistance By incorporating spherical carbon, we have achieved a low friction coefficient and high wear resistance. ■ Isotropic Dimensional Accuracy Due to the low tendency for anisotropy, warping, and shrinkage, it is possible to stably produce precision parts. ■ High Heat Resistance With a load deflection temperature of 200°C, it can be used in high-temperature environments. ■ Excellent Chemical Resistance It possesses stable durability against various chemical agents. For more details, please refer to the catalog. Feel free to contact us with any inquiries. *This material is generally provided as molded products processed by our company. Please consult us if you are looking for molding materials.

  • Engineering Plastics
  • Composite Materials
  • plastic
  • Composites

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Composite material "Epoclustar J106S" *Documentation with case studies available.

Adopted for resin frames for image sensors and lens holders for copiers! A composite material that can be customized with resin materials according to customer requirements.

The "Epoclustar J106S" leverages the characteristics of thermosetting resin, enabling complex designs that cannot be achieved with thermoplastic resins. With a molding shrinkage rate of 0.03% and a linear expansion coefficient of 9 ppm, it achieves precision molding at the micron level. It contributes to the resinization of metal and ceramic parts. 【Features】 ■ Low linear expansion coefficient ■ High precision molding ■ High production capacity Additionally, we will be exhibiting at "N-Plus 2025," which will be held at Tokyo Big Sight from October 15 (Wednesday) to October 17 (Friday). Booth number: R-42 We sincerely look forward to your visit. *Examples of actual applications where Epoclustar has been adopted, as well as key points, are also explained in downloadable materials. *For more details, please download the PDF or feel free to contact us.

  • Other polymer materials
  • Composites

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Wood and Plastic Recycled Composite "Tekumoku"

100% recycled material made from "waste wood" and "waste plastic," decking and fencing.

The raw materials for "Tekumoku" are waste wood and discarded plastic. These two raw materials are crushed, further powdered, mixed, and then extruded to finish as components. After use as a product, it can also be re-ground and molded for multiple recycling. Therefore, it is a material that takes into consideration waste reduction, resource conservation, and environmental protection, contributing to a resource-circulating society as an ecological material. It has obtained Eco Mark certification. We design and construct decks, fences, louvers, and more according to your order. For more details, please refer to the catalog or feel free to contact us.

  • wood
  • plastic
  • Composites

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[Data] Optimal Design of Composite Material Shells Using ANSYS and PSO

I will explain the optimization method using FEM and discretized PSO, along with an analysis example and a comparison between discretized PSO and GA.

The document "Optimal Design of Composite Material Shells Using ANSYS and PSO" explains optimization methods using FEM and discrete PSO, as well as comparisons between analysis examples and discrete PSO and GA. In the design of composite material structures, there are challenges such as strong anisotropy in strength and stiffness, making numerical analysis like FEM essential. Additionally, design variables include not only the shape and dimensions of the product but also material specifications, necessitating simultaneous progress in structural and material design. Furthermore, material parameters, which are design variables, are often discrete values, making numerical handling difficult. In the typical design procedure for composite material structures, structural analysis is repeatedly conducted using FEM to evaluate the stiffness and buckling strength of the structure while determining the laminate configuration, during which some optimization method is applied. In this analysis case, when determining the laminate configuration of the composite material structure using FEM analysis, a discrete particle swarm optimization algorithm that can handle laminate orientation angles as discrete variables is applied as the optimization method. The aim is to compare the analysis results when applying a genetic algorithm and evaluate its superiority. For more details, please contact us or download the catalog.

  • Other analyses
  • Composites

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