We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Fiber Reinforced Plastics.
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Fiber Reinforced Plastics Product List and Ranking from 69 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
This ranking is based on the number of page views on our site.

Fiber Reinforced Plastics Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
This ranking is based on the number of page views on our site.

  1. TIP composite Co., Ltd. Osaka//Resin/Plastic
  2. 三菱ケミカル コンポジットパーツ本部 Asia事業部 Tokyo//Resin/Plastic
  3. 三協製作所 本社事務所 Kanagawa//Machine elements and parts
  4. 4 双葉電子工業 Chiba//Electronic Components and Semiconductors
  5. 5 羽生田鉄工所 Nagano//Manufacturing and processing contract

Fiber Reinforced Plastics Product ranking

Last Updated: Aggregation Period:Jun 03, 2026~Jun 30, 2026
This ranking is based on the number of page views on our site.

  1. Rapid adoption of CFRP in the FA machinery industry. TIP composite Co., Ltd.
  2. What are the benefits of using CFRP? Introduction of the case of "industrial robot arms." 三菱ケミカル コンポジットパーツ本部 Asia事業部
  3. What are the advantages of using CFRP? Introduction to "CFRP Propellers." 三菱ケミカル コンポジットパーツ本部 Asia事業部
  4. 4 CFRP Cutting Machining Thick Plate "Fercarbo" Isotropic Grade 双葉電子工業
  5. 5 For curing molding of CFRP and more! "HANYUDA Autoclave Series" 羽生田鉄工所

Fiber Reinforced Plastics Product List

61~90 item / All 158 items

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Glassy carbon

Various applications such as guide rings, electrodes for etching, and cleaning materials are available!

Grassy carbon is a unique material with characteristics such as being amorphous (non-crystalline), dust-free, and gas impermeable. Compared to conventional carbon, it is utilized in various new needs and applications such as substrate holders, thermal shields, and susceptors. Please feel free to contact us if you have any inquiries. 【Features】 ■ Lightweight ■ Excellent chemical resistance ■ Gas impermeable ■ High purity ■ Free from outgassing *For more details, please download the PDF or feel free to contact us.

  • Other metal materials
  • Composite Materials
  • Fiber Reinforced Plastics

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Electrode Material for Electrical Discharge Machining 'HK Series'

Excellent discharge machining characteristics with low electrode wear! Easy-to-machine graphite electrode material.

The 'HK Series' handled by Tokai Carbon is a graphite material that is easy to machine during electrode fabrication and has excellent discharge machining characteristics with minimal electrode wear. Graphite is lightweight compared to copper, has a small thermal expansion coefficient, and exhibits minimal thermal deformation. Additionally, it has good machinability, with cutting times approximately one-fifth that of copper, and is easy to finish by hand. 【Features】 ■ Easy machinability ■ Stable discharge machining characteristics ■ Minimal electrode wear ■ ISO9001 and ISO14001 certified *For more details, please refer to the catalog or feel free to contact us.

  • Other polymer materials
  • Fiber Reinforced Plastics

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Heat-resistant composite material "Tokarec"

With one-third the thermal conductivity of heat-resistant copper and low thermal expansion! A heat-resistant composite material that excels in thermal shock resistance and heat resistance!

Tokarec, handled by Tokai Carbon, is an ideal heat-resistant composite material composed of carbon fibers with excellent strength characteristics and a carbon matrix, which maintains its strength even at high temperatures. It is available in products such as sheets, flat plates, cylinders, bolts, and nuts, and can be used in applications such as heat resistance, semiconductors, flexible sheets, and solar cells. 【Features】 - High specific strength and specific elasticity (lightweight and strong) - Excellent thermal shock resistance and heat resistance - Low thermal expansion (high dimensional stability) - Low thermal conductivity (one-third that of heat-resistant copper) - No strength degradation at high temperatures - Low impurities *For more details, please refer to the catalog or feel free to contact us.

  • Composite Materials
  • Fiber Reinforced Plastics

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Specialty Graphite

In many fields such as electronics and precision machinery, we are widely used as lubricants and machine parts!

Graphite is obtained by mixing and molding coke and tar pitch, initially firing it at approximately 1,000°C, and then graphitizing it at about 3,000°C. Graphite is classified into CIP molded products, extruded products, and molded products based on its molding method. Our company produces ultra-large materials and various shapes. Furthermore, we respond to your needs by performing secondary treatments such as high-purity processing and coating treatment. 【Features】 ■ High strength at high temperatures ■ Excellent electrical conductivity ■ Superior thermal shock resistance ■ Chemically stable and resistant to chemicals ■ Self-lubricating properties ■ Moderate workability *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
  • Fiber Reinforced Plastics

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Solid SiC

Thick meat, large diameter, and complex shapes, accommodating various applications! High-purity SiC produced by the CVD method.

"Solid SiC" was developed using our unique CVD technology. It excels in high strength, heat resistance, plasma resistance, and chemical resistance, demonstrating high performance across a wide range of applications. This product, optimized for semiconductor devices, is expected to expand the possibilities of semiconductors. 【Features】 ■ Excellent high strength, heat resistance, plasma resistance, and chemical resistance ■ High performance across a wide range of applications ■ Contributes to particle reduction and improved lifespan ■ High thermal conductivity and thermal shock resistance *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
  • Other machine elements
  • Fiber Reinforced Plastics

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Proposal for Weight Reduction of Aluminum Plates through Reinforcement with CF Sheets (CFRP Material)

Using a simple bonding method! CFRP material is adhered to a material thinner than aluminum, achieving weight reduction while maintaining the strength of the original material.

This document discusses the lightweighting of aluminum plates reinforced with CFRP materials using a "simple bonding method." By adhering CFRP materials to thinner substrates than conventional aluminum materials, it is possible to maintain the same strength as the original material while achieving additional weight reduction. For more details about the simple bonding method, please contact us. [Overview] ■ Joining - Using the simple bonding method, two sheets of CFRP material are bonded to both sides of a 0.5mm thick aluminum plate with the fiber direction of the CFRP material rotated 90 degrees. ■ Three-point bending strength of "CFRP reinforced aluminum plate: 0.5+0.5+0.5" - Approximately 80N ■ Results - This corresponds to the three-point bending strength of an aluminum plate only with a thickness of about 1.8mm, allowing for a weight reduction of approximately half by replacing it with the "CFRP reinforced aluminum plate." *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract
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Lightweight and high strength compared to metal! Distribution of the Carbon (CFRP) Utilization Guidebook.

Light! Strong! Rust-free! An explanation of the basics of CFRP (carbon fiber reinforced plastic).

The era has arrived where carbon (CFRP), which I previously thought was too expensive and difficult to obtain, can now be easily and affordably ordered! As a new material to replace metals, please utilize it for lightweighting parts and reducing costs. 【Contents】 ■ What is carbon (CFRP)? ■ Main characteristics of CFRP (advantages, disadvantages) ■ What products are used in? ■ Difference between dry carbon and wet carbon ■ About the prepreg material ■ Carbon Lab.jp CFRP product information ■ TIPS Types of carbon fibers Surface weave structure of carbon and performance Common issues that arise during carbon machining ■ Strengths of Carbon Lab.jp services Additionally, we are offering free carbon sample parts for those who want to know about processing quality and strength. You can apply for the free samples from the link below. Free Sample Gift https://cfrp-japan.com/contact/present202105/?utm_source=ipros

  • Composite Materials
  • Fiber Reinforced Plastics

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CFRP as an alternative to metals like aluminum and stainless steel | Free parts giveaway

Carbon (CFRP) materials, which have various features such as high strength, long lifespan, and lightweight, are recommended as alternatives to metals like aluminum and stainless steel!

CFRP (Carbon Fiber Reinforced Plastic) has characteristics that make it superior in both strength and rigidity compared to metals like steel and aluminum, as well as glass fibers, while also being lightweight. ■ Applications/Track Record Drones RC Cars Robots Bicycles Motorcycles Airsoft Guns Camping Gear ■ Differences from Aluminum and Stainless Steel The specific gravity of CFRP (carbon) is around 1.8, which is about one-fourth to one-fifth that of iron. It surpasses iron (and aluminum) in both strength and elastic modulus, making it lightweight and highly strong. Additionally, it has a high shock absorption rate, excellent heat resistance, and high X-ray transmittance. Moreover, unlike metal materials, it is rust-resistant and corrosion-resistant, which contributes to its durability. For more detailed features, reference prices, specifications, and processing examples, please refer to the catalog. Alternatively, feel free to contact us through our official website. Official website: https://cfrp-japan.com/ We also offer free sample parts for those interested in knowing about processing quality and strength. Free samples can be requested through the link below.

  • plastic
  • Fiber Reinforced Plastics

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[Production Example] Carbon RC Parts | Free Sample Parts Giveaway

Cheaper than I expected! I requested the production of RC parts, which I often failed to make myself.

This is an example of introducing carbon into the parts of a remote-controlled car (RC). 【Challenges Before Introduction】 ■ High difficulty in processing with homemade parts, leading to many failures. 【Reasons for Choosing Carbon Lab.jp】 ■ The staff's response was polite and speedy. ■ Reasonable pricing for estimates (affordable). ■ They created the drawings for us. 【Results and Effects After Introduction】 ■ Parts were manufactured according to our order. ■ We were able to have a pre-meeting, which gave us peace of mind. Other examples are also introduced in the PDF materials and on the official website. Please check the link below. https://cfrp-japan.com/case/ Additionally, we are offering free carbon sample parts for those who want to know about processing quality and strength. We have two types available: carbon sheets and round pipes. Please apply through the link below. https://cfrp-japan.com/contact/present202105/ For the full text of the case study, please check the link below.

  • Composite Materials
  • plastic
  • Fiber Reinforced Plastics

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[Case Study] Introducing Carbon to Robots | Free Sample Parts Giveaway

A robot arm made with CFRP, which has excellent weight-to-strength ratio! A product with beautiful patterns that catches the eye.

This is a case study of introducing carbon plates (CFRP) to robots. [Challenges Before Introduction] - High costs for small lot orders with other materials - High costs when using titanium to increase weight-to-strength ratio [Reasons for Choosing Carbon Lab.jp] - Good balance of accuracy, price, and delivery time - Processing it myself would result in waste material, making it economically unfeasible [Results and Effects After Introduction] - Able to order CFRP materials with excellent weight-to-strength ratio at a low cost - The carbon's patterned texture is beautiful and eye-catching Other case studies are also introduced in the PDF materials and on the official website. Please check the link below. https://cfrp-japan.com/case/ Additionally, we are offering free carbon sample parts for those who want to know about processing quality and strength. We have two types available: carbon plates and round pipes. Please apply through the link below. https://cfrp-japan.com/contact/present202105/ For the full text of the case study, please refer to the link below.

  • Composite Materials
  • Fiber Reinforced Plastics

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[Production Example] Carbon Drone Frame | Free Sample Parts Giveaway

Changed from 3DP to lightweight and strong carbon to meet the drone's weight limit.

This is an example of introducing carbon (CFRP) into a drone frame. [Challenges Before Introduction] ■ Lightweighting is necessary due to weight restrictions in drone regulations. ■ 3D printed products have issues with strength. ■ In-house production incurs processing costs and has CNC noise problems. [Reasons for Choosing Carbon Lab.jp] ■ Quick response from order to quotation. ■ They accommodated options that are usually not supported. [Results and Effects After Introduction] ■ Carbon was cut out in the designed shape. Other examples are also introduced in the PDF materials and on the official website. Please check the link below. https://cfrp-japan.com/case/ Additionally, we are offering free carbon sample parts for those who want to know about processing quality and strength. We have two types available: carbon sheets and round pipes. Please apply via the link below. https://cfrp-japan.com/contact/present202105/ For the full text of the case study, please refer to the link below.

  • Composite Materials
  • plastic
  • Fiber Reinforced Plastics

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Reasons and results for changing from 3D printed parts to carbon parts.

More people are switching from 3D printed parts with concerns about strength to carbon fiber reinforced plastic (CFRP) parts.

CFRP (carbon fiber reinforced plastic) has superior strength and rigidity compared to metals like steel and aluminum, as well as glass fibers, while also being lightweight. Recently, more people are replacing parts made with 3D printing with carbon-made ones. This article introduces the reasons for this change and the results and effects after the switch. <Challenges of 3D Printed Parts> - Very expensive and high production costs - Insufficient strength <Results and Effects After Switching to Carbon> - Increased strength of parts and achieved weight reduction - Successful cost reduction Many people had given up on producing with 3D printers due to concerns about strength and high costs, but outsourcing carbon processing has resolved these issues. More detailed case studies are available on our official website, so please feel free to take a look. https://cfrp-japan.com/case/ Additionally, we are offering free carbon sample parts for those who want to know about processing quality and strength. You can apply through the link below.

  • plastic
  • Fiber Reinforced Plastics

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[Production Example] Motorcycle oil cooler mounting bracket made of carbon.

Manufacturing a bracket for installing the oil cooler in carbon | Towards compactness and weight reduction.

【Challenges Before Implementation】 ■ Aluminum sheets do not achieve strength unless they are thickened or ribs are added. ■ Aluminum will corrode if not painted. 【Reasons for Choosing Carbon Lab.jp】 ■ Reasonable pricing and fast delivery speed. 【Results and Effects After Implementation】 ■ Finished very compact and lightweight. ■ Can subtly showcase carbon with a matte finish. We also introduce many other cases in our PDF materials and official website. Please check the link below. https://cfrp-japan.com/case/ Additionally, for those who want to know about processing quality and strength, we are offering free carbon sample parts. We have two types available: carbon sheets and round pipes. Please apply through the link below. https://cfrp-japan.com/contact/present202105/ For the full text of the case study, please check the link below.

  • plastic
  • Composite Materials
  • Processing Contract
  • Fiber Reinforced Plastics

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[Use Cases for Semiconductors] Carbon Fiber/Carbon Fiber Composite Material 'CFRP'

Reduction of takt time is possible! Lightweighting through CFRP application, reduction of deflection, and improvement of vibration damping.

We will introduce examples of the use of carbon fiber/carbon fiber reinforced plastics (CFRP) for semiconductors. Mitsubishi Chemical provides a variety of carbon fibers by utilizing both PAN-based and pitch-based raw materials. The characteristic properties of carbon fiber are that it is lightweight, has high strength, and high elasticity. As carbon fiber composite materials combined with resin, they are widely used in aerospace, sports and leisure, and industrial applications. 【Product Example】 ■ Application: Semiconductor manufacturing equipment ■ Adopted part: Pick ■ Required characteristics: Lightweight/high rigidity/vibration damping/heat resistance ■ Size: Total length 400mm/total width 150mm/total height 2mm ■ Weight: 80g *For more details, please refer to the PDF document or feel free to contact us.

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Introduction of high heat-resistant CFRP using phenolic resin.

We are featuring applications of CFRP and high heat-resistant CFRP using phenolic resin!

The demand for lightweight materials is increasing in mobility applications such as aircraft and automobiles, as well as in industrial machinery applications that require responses to the sophistication and complexity of manufacturing processes along with efficiency improvements. The use of CFRP, which combines lightness and strength, is expected to advance further in the future. Mitsubishi Chemical has developed a CFRP with high heat resistance that maintains its properties with minimal degradation even at 300°C by using phenolic resin as the base resin. This CFRP, which uses phenolic resin, not only possesses the high thermal conductivity, high rigidity, and lightweight characteristics typical of CFRP based on epoxy resin but also offers high heat resistance, enabling solutions to customer challenges that have been difficult to address until now. [Contents] ■ Introduction ■ Applications of Mitsubishi Chemical's CFRP ■ High heat-resistant CFRP using phenolic resin ■ Conclusion *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
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Key Points for CFRP Component Development (Manufacturing Edition) *Free Download Available

We will also introduce many frequently asked questions! We will explain the points to consider when actually manufacturing CFRP.

This document explains the key points of CFRP component development. By correctly understanding the suitable shapes for CFRP, possible processing methods, and assembly content, cost performance can be improved, increasing the likelihood of adopting CFRP. We have explained these points in this document, so please take a moment to read it. 【Contents (partial)】 ■ Introduction ■ CFRP Manufacturing Process (Prepreg) ■ Prepreg and Lamination ■ Molding Process ■ Processing Steps Our company has established a supply chain that encompasses everything from CFRP molding to post-processing, and we can provide one-stop support for the development of CFRP from design to prototyping and mass production. *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
  • Engineering Plastics
  • Fiber Reinforced Plastics

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Free distribution of materials "Basic Knowledge of CFRP" and "Key Points in CFRP Component Development."

For those considering the design and development of components using CFRP (carbon fiber reinforced plastic). An explanation of the basic knowledge and key points in design and manufacturing.

On this page, we present three documents summarizing key points to know about the development of components using CFRP, which is active in various fields such as aerospace, automotive, marine and shipbuilding, and civil engineering and architecture. "Basic Knowledge of CFRP" This document provides an overview for those unfamiliar with CFRP, including mechanical properties compared to other materials, images of weight reduction by shape, application examples, and various data. "Key Points in CFRP Component Development (Design Edition)" Focusing on the differences from isotropic materials such as metals and plastics, this document explains the points necessary for designing to maximize the properties of CFRP. "Key Points in CFRP Component Development (Manufacturing Edition)" This document introduces essential points for creating products with appropriate design and cost, along with abundant examples of molding, processing, and assembly. *We encourage engineers involved in the design and development of components to take a look. You can view it immediately via the <PDF Download>. Feel free to contact us with any inquiries.

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  • Composite Materials
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Invitation to Exhibit at SAMPE Japan Advanced Materials Technology Exhibition 2025

We propose new values such as high functionality and lightweight design of components through numerical simulations for component design and our unique hollow molding technology!

Mitsubishi Chemical Corporation will exhibit at the composite materials exhibition "SAMPE Japan Advanced Materials Technology Exhibition 2025," which will be held at Tokyo Big Sight from December 3 (Wednesday) to December 5 (Friday), 2025. Our theme will be "Connecting," showcasing high-strength, high-elasticity carbon fibers and matrix resins that maximize their performance. Additionally, we plan to introduce plant-based resins, thermoplastic matrix resins, high heat-resistant and high thermal conductivity carbon materials, and their molded products. We believe we can provide information that will be useful for your future product considerations. We sincerely invite you to visit us during this busy time. 【Event Overview】 ■ Dates: December 3 (Wednesday) to December 5 (Friday), 2025, 10:00 AM to 5:00 PM ■ Venue: Tokyo Big Sight, South Hall ■ Address: 3-11-1 Ariake, Koto-ku, Tokyo 135-0063 ■ Admission Fee: 1,000 yen (Free for registered attendees, invitation holders, and junior high school students and below) *For more details, please download the PDF or feel free to contact us.

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Carbon fiber reinforced plastic

Lighter and stronger than steel! Used in aerospace, automotive, and industrial machinery.

"Carbon fiber reinforced plastic" is a product that is gaining attention among advanced composite materials (ACM). It is a material that enhances resin (plastic) with carbon fibers, providing greater strength and rigidity than resin alone, and can achieve a lighter weight compared to metals such as iron and aluminum in terms of strength and rigidity. Please feel free to contact us when you need assistance. 【Advantages / Benefits】 ■ Lightweight and strong ■ Excellent properties ■ Superior dimensional stability ■ Performance varies depending on the type, position, quantity, and orientation of the carbon fibers used *For more details, please refer to the PDF document or feel free to contact us.

  • plastic
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Carbon fiber reinforced carbon composite material

A material that combines lightweight, high strength, and heat resistance. It contributes to energy savings, increased productivity, and reduced manufacturing costs.

"Carbon Fiber Reinforced Carbon Composite" is a carbon material that is reinforced with graphite and sintered. It is lightweight, high-strength, and highly elastic, with excellent friction properties, showing no decrease in strength even in environments of 2000°C. It is commonly used as a substitute for conventional metal materials, ceramics, and resins in advanced heat-resistant materials and sliding materials. Additionally, we handle "Micro Carbon Spring Washers," which have excellent biocompatibility, and we are involved in various businesses such as auxiliary materials for heat treatment processes, export sales of heat-resistant products, and trade agency services. 【Features】 ■ Lightweight: Specific gravity is about 1/5 that of iron ■ Low thermal expansion rate: Composed of carbon ■ Excellent chemical resistance: Composed of carbon ■ High thermal shock resistance: Strong against rapid cooling ■ Excellent heat resistance: Usable up to 2000°C in vacuum or inert gas environments *For more details, please download the PDF or feel free to contact us.

  • Composite Materials
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CFRP product manufacturing service

Strong in small lot, single item production, and initiatives with a diverse range of handmade processes!

Our company handles all aspects of CFRP product manufacturing. CFRP is a composite material made by impregnating carbon fibers with thermosetting resin. It excels in strength and elasticity, and has the advantage of being able to be designed lighter compared to materials like iron and aluminum, while maintaining the same strength and rigidity. We also handle various prototypes and testing (of prototypes or products), as well as manufacturing and mass production (subject to consultation). 【Equipment Available】 ■ Machining Center ■ 3D Measuring Instrument ■ Autoclave ■ Plotter *For more details, please download the PDF or feel free to contact us.

  • Contract manufacturing
  • Calibration and repair
  • Fiber Reinforced Plastics

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High-temperature furnace (vacuum furnace, gas atmosphere furnace, etc.) carbon parts

We support the processing of all carbon parts! We provide the necessary carbon parts.

At Anori Carbon Co., Ltd., we provide the necessary "high-temperature furnace (vacuum furnace, gas atmosphere furnace, etc.) parts" for our customers. We offer a wide range of carbon materials, including graphite materials suited to physical properties, carbon insulation materials tailored to furnace shapes, as well as C/C composites and felts. With our extensive knowledge and experience in furnace parts accumulated over many years, we can manufacture parts according to your requirements using various processing machines. Additionally, our staff with design expertise will assist you from the design consultation stage. 【Features of Anori】 ■ Materials: Capable of processing all types of carbon parts ■ Processing technology: Equipped with various processing machines to handle complex shapes ■ Delivery response: Quick response by experienced operators, including expedited options For more details, please refer to our catalog or feel free to contact us.

  • Industrial Furnace
  • Fiber Reinforced Plastics

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What is CFRP / Carbon Fiber Reinforced Plastic?

Composite materials are materials that are "designed"! We take pride in being at the top level in the industry when it comes to the design and processing of CFRP.

CFRP, or carbon fiber reinforced plastic, is a lightweight, strong, and corrosion-resistant advanced functional material. Our company is committed to being the best partner for our customers' product development, engaging in total application development from processing to design and assembly. We not only focus on speedy and low-cost development but also continuously study cutting-edge materials to provide optimal solutions for our customers' development plans. 【Technology Introduction】 ◆ A lightweight and high-rigidity CFRP robot hand that reduces amplitude half-life to "1/3" We have developed a structural product with high vibration damping properties without compromising on lightweight and high rigidity in a CFRP square tube structure hand. *Comparison results with our existing structural products are available in the downloadable materials.

  • Composite Materials
  • Fiber Reinforced Plastics

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Comparison of properties of CFRP and various materials

Free download of technical materials! A clear explanation of the characteristics and properties of CFRP and comparisons with various materials!

CFRP (Carbon Fiber Reinforced Plastic) is said to be a lightweight, strong, and corrosion-resistant advanced functional material. Due to its excellent mechanical properties and outstanding characteristics derived from carbon, it is widely used. This document not only explains the excellent features and properties of CFRP but also includes comparative materials with various materials such as GFRP, AFRP, and aluminum alloys. We hope this will be helpful in your material selection! [Featured Materials (Partial List)] ■ FRP Advanced Composite Materials ■ High-Performance Metals ■ Performance Engineering Plastics ■ Inorganic Materials *For more details, please download the catalog or contact us.

  • Composite Materials
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Moldable shapes of CFRP: Specially shaped molded products

We will mold CFRP, GFRP, and other molded products with a free-form opening surface.

【Overview】 We accept processing into various shapes according to customer specifications. In particular, for round and square pipes commonly used as structural materials such as trusses, we have a wide variety of molds available for shaping and respond quickly to orders. We can also shape into polygons such as triangles and hexagons, as well as elliptical shapes. ●Special Shaped Molded Products We mold CFRP, GFRP, and other products with unique shapes featuring versatile opening surfaces, as shown in the photo, using our distinctive internal and external pressure molding method. ★For more details, please request materials or download the documents★

  • Composite Materials
  • Fiber Reinforced Plastics

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Moldable shapes of CFRP: Optical equipment housing

We will manufacture enclosures and structural products with minimal dimensional changes at temperature, utilizing the low thermal expansion characteristics that are one of the features of CFRP.

【Overview】 We accept processing into various shapes according to customer specifications. In particular, for round and square pipes, which are often used as structural materials such as trusses, we have a wide variety of molds available for shaping and respond quickly to orders. We can also shape into polygons such as triangles and hexagons, as well as elliptical shapes. ● Optical Equipment Enclosures We utilize the low thermal expansion properties of CFRP to manufacture enclosures and structural products that have minimal dimensional changes with temperature. ★ For more details, please request materials or download the documents ★

  • Composite Materials
  • Fiber Reinforced Plastics

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Sankyo Manufacturing Co., Ltd. Company Profile

Leave the analysis/design, molding, and processing assembly of products made from difficult-to-machine materials to us.

Sankyo Manufacturing Co., Ltd. conducts analysis, design, molding, and assembly of products made from materials such as plastics, glass fiber reinforced composites (GFRP), carbon fiber reinforced composites (CFRP), and difficult-to-cut materials like non-ferrous metal ceramics. Utilizing processing technologies developed over 40 years, we strive to provide prompt and suitable solutions to meet the diverse needs and requests of our customers, ranging from functional components that support daily life to advanced high-function structural materials. 【Business Activities】 ■ Design, molding, processing, and assembly of various plastics ■ Design, molding, processing, and assembly of various composites ■ Grinding and cutting processing of various new materials ■ Design and manufacturing of automatic machines and conveyors *For more details, please refer to the PDF document or feel free to contact us.

  • plastic
  • Composite Materials
  • Other conveying machines
  • Fiber Reinforced Plastics

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CFRP Cutting Machining Thick Plate "Fercarbo" Isotropic Grade

Standard grade of Felcarbo. It is a plate with minimal strength variation on the surface.

**Features** - Solves the machining difficulties associated with CFRP, enabling high-precision processing using carbide cutting tools typically used for metal machining. - Achieves thick plate formation of up to 45mm by using thick felt-like carbon fibers, allowing for greater freedom in processing shapes while being offered at a lower price than conventional CFRP. - Even when compared to lightweight aluminum alloys (A5052), its specific gravity is only about half. At a size of Φ450×10, it weighs approximately 2.1kg, making it very lightweight, with a tensile strength about 1.3 times that of aluminum alloys. - The coefficient of thermal expansion is approximately 7.5×10^(-6)/℃, which is about 30% of that of aluminum alloys and about 60% of carbon steel. Compared to common metals, it exhibits high dimensional stability against temperature changes. - Other features include: - Thermal insulation - Non-magnetic - Corrosion resistance (no rust or corrosion occurs)

  • fiber
  • Composite Materials
  • Other polymer materials
  • Fiber Reinforced Plastics

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High-performance composite 'CDM-ESD' usable at temperatures above 300 degrees.

Lightweight, low heat absorption, and low thermal conductivity! High heat resistance and excellent chemical resistance. Suitable as transport pallets or jigs for various substrates.

The "CDM-ESD" is a product that demonstrates high performance in high-temperature environments above 300°C. It can also be used as a processing material for mechatronic components. "CDM" is a composite material made of glass fibers and resin structures with high mechanical resistance values. It was developed as a raw material for rapid and accurate substrate insertion jigs. 【Features】 ■ Electrostatic countermeasure material - Surface resistance value: 10^5 to 10^9 Ω/□ ■ Low deformability ■ High dimensional stability ■ Excellent solvent resistance ■ Not subject to RoHS directive *For more details, please refer to the PDF document or feel free to contact us.

  • Printed Circuit Board
  • Processing Jig
  • Other cutting tools
  • Fiber Reinforced Plastics

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