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 104 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Apr 08, 2026~May 05, 2026
This ranking is based on the number of page views on our site.

Composites Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Apr 08, 2026~May 05, 2026
This ranking is based on the number of page views on our site.

  1. ラックデザイン Fukuoka//Other manufacturing
  2. 大塚化学 Tokyo//Chemical
  3. JAPAN FINE CERAMICS CO., LTD. (JFC) Tokyo Sales Office Tokyo//Ceramics
  4. 4 アドバンスコンポジット 本社 富士事業所  Shizuoka//Machine elements and parts
  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:Apr 08, 2026~May 05, 2026
This ranking is based on the number of page views on our site.

  1. Shall we reconsider the "heat stroke measures" at the site? <Sample provided> ラックデザイン
  2. High-performance thermoplastic composite "Pochicon" 大塚化学
  3. Taika Arock (for HFO) スチライト工業
  4. 4 3D printer resin composite material "POTICON FILAMENT" グーテンベルク
  5. 5 Pitch-based carbon fiber composite "Diarid Composite" 三菱ケミカル コンポジットパーツ本部 Asia事業部

Composites Product List

181~210 item / All 289 items

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What are the benefits of using "Phenol CF-SMC"?

With 'Phenol CF-SMC', which has heat resistance above 300℃, it is possible to reduce the weight of parts used in high-temperature environments! Complex shapes can also be molded!

Phenol CF-SMC is a composite material made of carbon fibers (short fibers) and phenolic resin. Phenolic resin has high heat resistance (over 300°C) and can be used in high-temperature environments that conventional CFRP (epoxy resin) cannot handle. It also meets the fire resistance evaluation standards for railway applications. **Benefits of using Phenol CF-SMC:** - Higher heat resistance compared to epoxy resin (over 300°C), allowing for use in high-temperature environments. - Lightweight due to low specific gravity, enabling weight reduction of aluminum and SUS. - Allows for lightweight design of parts requiring fire resistance. - Capable of molding complex product shapes through pressing. **Common needs:** - Desire to reduce the weight of aluminum or SUS parts used in high-temperature environments. - Need to lighten parts that require fire resistance. **Expected applications of Phenol CF-SMC:** Components for aircraft, automobiles, railway vehicles, machine tools, thermal protection materials, etc. **What Mitsubishi Chemical can offer:** In addition to the manufacturing and sales of carbon fibers and prepregs, we can also handle molding, processing, assembly, coating, and inspection of these materials for delivery. *For more details, please refer to the PDF document or feel free to contact us.*

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  • Composite Materials
  • Engineering Plastics
  • Composites

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High heat-resistant carbon fiber composite materials! Comparison of physical properties of C/C and C/SiC.

Materials such as "C/C" and "C/SiC" can be used to reduce weight, decrease deflection, and improve vibration damping in components used in high-temperature environments above 800℃!

C/C composites are composite materials made of carbon fibers and carbon, while C/SiC composites are made of carbon fibers and SiC. Many carbon fibers are used as composite materials (CFRP) with resin as the matrix, but the heat resistance of resin has its limits. By using high-temperature treated materials (carbon and SiC) as the matrix, it has become possible to use them in high-temperature environments (800°C). 【Advantages】 ■ High heat resistance (800°C), enabling use in high-temperature environments ■ High specific modulus (modulus of elasticity ÷ weight), allowing for lightweight components, thin-walled designs, and reduced deflection ■ High thermal conductivity, enabling lightweight heat dissipation components 【Common Needs】 ■ Want to reduce the weight of parts made from heat-resistant materials (ceramics, isotropic graphite) ■ Want to minimize deflection due to limited space ■ Want to use materials with high Young's modulus 【Main Applications】 Parts for FPD manufacturing equipment, semiconductor manufacturing equipment, brake components, etc. 【What Mitsubishi Chemical Can Do】 In addition to manufacturing and selling carbon fibers and prepregs, we can also perform shaping, processing, assembly, coating, and inspection of these materials, and deliver them. *For more details, please refer to the PDF document or feel free to contact us.

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Carbon-based thermally conductive composite materials

Investigation Report on the Trends of Electronic Patent Technologies for Carbon-Based Thermal Conductive Composite Materials

You can view patent information categorized by the following technology classifications: - Carbon-based materials alone - Powders and amorphous particles - Graphite fillers - Carbon fibers

  • others
  • Composites

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3D printer resin composite material "POTICON FILAMENT"

High-quality output approaching injection molding made possible with G-ZERO×POTICON FILAMENT!

"POTICON FILAMENT" is a resin composite material for 3D printers that boasts high molding strength and dimensional stability among various filaments, featuring a TISMO formulation. By controlling the content of TISMO and the combination of base materials, it is possible to add or enhance properties such as heat resistance and static electricity prevention, in addition to the basic performance of strength and dimensional stability. It achieves strength comparable to injection molding and meets the needs of various industrial applications with a high dimensional accuracy of an average error rate of 0.18%. 【Product Lineup】 ■POTICON STD1 PA ■POTICON STD2 PA ■POTICON FLEX PA12 ■POTICON HARD PPS ■POTICON ESD PPS *For more details, please refer to the related links or feel free to contact us.

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  • 3D Printer
  • Other polymer materials
  • Composites

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Yasumizu Store Introduction to Metal Recycling Business

Recycling metal scrap into high-grade, high-quality metal materials using advanced technology. Also compatible with metal composites.

Our company collects metal scrap emitted from factories and recycles it into high-quality metal materials using advanced technology, boasting nearly 60 years of experience since our establishment in 1965. One of our businesses, the "crushing of copper composite materials from motors and radiators," has successfully improved the copper grade to over 99.5% through advanced sorting processes and burner treatment. By utilizing our recycled metals, you can gain various benefits, including: - Expansion of sales channels through the production of high-grade copper - Prevention of domestic technology leakage of metal composites - Contribution to domestic circulation, stable supply, and CO2 reduction - Enhancement of corporate value *For more details, please refer to the materials. Feel free to contact us as well.

  • Other contract services
  • Composites

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Composite material "FRP"

Emphasizing product safety! Designing and manufacturing based on strength calculations for various conditions such as earthquake resistance and wind pressure resistance.

FRP is a composite material characterized by being lightweight and high-strength, as well as excellent in corrosion resistance and weather resistance, making it suitable as a general structural material. FRP products offer high design flexibility due to their molding and processing capabilities, allowing for broad applications, making it possible to manufacture with consideration for economic efficiency and profitability across various fields. Among these, our flagship product, "Corrosion-Resistant FRP Equipment," demonstrates excellent corrosion resistance by selecting appropriate resins and reinforcing materials based on the application and usage conditions of chemicals, maintaining this quality over the long term. 【Features】 ■ Corrosion resistance ■ Lightweight and strong ■ Insulation ■ Weather resistance ■ Maintenance and repair *For more details, please refer to the related links or feel free to contact us.

  • Composite Materials
  • Composites

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Lightweight intermediate materials for mobility components

Lightweight intermediate materials for mobility components

By applying low-cost carbon fibers or natural fibers in pursuit of sustainability, it has achieved over 20% weight reduction while simultaneously embodying performance equal to or greater than existing materials, making it suitable for use in automotive exterior panels and structures.

  • Composite Materials
  • fiber
  • Composites

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[Handling Machines] Polymers and Composite Materials

Providing customer satisfaction quickly through digital experiences with flexible solutions and prompt responses tailored to customer needs.

Our company manufactures machines designed to simplify production processes for customers handling plastics and composite materials in the automotive, aerospace, marine, transportation, construction, signage, graphics, technology, and defense sectors. We offer a variety of cutting solutions, including single-cut panel saws and water jet machines for rubber, expanded polystyrene, plastics, and composite materials. Additionally, we provide polymer and composite processing solutions for automotive, aerospace, technical packaging, and engineering plastics. 【Featured Machines】 ■Explora Cut Pro S F: Single-cut panel saw machine for medium to large enterprises ■Explora Cut Up S F: Single-cut panel saw for craftsmen and small businesses ■Explora Cut Up J 0: A water jet cutting machine equipped with 5-axis functionality that enables versatile processing of plastic slabs *For more details, please refer to the related links or feel free to contact us.

  • Other machine tools
  • Composite Materials
  • Composites

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Lightweight, strong, fast to mold. Tepex for high-volume performance.

TEPEX — Lightweight strength beyond metal, designed for mass production.

Tepex is a continuous fiber-reinforced thermoplastic composite sheet. Its high strength-to-weight and stiffness-to-weight ratios enable metal replacement, achieving both lightweight design and high rigidity. Fast thermoforming allows short cycle times suitable for mass production. Combined with overmolding, Tepex enables functional integration and part count reduction. Fiber orientation can be tailored to load paths, delivering excellent impact and fatigue performance. Widely proven in automotive, industrial, and sports applications. As a thermoplastic material, Tepex is recyclable and supports sustainable product design.

  • Engineering Plastics
  • plastic
  • Other Auto Parts
  • Composites

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Wit Corporation

One-stop service for composite materials

Resin impregnation technology for carbon, aramid, glass, and basalt fibers (prepreg manufacturing), and production tailored to individual specifications for various composite materials.

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Fujika Decoration Co., Ltd. Business Introduction

The overwhelming high quality and price advantage are the strengths of Fujikashoku Co., Ltd.!

Fujikashiki Co., Ltd.'s BUSINESS includes the commercialization of functional engineering plastic resin compounds, the development of RCF (CFRP recycling) + super engineering plastics + secondary processing technology, CFRP recycling business, CFRP secondary processing products business, and surface decoration business. With the completion of mass production technology for recycled carbon fibers, we have established mass production facilities for secondary processing of various carbon fiber reinforced composite materials, enabling consistent mass production from materials to products through horizontal recycling. We are a compact yet rare group of technical experts in the world. We provide new compounds and composites. 【Features】 ■ Consistent mass production of horizontal recycling ■ Overwhelming high quality and price competitiveness ■ Hot air circulation recycling method *For more details, please download the PDF or feel free to contact us.

  • Composite Materials
  • Other Recycling
  • Composites

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CFRP composite materials for robots

Lightweight and strong! CFRP composite materials that enhance robot performance.

In the robotics industry, the rigidity of components is crucial for balancing motion accuracy and durability. Particularly in high-speed robots and those performing precise tasks, the deflection and vibration of components significantly affect performance. CFRP composite materials excel in specific strength and specific modulus compared to metal materials, enabling both weight reduction and high rigidity in robots. This leads to improvements in the robot's operational speed, positioning accuracy, and durability. 【Application Scenes】 - Robot arms - Robot hands - Robot frames - Precision equipment 【Effects of Implementation】 - Increased operational speed due to weight reduction - Improved positioning accuracy due to high rigidity - Stable operation due to vibration damping - Enhanced durability

  • Composite Materials
  • Composites

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"AEI501" (PEI) High Precision and High Heat Resistance Composite Material

【A must-see for designers!】No secondary processing required, leading to cost reduction. Our proprietary PEI resin composite material excels in heat resistance, dimensional accuracy, and mechanical properties.

"Epoclustar AEI501" is a heat-resistant, dimensionally accurate, and mechanically superior PEI resin molding material (plastic) developed based on polyetherimide resin (PEI). Customization options are available based on the required characteristics. 【Features】 ■ High heat resistance Continuous use temperature of 170°C, heat deflection temperature exceeding 200°C! Suitable for parts that require high heat resistance. ■ Isotropically excellent dimensional accuracy Molding shrinkage rate of 0.13%! Suitable for parts that require precision. ■ Excellent mechanical properties Ensures the strength of parts with superior mechanical properties derived from PEI. For more details, please refer to the catalog. Feel free to contact us. *Basically, we provide molded products that we process ourselves. Please consult with 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

[Attention Design Engineers!] High-performance sliding PPS resin composite materials active in fields requiring sliding properties and wear resistance!

The "EPOCLUSTER APS300M" is a composite material (plastic) developed based on polyphenylene sulfide resin (PPS), featuring excellent friction coefficient, heat resistance, and chemical resistance. 【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 minimal anisotropy, warping and shrinkage are less likely to occur, allowing for stable production of 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 has stable durability against various chemical substances. For more details, please refer to the catalog. Feel free to contact us. *This material is generally provided as molded products processed by our company. If you are looking for molding materials, please consult with us first.

  • Engineering Plastics
  • Composite Materials
  • plastic
  • Composites

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Dispersion and compounding of carbon nanotubes, enhancement of high functionality, and improvement of compound properties.

★CNT Dispersion Metal Matrix Composites! Dispersion Technology ★ Various CNT Synthesis and Various CNT Composites from "Nanocyl"! Conductive Resin Composite Molding!

≪Lecturers≫ Part 1: Professor Katsuyoshi Kondo, Ph.D. (Engineering), Institute of Joining Science, Osaka University, National University Corporation Part 2: Hirozo Tsunoda, Ph.D. (Engineering), President, Sumita Chemical Technology Research Institute, Ltd. Part 3: Yuushi Nagao, Senior Manager of Business Development, Asia Pacific, Nanocyl S.A. ≪Date and Time≫ March 16, 2011 (Wednesday) 10:30-16:00

  • Company:AndTech
  • Price:10,000 yen-100,000 yen
  • Technical Seminar
  • Composites

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Saphir Japan Preform

After adjusting the fiber length of the sapphire alumina fiber, it was suspended in water, an inorganic binder was added to create a slurry, and then it was dried after being shaped with a special molding machine.

When lightweight metals such as aluminum and magnesium are impregnated using casting methods, a microstructure composed of metal and alumina fibers is formed, achieving all material properties that meet the requirements.

  • fiber
  • Composites

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[English Market Research Report] CMC (Ceramic Matrix Composites) Market

"Free samples" are currently being offered! Please check the application method from the [PDF download] button, or apply directly from the related links.

The global market size for CMC (ceramic matrix composites) reached 11 billion USD in 2023. The IMARC Group forecasts that the market will reach 24.2 billion USD by 2032, with a growth rate (CAGR) of 8.93% from 2024 to 2032. Significant expansion in the automotive industry, extensive research and development (R&D) activities, and the widespread adoption of products in high-speed machine components are the main factors driving the market.

  • Other services
  • Composites

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[English Market Research Report] Construction Composite Materials Market

"Free samples" are currently available! Please check the application method from the [PDF download] button, or apply directly through the related links.

The global construction composite materials market size reached 5.5 billion USD in 2023. Going forward, the IMARC Group forecasts that the market will reach 8.1 billion USD by 2032, with a growth rate (CAGR) of 4.12% from 2024 to 2032. The main factors driving the market include the increasing use of composite materials in construction applications, the repair of aging concrete structures, and the high construction costs of composite materials.

  • Other services
  • Composites

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【English Market Research Report】Global Market for Wood Plastic Composites

"Free samples" are currently available! Please check the application method from the [PDF download] button, or apply directly from the related links.

The global wood-plastic composites market size is projected to grow at a CAGR of 9.6% during the forecast period, reaching USD 12.5 billion by 2030. In 2022, the market reached a size of 4,332.8 kilotons, recording a growth of 7.1% from 2019 to 2022. Furthermore, rapid urbanization and population growth in both developed and emerging countries are increasing the demand for residential, commercial, and industrial construction. According to Brazil's Agencia de Noticias 2021, the construction sector generated a value of 377.8 billion reais in 2021, of which 355.8 billion reais were for construction and/or services, and 22 billion reais were for development, construction, and/or services (5.8%). Therefore, these factors are expected to drive the demand for wood-plastic composites.

  • Other services
  • Composites

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【English Market Research Report】Global Market of CABKOMA

"Free samples" are currently being offered! Please check the application method from the [PDF download] button, or apply directly from the related links.

The global CABKOMA market size is expected to reach 400 million USD in 2022, growing from 436.4 million USD in 2023 to 875.96 million USD by 2031, with a projected CAGR of 9.10% during the forecast period (2024-2031). The global CABKOMA market has been steadily growing in recent years due to the increasing demand for strong and lightweight materials across various end-use sectors. The rising popularity of sports and leisure activities that require robust and lightweight equipment, the growing demand for fuel-efficient vehicles, and the increased use of lightweight materials in aerospace applications are the main factors driving this market. A few major companies that offer a wide range of products and services dominate the majority of the CABKOMA market. In the coming years, the global CABKOMA market is expected to continue its upward trend due to increased demand from key end-use industries.

  • Other services
  • Composites

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Carbon Fiber Reinforced Polymer (CFRP)

Composite of lightweight polymers and high-strength carbon fibers!

Carbon Fiber Reinforced Polymer (CFRP) is a composite material made by combining lightweight polymers with lightweight, high-strength carbon fibers. The strength is enhanced through stress transfer between fibers mediated by the interface and matrix, allowing more fibers to effectively carry the load, contributing to strength development that exceeds the breaking strength of individual fibers (filaments). [Related Contract Services] ■ Evaluation and Modification of Matrix Resins - Epoxy Resins (impregnation, curing, properties of cured resins, processing considerations) - Thermoplastic Resins (flowability, impregnation, resin properties, resin modification) ■ Prototype and Improvement Studies of Prepregs and Composites - Impregnation and Lamination Conditions (vacuum press) - Interlaminar Adhesion, Toughness Improvement ■ Evaluation Testing of Composites - Mechanical Properties (tensile, compression, bending, shear, impact) - Composition (CF content, matrix resin analysis, residual fiber length) - Durability (thermal aging, heat cycles, fatigue properties) - Adhesion with Other Materials (adhesive bonding, insert molding) *For more details, please download the PDF or feel free to contact us.

  • Composite Materials
  • Composites

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Metal Matrix Composites "MMC"

It is a composite material that combines the lightness of aluminum with the rigidity of steel, low thermal expansion, and excellent heat dissipation due to high thermal conductivity.

Are you struggling with the heaviness of iron, the large deflection of aluminum? Are you having trouble with heat retention? Is the accuracy changing with temperature? MMC solves these problems. ● Features of MMC - High rigidity: Rigidity comparable to cast iron and steel - Lightweight: Weight comparable to aluminum alloys - Low thermal expansion: Less than half that of aluminum alloys - High thermal conductivity: Superior to aluminum alloys - Vibration damping: Vibration absorption properties better than stainless steel, cast iron, and aluminum alloys - Low electrical resistivity: Conductive! * By changing the combination of materials and their ratios, we can achieve properties that meet your needs. * In addition to composite materials, we also manufacture and sell various ceramics, providing support with a wide range of products.

  • Fine Ceramics
  • Other machine elements
  • Other semiconductor manufacturing equipment
  • Composites

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[Video] Please take a look at the excellent vibration damping properties of composite materials MMC.

Lightweight and high-rigidity MMC excels in vibration damping, enabling high precision and high speed in devices.

●Features of MMC - Lightweight: The lightness of aluminum - High rigidity: Higher rigidity than cast iron and stainless steel - Low thermal expansion: Less than 1/2 that of aluminum - High thermal conductivity: Better than aluminum - Vibration damping: Better than stainless steel, cast iron, and aluminum ⇒ Please watch the video. The left side of the screen shows MMC (SA301).

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Iron rigidity with about 1/3 the weight! Metal ceramic composite material 'MMC'

Metal-ceramic composite materials that achieve rigidity equivalent to steel at about one-third the weight also have good vibration damping properties, making them ideal for movable parts in devices. The performance of the device will change.

Composite materials 'MMC (Metal Matrix Composites)' have achieved better physical properties by combining base metals and ceramic-based reinforcement materials. These materials can meet various customer demands, such as wanting to increase rigidity without changing shape or weight, wanting to reduce weight while maintaining rigidity, or needing materials with excellent heat dissipation. 【Features】 ■ Equivalent to aluminum, about 1/3 the weight of iron ■ Has rigidity comparable to iron and steel, and is resistant to bending ■ Good vibration damping properties ☞ Please refer to the video ■ Excellent thermal conductivity and heat dissipation ■ Minimal expansion and contraction due to temperature changes *For more details, please request materials or view the PDF data from the download.

  • Other metal materials
  • Ceramics
  • Fine Ceramics
  • Composites

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[Video] What is Composite Material "MMC" - Comprehensive Catalog Available

As light as aluminum and as strong as steel! For more details on the composite material "MMC," please refer to the video or catalog.

Metal ceramic composite material 'MMC' that combines the "lightness of aluminum" and the "rigidity of steel." It has high thermal conductivity, low thermal expansion, and the ability to absorb vibrations, making it suitable for complex shapes and large items! We are currently offering a comprehensive catalog of the composite material 'MMC' suitable for replacement of aluminum and steel! For features and application examples of MMC, please refer to the animation video. 【Features】 ■ Equivalent to aluminum, about 1/3 the weight of steel ■ Has rigidity comparable to iron and steel, resistant to bending ■ High thermal conductivity and heat dissipation ■ Minimal thermal shrinkage *For more details, please download the catalog or contact us.

  • Other metal materials
  • Ceramics
  • Fine Ceramics
  • Composites

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Device performance changes! Metal ceramic composite materials MMC

The lightness of aluminum combined with the rigidity of steel. It moves quickly and stops precisely without bending. The MMC, created by JFC's unique composite technology, transforms device performance.

Our unique composite technology produces Metal Matrix Composites, which are composite materials with a carefully optimized blend of metal and ceramics. Using MMC, which is lightweight like aluminum yet does not deform like iron, as moving parts in equipment can dramatically change the performance of the device. The excellent thermal properties of low thermal expansion and high thermal conductivity will solve thermal issues in the equipment. Please consider adopting MMC.

  • Other metal materials
  • aluminum
  • Composite Materials
  • Composites

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【For Automotive Parts】Selbrid® Design Grade

Achieving lightweight automotive parts with Scope3-compliant biomass composite materials.

In the automotive industry, reducing weight of components is a crucial challenge for improving fuel efficiency and minimizing environmental impact. In particular, lightweighting of the body and interior parts is essential for reducing the overall weight of the vehicle and enhancing fuel efficiency. Conventional petroleum-based resins can hinder weight reduction. The Selbride® design grade is a WPC (wood plastic composite) with a high content of wood flour, which not only offers lightweight properties and environmental considerations but also allows for unique design expressions characteristic of wood flour. 【Application Scenarios】 - Automotive interior parts (door trims, instrument panels, etc.) - Exterior parts (grilles, etc.) - Other components where weight reduction is required 【Benefits of Implementation】 - Improved fuel efficiency through lightweighting of components - Reduction of CO2 emissions through Scope 3 compliance - Increased added value through wood-based design features

  • WPC_ピラートリム.png
  • WPC意匠表面.png
  • plastic
  • Composite Materials
  • fiber
  • Composites

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【Food container compatibility available】 Selbrid® design grade

Biomass composite materials compatible with Scope 3, solving challenges in the food hygiene sector.

In the food industry, maintaining a hygienic environment requires attention to the safety of materials and consideration for the environment. Especially for products that may come into direct contact with food, it is important to minimize the risk of contamination from materials. The Selbrid® design grade incorporates up to 55wt% wood powder and reduces the use of petroleum-based resins, aiming to comply with food hygiene standards (positive list) while lowering environmental impact. It also contributes to CO2 reduction through the use of biomass and supports material selection with awareness of Scope 3 compliance. 【Usage Scenarios】 - Food containers - Food packaging materials - Kitchen equipment - Food-related supplies 【Benefits of Implementation】 - Improved corporate image through environmentally friendly material selection - Contribution to CO2 emission reduction - Potential cost savings by replacing existing polypropylene-based materials - Increased product value through the aesthetic qualities derived from wood materials

  • plastic
  • Composite Materials
  • fiber
  • Composites

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