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Engineering Plastics(pa) - List of Manufacturers, Suppliers, Companies and Products | IPROS GMS

Last Updated: Aggregation Period:Jan 21, 2026~Feb 17, 2026
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Engineering Plastics Product List

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Engineering plastic "PA"

Introducing a plastic that has heat resistance, mechanical strength, excellent toughness, and outstanding sliding properties.

PA resin is an engineering plastic that has heat resistance, mechanical strength, excellent toughness, and outstanding sliding properties. Nylon is a crystalline thermoplastic resin with low specific gravity, high heat resistance, and excellent impact characteristics. It has high chemical resistance (especially oil resistance), wear resistance, and a low friction coefficient. Due to the well-balanced nature of these properties, it is a commonly used material among engineering plastics. 【Features】 ■ Excellent toughness and impact resistance ■ Excellent oil, solvent, and chemical resistance ■ Tracking resistance and arc resistance ■ Excellent sliding properties ■ Heat resistance (short-term and long-term use temperatures: 170°C, 100°C) *For more details, please refer to the PDF document or feel free to contact us.

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Engineering plastic

Aiming for a balance between quality and price!

Materials handled: Engineering plastics PA6, PA66, POM, PC, PPE, U-PE, etc. Super engineering plastics PEEK, PPS, PEI, PI, PSU, PTFE, etc. General-purpose plastics HDPE/PE, PP, PS, ABS, PVC, PMMA, PET, etc. Thermosetting resins PU, EP, SI, PUR, etc.

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*Case Study Presentation* *New Material! PA6 Resin with Glass Fibers for 3D Printers*

Introducing the 3D printer spherical PA6 particles "Trepal® PA6 (glass fiber) resin," which excels in strength, heat resistance, and surface smoothness!

◆ Features ◆ - High surface smoothness after molding, allowing for reduced finishing time in post-processing. ◆ Molding Method ◆ - PBF method ◇ Recommended for customers with such challenges! ◇ - The 3D printer material "Nylon 12" using the SLS method has low strength and heat resistance, making it unsuitable for evaluation prototypes. - Desire to shorten surface finishing time for powder sintering layered molding, etc. * There are also increasing examples of adopting PPS resin molding using the same PBF method! ↓ The latest adoption examples of PPS resin molding can be found here. Insulating parts for transformers https://www.yasojima.co.jp/field-vehicle/insulating_parts/ Impellers https://www.yasojima.co.jp/field-vehicle/impeller/ Insulators https://www.yasojima.co.jp/field-vehicle/insulator/

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Injection Molding Resin Features

Lightweighting, cost reduction, CO2 reduction, etc.! We can propose metal alternatives for automotive parts.

We would like to introduce the 'resins' handled by Tada Plastic Industry. Our lineup includes "PA6," which excels in chemical resistance, toughness, impact resistance, and flexibility, as well as "PPS (GF30% to 65%)," which has excellent heat resistance and high-temperature properties. We can propose metal alternatives for automotive parts. Please feel free to contact us when needed. 【Features】 ■ PA6: Excellent in chemical resistance, toughness, impact resistance, and flexibility ■ PA66: Excellent in chemical resistance, with superior heat resistance and mechanical strength compared to nylon 6 ■ PBT: Excellent heat resistance, and we can also propose PBT (with GF) ■ PC (Polycarbonate): Excellent transparency, impact resistance, heat resistance, and flame resistance ■ POM (Polyacetal): Low water absorption, excellent sliding properties, and wear resistance *For more details, please refer to the PDF materials or feel free to contact us.

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A comprehensive summary of high-performance resin materials used in the aerospace industry.

Achieving carbon neutrality! Introducing our high-performance plastics.

We would like to introduce high-performance resin materials used in the aerospace industry that we handle. Our lineup includes "PEEK," used in turbine blades, "PPS," used in thermal insulation materials, and "PA66," used in fittings. While some grades can be very expensive, there are many types available in general-purpose grades, so we hope you will consider using them. 【Resin Materials We Handle】 ■PEEK ■PPS ■PA66 (Nylon) ■POM *For more details, please refer to the PDF document or feel free to contact us.

  • 航空宇宙業界でも用いられる高性能樹脂材料の総まとめ2.PNG
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F Plus Inc. Usage Performance Materials

Introducing resins with a proven track record in mass production! We meet a wide range of needs by leveraging the characteristics of the resins.

At F Plus Co., Ltd., we respond to a wide range of needs by focusing on engineering plastics, which are thermoplastic resins, and leveraging the characteristics of each resin. Here is an introduction to the resins we have a track record of mass production with. 【Materials with Usage Records】 ■General-purpose Resins  ・ABS (Acrylonitrile Butadiene Styrene)  ・PP (Polypropylene)  ・HDPE (High-Density Polyethylene) ■Engineering Resins  ・PBT (Polybutylene Terephthalate)  ・PA (Polyamide)  ・POM (Polyacetal)  ・PC (Polycarbonate)  ・PPO (Polyphenylene Oxide)  ・TPE (Thermoplastic Elastomer)  ・TPO (Thermoplastic Polyurethane Elastomer)  ・PET (Polyethylene Terephthalate)  ・PC/PET (Alloy Material) ■Super Engineering Resins  ・LCP (Liquid Crystal Polymer)  ・PPS (Polyphenylene Sulfide) *For more details, please refer to the PDF materials or feel free to contact us.

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Fluororesin, resin additive, engineering plastic

"Leave all resin matters to us!!" Fluororesin, resin additives, engineering plastics.

Currently, our company is collaborating with partners in Japan, Europe, India, and China to customize the manufacturing and sales of fluororesins, resin additives, and engineering plastics. We also offer small quantity orders and contract manufacturing, so please feel free to contact us.

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Problem-Solving Materials: Utilizing 3D Data Part 9 | Challenges of Material Costs and Continued Utilization

Challenges in utilizing 3D printers: How to use "high-performance materials [Nylon (PA: Polyamide)]" at low cost?

This document is a series that proposes solutions to various challenges faced in production sites, from identifying issues to finding resolutions. In the "3D Data Utilization Edition," we will introduce various solutions to challenges in manufacturing through the use of 3D data. [Document Overview] New models are continuously being announced, and 3D printers are evolving daily in terms of quality, speed, and a wide range of materials. In recent years, many high-performance materials known as engineering plastics have been released, expanding their applications beyond just shape verification. However, the models that can utilize these high-performance materials are limited, and there are many voices expressing concerns such as, "The material costs are too high to produce," and "The cost of introducing the equipment is so high that it cannot be realized." Therefore, this document will explain the issues that arise when utilizing high-performance materials and the varying material costs depending on the manufacturing methods, as well as introduce solutions for continuously operating these at low costs. *You can download the document using the button below.

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【English Market Research Report】Global Market for PA 66/6

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The global market size for PA 66/6 was valued at 32.6 billion USD in 2022 and is projected to grow from 34.69 billion USD in 2023 to 56.98 billion USD by 2031, with a CAGR of 6.40% during the forecast period (2024-2031). Polyamide 6 (PA6) boasts a diverse range of physical and chemical properties suitable for various applications, with approximately 6.6 million tons produced globally, accounting for about 60% of the world's polyamide production. PA 66, which corresponds to this polyamide, is widely used in the automotive, plastics, and textiles segments. A notable difference from PA 6 is its greater molding shrinkage capability and improved heat resistance due to its more crystalline structure. These differences in properties make it widely utilized in applications requiring high-performance polymers, such as battery modules, friction bearings, conveyor belts, and luggage.

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Introduction to PAI (Polyamide Imide)

Introduction to PAI (Polyamide Imide)

PAI is a super engineering plastic that boasts the highest mechanical strength in unfilled conditions. With a high glass transition temperature of 280°C, it exhibits excellent mechanical strength even at elevated temperatures. Additionally, its superior wear resistance can be maintained at high temperatures, and it possesses self-lubricating properties, making it suitable for use as oil-free sliding components at high temperatures. It is also compliant with food hygiene regulations.

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Engineering plastic "Vestal G"

Can be used for various applications such as food processing machinery, construction machinery, and machine tools!

"Bestarl G" is an engineering plastic that excels in sliding properties and wear resistance, achieved by dispersing a unique lubricant in a polyacetal copolymer. It can be used in various applications such as rotating parts and contact sliding parts in OA equipment and general industrial machinery. It is expected to be suitable for high-load applications and to extend the lifespan of sliding components. 【Characteristics (excerpt)】 ■ Specific gravity: 1.38 ■ Tensile strength (MPa): 54 ■ Elongation (%): 50 ■ Compressive strength (MPa at 5% deformation): 74 ■ Flexural strength (MPa): 72 ■ Izod impact strength (J/m): 90 *For more details, please refer to the PDF document or feel free to contact us.

  • エンジニアリングプラスチック『べスタールG』2.PNG
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Super Engineering Plastic 'MEP-PEEK'

Very high heat resistance with a continuous use temperature of 240°C! It also has excellent chemical resistance.

"MEP-PEEK" is a super engineering plastic that combines excellent mechanical properties and dimensional stability. It can be used in various fields such as semiconductor and liquid crystal manufacturing equipment. It has flame retardancy and radiation resistance. Please feel free to contact us when you need assistance. 【Features】 ■ High strength ■ Chemical resistance ■ Heat resistance *For more details, please refer to the PDF document or feel free to contact us.

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Low Strain PEEK Resin [Price list for sheets and rods available] Ishihara Chemical

The PEEK resin handled by our company is characterized by a significant reduction in deformation during machining due to "residual strain," achieved through our unique extrusion molding process.

PEEK resin is a representative of super engineering plastics and exhibits excellent performance in every aspect. PEEK resin (Peak) has the following characteristics: ≪Features≫ ◎Chemical resistance... Resistant to acids/bases except for high-temperature concentrated sulfuric acid ◎Mechanical properties... Impact resistance, creep resistance, wear resistance, etc. ◎Heat resistance... Usable in pressurized hot water and steam ◎Machinability and dimensional stability ◎Radiation resistance ◎Flame retardancy Due to these characteristics, PEEK resin has a proven track record in various fields such as semiconductor equipment, automotive, electronic components, nuclear power, and food-related industries. *Raw material: VICTREX Our company offers material sales of sheets/rods and shape processing according to your preferences. We also provide high-grade PEEK with added glass fibers and carbon fibers as made-to-order products.

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Polyphenylene sulfide

It can withstand most acids and alkalis! It is a material with excellent long-term heat resistance.

"Polyphenylene sulfide" is a high-performance plastic that excels in long-term heat resistance as well as resistance to acids and alkalis. The load deflection temperature is 260 degrees with 40% glass fiber, and even without fillers, it is 112 degrees. Even without the use of flame retardants, it has flame resistance equivalent to UL94V-0. 【Features】 ■ Excellent long-term electrical properties ■ Flame resistance equivalent to UL94V-0 ■ Can withstand most acids and alkalis except concentrated nitric acid *For more details, please refer to the PDF document or feel free to contact us.

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Materials for ventilators and various medical devices.

A wide variety of products are available, including face shields, masks, and materials suitable for 3D printing!

At Nagase Plastics Co., Ltd., we handle materials for ventilators and various medical devices. "PSU," "PES," and "PPSU" are suitable for transparent and sterilizable parts such as connectors, containers, and chambers that are appropriate for contact with patients. Additionally, by using "PSU" and "PPSU Film," we have made disposable face shields, which were previously in short supply, disinfectable, sterilizable, and reusable. 【Materials Handled】 ■PSU, PES, PPSU ■PEEK, PARA, PPA ■PSU, PPSU Film ■PTFE, PVDF ■PFPE ■PPSU, PEEK, PVDF Filament *For more details, please refer to the PDF materials or feel free to contact us.

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Engineering plastic 'MC501CD R2/R6'

For applications requiring prevention of static electricity accumulation and conductive performance! Plastics with low volume resistivity.

"MC501CD R2/R6" is an engineering plastic that adds a carbon-based filler to the MC901 base, providing conductivity and static prevention. The filler is uniformly dispersed, ensuring consistent resistance values at any location, and it can be safely used even after machining. Since the filler is carbon-based, unlike types coated with conductive paint or those filled with surfactants, there is no change in resistance over time, and even if the surface wears, the resistance value remains unchanged. [Features] ■ Low resistance value ■ Uniform performance ■ Stability of resistance value *For more details, please download the PDF or feel free to contact us.

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Engineering plastic "MC901/MC900NC"

The basic grade of MC nylon polymerized and molded under atmospheric pressure! It is a 6 nylon with excellent mechanical strength and durability.

The "MC901/MC900NC" is a basic grade of MC nylon, polymerized and molded from nylon monomer as the main raw material under atmospheric pressure. Compared to general nylon 6, it is an engineering plastic that has improved mechanical strength, wear resistance, thermal properties, and chemical characteristics. It has self-lubricating properties and excellent sliding performance, demonstrating outstanding wear resistance even under high loads, and can withstand continuous use temperatures of up to 120°C. Additionally, it has good chemical resistance, making it less susceptible to organic solvents, oils, and alkaline chemicals. 【Features】 ■ Mechanical strength ■ Wear resistance ■ Heat resistance ■ Chemical resistance *For more details, please download the PDF or feel free to contact us.

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Engineering plastic "Eltalite® PET-P"

It is suitable for parts that require good dimensional stability and high precision!

"Eltalite® PET-P" is an engineering plastic made from polyethylene terephthalate with a crystalline structure, offering good dimensional stability and suitable for parts that require high precision. It uses raw materials that comply with FDA 21CFR 177.1630. The material has low water absorption and linear expansion coefficient, resulting in minimal distortion. 【Features】 ■ Dimensional stability ■ Excellent wear resistance ■ Excellent mechanical strength ■ High dielectric strength ■ Complies with FDA standards *For more details, please download the PDF or feel free to contact us.

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Engineering plastic "POM-NC/POM-BC"

Usable in water! An engineering plastic with excellent machinability, making it easy to manufacture parts and more.

"POM-NC/POM-BC" is a crystalline engineering plastic made from acetal copolymer. It has a low water absorption rate, resulting in minimal reduction in physical properties and dimensional changes, making it suitable for use in water. It also excels in machinability compared to other engineering plastic materials, allowing for easy fabrication of parts and components. Additionally, it is widely used in load-bearing liners, wheels, rollers, and more. [Features] ■ Mechanical strength ■ Low water absorption ■ Machinability ■ FDA compliance *For more details, please download the PDF or feel free to contact us.

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PEEK resin processing [TECAPEEK CF30 natural]

We accept precision machining of Ensinger's PEEK resin TECAPEEK CF30 natural, from small batches of 1 piece to mass production!

"TECAPEEK CF30 natural" is a PEEK material containing 30% carbon fiber. It has better sliding properties than glass fiber, excellent wear and friction characteristics, and the addition of carbon fiber increases thermal conductivity, improving the durability and lifespan of components in sliding applications. Due to its exceptional properties, it is widely used in important sectors of general industry, as well as in automotive, marine, nuclear, downhole oil wells, electronics, and aerospace fields. 【Features】 ■ Good chemical resistance ■ Improved toughness ■ Flame retardant ■ Hydrolysis resistance and heat steam resistance ■ Very high rigidity ■ Very high creep resistance *For more details, please download the PDF or feel free to contact us.

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Engineering plastic 'MC703HL'

Anti-stick slip products! Plastic with excellent sliding performance and wear resistance.

"MC703HL" is an engineering plastic that enhances sliding performance and wear resistance by adding a special lubricant to the base of MC901. The basic grade MC901 is one of the materials with a low coefficient of friction among engineering plastics, and this product further improves this characteristic. It is suitable for resolving issues such as machinery not moving smoothly and vibrations occurring, making it an effective solution for stick-slip problems. In addition to having a low coefficient of friction, it also exhibits excellent wear resistance among engineering plastics. 【Features】 ■ Prevention of stick-slip ■ Low coefficient of friction ■ Excellent wear resistance *For more details, please download the PDF or feel free to contact us.

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PBI (Polybenzimidazole) "7000 Series"

Material for machining that has been compression molded from PBI.

The "7000 Series" is a cutting material made from PBI resin, an ultra-high-performance plastic, through compression molding. PBI resin has a thermal decomposition temperature exceeding 600°C, a load deflection temperature (1.8 MPa) of 410°C, and a glass transition temperature (Tg) of 420°C, demonstrating the highest level of heat resistance among resin materials. 【Features】 ■ Super engineering plastic developed in collaboration with NASA and AFML ■ Thermal decomposition temperature: >600°C (inert atmosphere) ■ Glass transition temperature: ~425°C ■ Load deflection temperature: ~410°C ■ Excellent mechanical properties ■ Good sliding properties *For more details, please refer to the PDF materials on the official website or feel free to contact us.

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【Basic Knowledge】Excellent Compatibility with Lepco Mica! Engineering Plastics 【Flaky Filler】

Excellent compatibility with Repcomica! Engineering Plastics Edition

Plastics that are primarily used industrially. Compared to general-purpose plastics, they have superior mechanical strength and heat resistance, making them suitable for industrial components. The definition of engineering plastics (also known as "Enpla") is not very clear, but it is said to have: Tensile strength: 500 kgf/cm² (49 MPa) or more Flexural modulus: 20,000 kgf/cm² (1,960 MPa) or more Heat resistance: 100°C or more Among engineering plastics, five commonly used types are referred to as the "five major engineering plastics." PA (Polyamide): Often referred to by the DuPont trademark "Nylon." PC (Polycarbonate) Polyester (PBT, PET) POM (Polyacetal): Polyoxymethylene Modified PPE (Modified Polyphenylene Ether) *We handle various sizes and grades of mica products, focusing on gold mica (S grade) and white mica (M grade). Mica has good compatibility with various materials such as plastic resins, paints, rubber, films, sealing materials, and adhesives. Please feel free to download for more detailed information.          ↓↓↓↓↓↓↓

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Machining of PEEK resin [TECAPEEK PVX black]

We offer precision machining of Ensinger's PEEK resin TECAPEEK PVX black, from small lots of 1 piece to mass production!

"TECAPEEK PVX black" is an extruded material of PEEK sliding grade using Victrex PEEK 450, equivalent to the performance of Victrex PEEK-FC30. It has been specifically developed for bearing and sliding applications. It is based on PEEK with 10% each of PTFE, graphite, and carbon fiber added. Compared to other PEEK grades, it exhibits the lowest friction coefficient and high wear resistance, providing relatively high dimensional stability even in high-temperature environments. 【Features】 ■ Good load deflection temperature (DTUL, HDT) ■ Good sliding and wear characteristics ■ High creep resistance ■ Hydrolysis resistance and steam resistance ■ Good wear characteristics ■ Flame retardant *For more details, please download the PDF or feel free to contact us.

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What are engineering plastics (Enpla)?

Lighter than metal and easier to mass-produce in the same shape, this resin is commonly referred to as engineering plastic!

"Engineering plastics (Enpura)" are synthetic resins that possess high strength and heat resistance, making them suitable for industrial applications. Abbreviated as Enpura, they are lighter than metals and have properties that facilitate mass production of the same shape. As a result, they are used as an intermediate material between resin and metal for weight reduction and cost savings. 【Features】 ■ High strength and heat resistance ■ Lighter than metals ■ Properties that facilitate mass production of the same shape ■ Intermediate material between resin and metal ■ Used for weight reduction and cost savings *For more details, please refer to the PDF document or feel free to contact us.

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[Market Report] Global Market for Polyoxymethylene

The global market for polyoxymethylene is experiencing steady growth due to the expansion of the automotive and electronics industries.

The global polyoxymethylene (POM) market is experiencing significant growth driven by the worldwide expansion of the automotive and electronics industries. Polyoxymethylene, also known as acetal or polyacetal, is a high-performance engineering plastic known for its excellent mechanical properties and versatility in various applications. The global market for polyoxymethylene is expected to continue growing as industries recognize the unique advantages of this versatile engineering plastic in various applications. For application methods, please check the [PDF download] button or apply directly through the related links.

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[English Market Research Report] The Global Market for Engineering Plastics

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The engineering plastics market size is expected to grow at a CAGR of 5.7% during the forecast period, reaching USD 163.4 billion by 2030. In 2022, the market reached 35,419.9 kilotons, experiencing a growth of 2.9% from 2019 to 2022. Furthermore, due to their excellent electrical insulation properties, these materials are highly suitable for various applications in this segment. Components such as connectors, switches, and housings require materials that effectively insulate current and prevent short circuits. As a result, engineering plastics manufacturers are expected to see an increase in demand for their products in the E&E segment.

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