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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

241~270 item / All 289 items

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Technical booklet "Basic Knowledge of FRP 4" *Free download available

Gathering technical data on the characteristics of fiber-reinforced composites from a practical perspective! For those considering adoption in structural bodies and components.

At Sanko Seisakusho, which consistently handles everything from design, molding, processing, to assembly of composite materials including CFRP (FRP) and general-purpose plastics, we are currently offering a free technical booklet titled "Basic Knowledge of FRP 4," which condenses our molding know-how! The booklet includes explanations on the comparison of FRP characteristics, as well as data on representative reinforcing fibers and chemical resistance properties used in FRP. It is easy to understand for beginners and can also be used as training material! 【Contents】 ■ Comparison of various material properties ■ Representative reinforcing fibers used in FRP ■ Representative matrices used in FRP ■ Chemical resistance properties ■ Outgassing *For more details, please refer to the catalog. Feel free to contact us with any inquiries.

  • Processing Contract
  • others
  • Composites

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CDM-ESD for Semiconductor Manufacturing

High-performance composite materials suitable for high-temperature environments above 300℃.

In the semiconductor manufacturing industry, the durability of substrate transport and fixtures under high-temperature conditions in the manufacturing process is crucial. In particular, resistance to thermal deformation and chemical agents significantly affects product quality and production efficiency. CDM-ESD demonstrates high performance even in high-temperature environments above 300°C and possesses excellent chemical resistance. This enables stable operation as pallets and fixtures for substrate transport in semiconductor manufacturing. 【Usage Scenarios】 - Substrate transport in high-temperature environments - Fixtures requiring chemical resistance - Fixtures where dimensional stability is important 【Benefits of Implementation】 - High durability in high-temperature environments - Improved product quality due to excellent chemical resistance - Increased yield due to high dimensional stability

  • Printed Circuit Board
  • Processing Jig
  • Other cutting tools
  • Composites

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"CPA41" (PA) Low water absorption, high rigidity composite material

It is a material with low reaction, low draw, and high rigidity. Due to small size variations and minimal degradation of properties, it significantly contributes to reducing defects.

"Epoclustar T CPA41" is a material with low warpage, low shrinkage, and high rigidity compared to general-purpose nylon, designed for CF and GF high-filled materials. As a result, it contributes significantly to reducing defects due to minimal size variation and degradation of properties. It also aids in lightweighting products that require precision. Various characteristic grades are available, including high heat resistance, high flow grades, and impact resistance grades. 【Features】 ○ High precision, high rigidity ○ Stable various mechanical and size characteristics (compared to general-purpose nylon) ○ Customizable according to application

  • Engineering Plastics
  • plastic
  • Composite Materials
  • Composites

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

[Attention Design Engineers!] Precision parts that look like they were machined, formed in one shot! High-precision PEI resin composite material.

"Epocluseter 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 Outstanding dimensional accuracy with a molding shrinkage rate of 0.13%! As it is an amorphous resin, it has a low shrinkage rate and is less prone to anisotropy! Due to the high filling of inorganic fillers, it is less likely to exhibit sink marks or warping typical of resin molded products! A high-precision PEI resin composite material that achieves a high level of dimensional accuracy and moldability! For more details, please refer to the catalog. Feel free to contact us. *Basically, we provide molded products that we process ourselves. Please consult us if you are looking for molding materials.

  • Engineering Plastics
  • Composite Materials
  • plastic
  • Composites

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"J106S・J116S" (EP) low linear expansion, low shrinkage rate, composite material

[Attention Design Engineers!] Precision parts molded in one shot without the need for post-processing! High-precision epoxy resin composite materials.

"Epocluseter J106S and J116S" are epoxy resin composite materials (plastics) developed by our company using a unique kneading technology based on epoxy resin. They are widely adopted in the mechanism parts of video equipment and industrial equipment due to their ability to mass-produce high-precision components without the need for post-processing. [Features] ■ Achieve precision parts like those made by cutting processes through injection molding! With a molding shrinkage rate of 0.03% (J106S) and a linear expansion coefficient of 9ppm (J106S), we have realized precision molding at the micron level. Furthermore, leveraging the characteristics of thermosetting resins, complex designs such as thin walls and uneven thicknesses without material loss are also possible. ■ Customize resin materials according to required characteristics! In addition to high precision, various functional enhancements such as thermal conductivity and low water absorption are also achievable. For more details, please refer to the catalog, and feel free to contact us. *This product will be provided as molded parts processed by our company. Please note that we do not sell the raw material alone.

  • plastic
  • Engineering Plastics
  • Composite Materials
  • Composites

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Fundamentals of fiber-reinforced composites and molding methods, technologies for enhancing functionality.

★Explanation of know-how regarding the constituent materials of fiber-reinforced composites, molding methods for fiber-reinforced composites, improvement of heat resistance, enhancement of fire resistance, and increase in damage tolerance in a Q&A format!

Speaker Yoshiaki Someya, Representative of Shonan Material Technology Part-time lecturer at Shonan Institute of Technology, Technical Advisor at Best Link Trading Co., Ltd., Technical Advisor at OSE Co., Ltd. [Publications and Awards] Dictionary of Composite Material Utilization and Intermediate Materials (edited by the Japan Society for Composite Materials), Achievement Award from the Advanced Materials Technology Association Target Audience: Engineers, researchers, and beginners interested in fiber-reinforced composite materials Venue: Kawasaki City International Exchange Center, Conference Room 1 [Kanagawa, Kawasaki] 10-12 minutes walk from "Motosumiyoshi Station" on the Tokyu Toyoko Line and Tokyu Meguro Line Date and Time: June 22, 2011 (Wednesday) 13:00-16:30 Capacity: 30 people *Registration will close once full. Please apply early. Participation Fee: 46,200 yen (tax included, including text costs) for up to 2 people from one company ⇒ ◆ The invoice for 2 people can be split into 2 parts (please indicate "invoice split" in the remarks section) *New members who register for the first time by June 8 will receive an early bird discount price of 40,950 yen ◆ If 3 people from the same organization apply, the fee is 67,200 yen.

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

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From Design and Manufacturing to Reliability Assurance of Prepregs - Basics, Applications, and Challenges

This is a comprehensive course that allows you to thoroughly understand the challenges of prepreg manufacturing, design, and methods for ensuring reliability!!

**Speaker** Rudy Composite Engineering Representative Shigeru Nishiyama **Target Audience** Engineers involved in composite product development and those responsible for manufacturing with an interest in prepregs **Venue** Kawasaki City Educational and Cultural Center, Room 3 [Kanagawa, Kawasaki Station] 12 minutes on foot from JR Kawasaki Station **Date and Time** October 24, 2011 (Monday) 10:30 AM - 4:00 PM **Capacity** 30 participants *Registration will close once full. Please apply early. **Participation Fee** [Early Bird Discount Price] 46,200 yen (tax included, including text fee) for up to 2 participants from one company *Limited to Tech-Zone members who apply by October 10. Membership registration is free. *After October 10, the [Regular Price] will be 49,350 yen (tax included, including text fee) for up to 2 participants from one company. ◆If 3 participants from the same organization apply, the fee is 69,300 yen.

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

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Development of interior and exterior materials for aircraft, market trends, durability, safety, and regulatory compliance.

Lightweight plastic and carbon fiber reinforced plastics (CFRP) are desired for aircraft.

CFRPs and Plastics for Interior and Exterior Materials of Airplanes ★Without needing to mention the domestically produced first jet passenger aircraft "MRJ," we will provide a clear explanation from manufacturer representatives about the plastic materials and carbon fiber reinforced composites (CFRP) required for aircraft, which are desired for weight reduction. This will include the current application status in the market, responses to safety and regulations, required technical challenges, and industry circumstances! ☆Next-generation aircraft interiors that are lightweight and compliant with standards ★VaRTM (Vacuum assisted Resin Transfer Molding) ☆What are the reasons these materials are chosen to comply with FST (flame retardant, smoke, toxicity) regulations?! 【Venue】 Tokyo Chuo Ward Industrial Hall 4F, Meeting Room 4【Tokyo, Chuo Ward】 Date and Time July 31, 2013 (Wednesday) 13:20-16:30

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

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[English Market Research Report] Automotive Composite Materials Market

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

The global automotive composite materials market size is expected to grow at a CAGR of 5.9% until 2034. This report investigates the global automotive composite materials market, summarizing the market overview, analysis of factors influencing market growth and market opportunities, trends and forecasts of market size, detailed analysis by various segments and regions, competitive landscape, and profiles of key companies.

  • Other services
  • Composites

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[English Market Research Report] Global Market for Ceramic Matrix Composites

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

The global market size for ceramic matrix composites was valued at 4.1 billion USD in 2022 and is expected to grow from 4.62 billion USD in 2023 to 12.03 billion USD by 2031, with a projected CAGR of 12.7% during the forecast period (2024-2031). Ceramic matrix composites (CMCs) are anticipated to experience significant growth in the global market due to their high strength, lightweight nature, and stability at high temperatures. The CMC market is likely to be driven by these advantages. However, the high cost of CMCs is hindering market growth, as ceramic fibers are used in most metal and polymer composites, and their production numbers are lower compared to carbon fibers, which have lower manufacturing costs due to mass production. CMCs are utilized in many industries, including electronics, thermal management, and high-end sports equipment, for performance enhancement, improved comfort, and the construction of robust structures.

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  • Composites

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【English Market Research Report】Market for Advanced Composite Materials

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

According to the latest report from Grand View Research, Inc., the global advanced composites market is expected to reach USD 70.18 billion by 2030, growing at a CAGR of 9.3% from 2024 to 2030. The increasing demand for these products in the aerospace and defense industries, as well as in sports equipment, is anticipated to drive market growth. Advanced composites, also known as advanced polymer matrix composites, are lightweight materials with high strength and elasticity. These products are manufactured using fibrous materials embedded in various resin matrices. These advanced materials are widely used in aerospace and defense, automotive, marine, and wind energy sectors.

  • Other services
  • Composites

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Wood Plastic Composite Market - English Market Research Report

"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 wood plastic composite market is estimated to reach 8.24 billion USD in 2024 and is projected to grow at a CAGR of 9.8% from 2024 to 2031, reaching 15.84 billion USD by 2031.

  • Other services
  • Composites

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Metal ceramic composite materials (MMC) adoption examples / adoption effects

A must-see for those seeking "something" that transcends barriers! The lightweight of aluminum, the rigidity of steel, high thermal conductivity, low thermal expansion, and vibration damping properties of MMC. What are the benefits of its adoption?

I can't find a clue to solve the problem. I want something to overcome the wall. Our unique new material, "Metal Ceramic Composite Material (MMC)," will solve your "?" 【Main Features】 ■ Lightweight ■ High rigidity ■ High thermal conductivity ■ Low thermal expansion ■ Vibration damping ■ Wear resistance 【Adoption Effects】 ■ Increased speed and energy efficiency of devices due to lightweight components ■ Improved precision of devices due to increased component rigidity ■ Enhanced heat dissipation ■ Prevention of thermal deformation Our unique composite material brings many benefits, such as improved device performance, resolution of thermal issues, increased energy efficiency, and reduced assembly man-hours through the integration of cast method components, and is being adopted in various fields. *For details, please refer to the materials available for download via the PDF button. We also welcome inquiries and questions through the inquiry button.

  • Other metal materials
  • Ceramics
  • Fine Ceramics
  • Composites

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~Lighter than Talc PP~ [For Automobiles] Selbrid® Standard Grade

Achieving lightweight automotive parts with Scope3-compliant wood powder blended WPC.

In the automotive industry, reducing the weight of components has become a crucial challenge for improving fuel efficiency and reducing environmental impact. In particular, the lightweighting of body and interior parts is essential for decreasing the overall weight of the vehicle and enhancing fuel efficiency. Traditional materials have faced the challenge of balancing lightweighting with strength and durability. The Celbrid® standard grade incorporates up to 55wt% wood powder, reducing the use of petroleum-derived resins while being compatible with injection molding and extrusion, making it possible to replace existing polypropylene-based materials. It also provides aesthetic qualities derived from wood, contributing to Scope 3 compliance. 【Application Scenes】 - Automotive interior parts (door trims, instrument panels, etc.) - Other parts where lightweighting is required 【Benefits of Implementation】 - Improved fuel efficiency due to lightweighting - Reduced environmental impact (decrease in CO2 emissions) - Increased added value through wood-derived aesthetics - Potential cost reduction through replacement of existing materials

  • plastic
  • Composite Materials
  • fiber
  • Composites

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Design Grade Selbrid® for the Packaging Industry

Reducing the environmental impact of packaging materials with Scope 3 compliant biomass composites.

In the packaging industry, materials that balance product protection and environmental consideration are in demand. It is particularly important to protect products from impacts during transportation and external influences while reducing environmental impact. Traditional petroleum-based packaging materials pose challenges regarding their environmental effects. The Selbride® design grade incorporates up to 55wt% wood powder, contributing to reduced environmental impact by decreasing the use of petroleum-derived resins. It also contributes to CO2 reduction through biomass utilization and is suitable for material selection with Scope 3 considerations in mind. 【Usage Scenarios】 - Product cushioning materials - Transport cases - Packaging films 【Benefits of Implementation】 - Contributes to enhancing corporate image as an environmentally friendly packaging material - Helps reduce CO2 emissions - Easy to replace existing polypropylene-based materials

  • plastic
  • Composite Materials
  • fiber
  • Composites

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Wood Nano Plus® Standard Grade for Automotive Parts

Contributing to the lightweighting of automobiles with WPC using nano-micron hybrid fillers.

In the automotive industry, reducing vehicle weight is a crucial challenge for improving fuel efficiency and minimizing environmental impact. Lightweighting also contributes to enhanced vehicle performance. The "Wood Nano Plus® Standard Grade" achieves a balance between lightweight properties and high rigidity, contributing to the resolution of these challenges. 【Application Scenarios】 - Automotive interior parts (door trims, instrument panels, etc.) - Exterior parts (bumpers, grilles, etc.) - Other parts where lightweighting is required 【Benefits of Implementation】 - Improved fuel efficiency due to vehicle weight reduction - Enhanced moldability of parts - Contribution to reducing environmental impact

  • plastic
  • Composite Materials
  • fiber
  • Composites

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Wood Nano Plus® Standard Grade for Exterior Building Materials

Improving durability with WPC using nano-micron hybrid fillers.

In the construction industry, the long-term durability of structures is important. In particular, building materials used outdoors must withstand deterioration from rain, wind, and ultraviolet rays. Proper material selection also leads to reduced maintenance costs. "Wood Nano Plus" is a molding compound that uniformly disperses wood-based filler materials with both nano and micron sizes in thermoplastic resins such as polypropylene, contributing to improved durability. 【Application Scenarios】 - Outdoor decks - Exterior wall materials - Fences - Civil engineering materials 【Benefits of Implementation】 - Improved weather resistance - Long-term performance maintenance - Extended maintenance cycles

  • plastic
  • Composite Materials
  • fiber
  • Composites

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Conductive composite material "Wistat"

Conductivity is chemically and physically homogeneous and extremely stable. It enables circuit design and system design as an antistatic and resistive material.

"Wistatt" is a conductive composite material that incorporates the excellent sliding properties and micro-reinforcement characteristics of "Pochicon," along with conductivity and static electricity prevention properties. By forming a three-dimensional mesh structure for conduction bypass, it exhibits extremely stable and homogeneous conductivity. It enables circuit design and system design as an anti-static and resistive component. 【Features】 ■ Homogeneous and stable conductivity ■ Arbitrary resistance value setting ■ Excellent conductivity stability in thermal environments ■ Micro-reinforcement characteristics ■ Excellent friction and wear properties *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials
  • Composite Materials
  • Composites

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Wide and long composite material using heat-formed mat T-die laminate.

Using a maximum width of 2m laminate, capable of manufacturing car floor mats, trunk mats, etc.

Wide and long composite material using T-laminated heat-forming mat (non-woven fabric + PE (polyethylene) laminate) - By attaching PE (polyethylene) laminate to non-woven fabric, free heat forming is possible in subsequent processes. - Maximum width of 2m, total thickness of 2mm (PE laminate thickness of 1mm) - Applications: Car floor mats, trunk mats, etc.

  • Resin processing machine
  • Composites

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Spray coating anti-soiling treatment wide and long composite material

Maximum width of 2m! Anti-soiling treatment possible with spray application.

■Stain Resistance (Stain Resistance + Non-Woven Fabric) - A spray solution with stain resistance, water repellency, antibacterial, and antiviral functions is applied to the non-woven fabric. This allows for the formation of a wide range of functional non-woven fabrics. - Maximum width of 2m, total thickness of 2-5mm, spray amount of approximately 5-50g/m². - Track record: Various functional non-woven materials, etc. For inquiries regarding specifications, prototypes, or estimates, please feel free to contact us!

  • Resin processing machine
  • Composites

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Spray coating water-repellent processing wide and long composite material

Maximum width of 2m! Water-repellent treatment possible with spray application.

■Water Repellent (Water Repellent + Non-Woven Fabric) - A spray solution with anti-soiling, water-repellent, antibacterial, and antiviral functions is applied to the non-woven fabric. This allows for the formation of a wide range of functional non-woven fabrics. - Maximum width of 2m, total thickness of 2-5mm, spray amount of approximately 5-50g/m². - Achievements: Various functional non-woven materials, etc. For inquiries about specifications, prototypes, or quotes, please feel free to contact us!

  • Resin processing machine
  • Composites

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Transcription roll wide and long composite material (carpet fabric + rubber-based resin)

Up to 4m! Slits are also possible.

■Dust control and vehicle option mat (carpet fabric + rubber-based resin) ・Rubber-based resin applied to carpet fabric ・Width of 4m, total thickness of 5-10mm (rubber-based resin thickness 1mm) (slitting is also possible) ・Track record: dust control mats, vehicle option mats

  • Resin processing machine
  • Composites

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Thermal management and static electricity prevention using carbon nanofibers for semiconductors.

Contains carbon nanofibers for heat resistance and static electricity prevention.

Carbon nanofibers (CNF) are functional fillers that form a uniform conductive network in resins due to their excellent dispersibility, enabling stable performance. This contributes to improved thermal conductivity as a thermal management solution in electronic components, as well as effective electrostatic discharge performance required in FOUPs (Front Opening Unified Pods) for semiconductor transport applications. As a high-performance material, it helps solve challenges in a wide range of electrical and semiconductor fields. 【Application Scenarios】 - Strength enhancement and electrostatic discharge applications for FOUPs (semiconductor wafer transport containers) - Various resin components within semiconductor manufacturing equipment (trays, cassettes, guide parts, etc.) - Packaging materials and trays for electronic components - Heat dissipation components for electronic parts and enclosures (thermal management applications) 【Benefits of Implementation】 - Reduced risk of particle adhesion due to electrostatic discharge performance - Reduced performance variation due to excellent dispersibility - Lower risk of device damage from static electricity - Efficient thermal management enabled by improved thermal conductivity

  • Composite Materials
  • Secondary Cells/Batteries
  • plastic
  • Composites

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[Research Material] Global Market for Construction Composite Materials

World Market for Construction Composites: Fibers, Resins, Industrial, Commercial, Residential, Civil Use

This research report (Global Construction Composites Market) investigates and analyzes the current state and outlook for the global construction composites market over the next five years. It includes information on the overview of the global construction composites market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the construction composites market focus on fibers and resins, while the segments by application target industrial, commercial, residential, and civil uses. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa to calculate the market size of construction composites. It also includes the market share of major companies in the construction composites sector, product and business overviews, and sales performance.

  • Other services
  • Composites

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[Research Material] The Global Market for Carbon Fiber Reinforced Composites (CFRP)

Global Market for Carbon Fiber Reinforced Composites (CFRP): Carbon Fiber Reinforced PAN Matrix Composites, Carbon Fiber Reinforced Pitch Matrix Composites ...

This research report (Global Carbon Fiber Reinforced Composite (CFRP) Market) investigates and analyzes the current state and outlook for the global market of carbon fiber reinforced composites (CFRP) over the next five years. It includes information on the overview of the global carbon fiber reinforced composite (CFRP) market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis, among others. The segments by type in the carbon fiber reinforced composite (CFRP) market include carbon fiber reinforced PAN matrix composites, carbon fiber reinforced pitch matrix composites, carbon fiber reinforced resin matrix composites, and others. The segments by application cover industrial, aerospace, electronics, medical, and others. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, to calculate the market size of carbon fiber reinforced composites (CFRP). It also includes the market share of major companies in carbon fiber reinforced composites (CFRP), product and business overviews, and sales performance.

  • Other services
  • Composites

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[Research Material] Global Market for Thermoplastic Resin Composites for Automotive Use

Global Market for Automotive Thermoplastic Resin Composites: Glass Mat Thermoplastic (GMT), Short Fiber Thermoplastic (SFT) ...

This research report (Global Automotive Thermoplastic Resin Composites M) investigates and analyzes the current state and outlook for the global market of thermoplastic resin composites for automotive applications over the next five years. It includes information on the overview of the global automotive thermoplastic resin composites market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the automotive thermoplastic resin composites market include Glass Mat Thermoplastic (GMT), Short Fiber Thermoplastic (SFT), Long Fiber Thermoplastic (LFT), Continuous Fiber Thermoplastic (CFT), and others. The segments by application include Interior, Exterior, Underbody Systems, Chassis Systems, Powertrain Systems/Engine Components, Electrical & Electronics, and others. The regional segments are categorized into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, among others, for the automotive thermoplastic resin composites market.

  • Other services
  • Composites

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[Research Document] Global Market for Microcapsule Phase Change Composite Materials

World Market for Microcapsule Phase Change Composite Materials: Organic, Inorganic, Bio-based, Construction & Building, HVAC, Cold Chain Packaging ...

This research report (Global Micro-capsule Phase Change Composite Materials) investigates and analyzes the current status and outlook for the global market of microcapsule phase change composite materials over the next five years. It includes information on the overview of the global microcapsule phase change composite materials market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the microcapsule phase change composite materials market focus on organic, inorganic, and bio-based materials, while the segments by application cover construction and building, HVAC, cold chain and packaging, thermal storage, textiles, and electronics. The regional segments are divided into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, to calculate the market size of microcapsule phase change composite materials. It also includes information on the market share of major companies in the microcapsule phase change composite materials sector, product and business overviews, and sales performance.

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[Research Material] Global Market for Aluminum Matrix Composites

World Market for Aluminum Matrix Composites: Continuous, Discontinuous, Particulate, Ground Transportation, Aerospace, Thermal Management, Industrial, Others

This research report (Global Aluminum Matrix Composite Market) investigates and analyzes the current state and outlook for the global aluminum matrix composite market over the next five years. It includes information on the overview of the global aluminum matrix composite market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the aluminum matrix composite market focus on continuous, discontinuous, and particulate types, while the segments by application cover ground transportation, aerospace, thermal management, industrial, and others. The regional segments are categorized into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, to calculate the market size of aluminum matrix composites. It also includes the market share of major companies in aluminum matrix composites, product and business overviews, and sales performance.

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[Research Material] Global Market for Advanced Polymer Composites

World Market for Advanced Polymer Composites: Carbon, Glass, Aramid, Automotive, Aerospace & Defense, Electrical & Electronics, Medical, Marine, Others

This research report (Global Advanced Polymer Composites Market) investigates and analyzes the current status and outlook for the global market of advanced polymer composites over the next five years. It includes information on the overview of the global advanced polymer composites market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments of the advanced polymer composites market by type include carbon, glass, and aramid, while the segments by application cover automotive, aerospace & defense, electrical & electronics, medical, marine, and others. The regional segments are categorized into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa, to calculate the market size of advanced polymer composites. It also includes the market share of major companies in advanced polymer composites, product and business overviews, and sales performance.

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[Research Material] Global Market for Basalt Composite Materials

World Market for Basalt Fiber Composites: Basalt Chopped Composites, Basalt Continuous Composites, Automotive Industry, Military Industry

This research report (Global Basalt Composites Market) investigates and analyzes the current state and future outlook of the global basalt composites market over the next five years. It includes information on the overview of the global basalt composites market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the basalt composites market focus on basalt chopped composites and basalt continuous composites, while the segments by application target the automotive industry and military industry. The regional segments calculate the market size of basalt composites by dividing them into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa. The report also includes the market share of major companies in the basalt composites market, product and business overviews, and sales performance.

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