We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Resin.
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Resin Product List and Ranking from 40 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

Resin Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. null/null
  2. 寺田 Tokyo//Electronic Components and Semiconductors
  3. 三菱ガス化学ネクスト(旧日本ユピカ) 本社 Tokyo//Resin/Plastic
  4. 4 吉田SKT Aichi//Manufacturing and processing contract
  5. 5 ヤスハラケミカル Tokyo//Chemical

Resin Product ranking

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. Partially esterified epoxy resin (half epoxy acrylate)
  2. Bismaleimide resin with low dielectric properties and flexibility [Sample provided] 島貿易
  3. What are the differences between fluororesin, PTFE, and ETFE? 吉田SKT
  4. 4 Liquid Bismaleimide Resin LMI-5000 OSAKA ORGANIC CHEMICAL IND., LTD.
  5. 5 Epoxy Resin Zero Mar Series for Sample Grinding [Made in Japan] アイエムティー

Resin Product List

376~390 item / All 1408 items

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[Production Example] Liquid-type 3D Printed Rubber Elastic Resin

Achieving toughness and high resilience! Introducing examples of one-component 3D printed rubber elastic resin.

We would like to introduce a case study of the "1-component 3D printed rubber elastic resin." The "IAG series" features a transparent base material that excels in design, allowing for control of bulk hardness through adjustments in wire diameter and thickness. It achieves toughness and high resilience. It can be used for shoe midsoles, grips, and cushioning systems. 【Features of 1-component 3D printed rubber elastic resin】 ■IAG series  ・Achieves toughness and high resilience  ・Controls bulk hardness through adjustments in wire diameter and thickness  ・Excellent design with a transparent base material *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer
  • Resin processing machine
  • Contract manufacturing

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Transcription-type water-soluble 3D printing resin "RWSI Series"

Dissolves at room temperature and in still water! Can be used in soft robotics and injection molded cores.

We would like to introduce the water-soluble 3D printing resin "RWSI Series" handled by Nagase ChemteX Corporation. It can be dissolved at room temperature and in still water, allowing for the creation of precise and complex structures. The heat resistance is Tg > 100°C. It can be used in life sciences, soft robotics, and injection molding cores. 【Features】 ■ Water-soluble (dissolves at room temperature and in still water) ■ Heat resistance Tg > 100°C ■ Capable of creating precise and complex structures *For more details, please refer to the PDF materials or feel free to contact us.

  • 3D Printer
  • Resin processing machine
  • Contract manufacturing

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Cellulose nanofiber composite biodegradable resin "Color Masterbatch"

Introduction of environmentally friendly plastic colorants!

"Color Masterbatch" is a coloring agent for plastics. It utilizes cellulose nanofibers, which provides strength. In the future, we will also create products using other biodegradable resins and combinations of multiple colors. Please feel free to consult us anytime regarding your resin and color requests. 【Features】 ■ Cellulose nanofiber composite biodegradable resin ■ Excellent strength ■ Available in a total of 7 colors *For more details, please refer to the PDF document or feel free to contact us. *If you would like a paid sample, please inquire.

  • plastic

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100% natural biomass-based (0 petroleum) cellulose-based resin

Oil usage 0! Introducing environmentally friendly biodegradable resin materials.

We have developed biodegradable cellulose-based resins while minimizing complex chemical reactions. Taking additives into consideration, the composition is made from 100% natural biomass, with zero petroleum usage. Additionally, it possesses thermoplastic properties, making it an environmentally friendly biodegradable resin material. Furthermore, we already have technology to combine plant-derived cellulose nanofibers with resins, and by applying this technology to this material, we have created a composite material of biodegradable cellulose-based resin and cellulose nanofibers. Please feel free to consult us at any time for technical details. 【Features】 ■ Tensile strength: 42-54 MPa ■ Composition of 100% natural biomass ■ Zero petroleum usage ■ Possesses thermoplastic properties *For more details, please refer to the PDF document or feel free to contact us. *If you would like a paid sample, please inquire.

  • Other polymer materials
  • plastic

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Biodegradable resin for injection molding (100% natural biomass-based)

It is a biodegradable resin for injection molding based on polylactic acid and cellulose nanofibers.

Typically, it is very difficult to injection mold with polylactic acid (PLA), a biodegradable resin, making mass production of injection-molded products challenging. This product is a biodegradable resin for injection molding based on polylactic acid and cellulose nanofibers. It is composed entirely of 100% natural biomass materials, without any petroleum use. This enables the mass production of injection-molded products primarily made from polylactic acid resin. 【Features】 ■ No petroleum used ■ 100% natural biomass materials ■ Based on polylactic acid and cellulose nanofibers ■ Enables mass production of injection-molded products primarily made from polylactic acid resin *If you would like a paid sample, please contact us. *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials

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Biodegradable materials: biodegradable resin beads/scrub/biodegradable resin microparticles

Using 100% natural biomass-based biodegradable resin material that does not use any petroleum!

Our company has developed a material called biodegradable resin beads based on cellulose, polylactic acid, and starch-based biodegradable resins. We offer a standard grade with an average size of several tens of microns, as well as a grade made from 100% natural biomass-based biodegradable resin material that does not use any petroleum. In particular, materials that combine biodegradable resin with cellulose nanofibers have been confirmed to enhance the biodegradability of regular biodegradable resins, making them more environmentally friendly. 【Features】 ■ Can replace microplastic beads (microplastic pollution) found in facial cleansers, body shampoos, toothpaste, and various cosmetics ■ Uses 100% natural biomass-based biodegradable resin material without any petroleum ■ Enhances biodegradability through the combination of biodegradable resin and cellulose nanofibers *If you would like a paid sample, please contact us. *For more details, please refer to the PDF document or feel free to contact us.

  • Other polymer materials

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Biomass-based biodegradable resin with antibacterial and antiviral properties.

The raw material is non-edible biomass cellulose! Here is an introduction to the biomass-based biodegradable resin developed by our company.

Our company has developed a biomass-based biodegradable resin with antibacterial and antiviral properties to replace the materials used in general resin products. Many biodegradable resins are made from petroleum or edible biomass resources such as corn, sugarcane, grains, and tubers, raising concerns about competition with human food. However, our biodegradable resin material is made from cellulose, a non-edible biomass, making it a preferable material from the perspective of raw materials. We have devised ways to impart antibacterial and antiviral properties to such materials. [Features] - Replaces the materials used in general resin products with biomass-based biodegradable resins - Possesses antibacterial and antiviral properties - Made from cellulose, a non-edible biomass *For more details, please refer to the PDF document or feel free to contact us.

  • Composite Materials
  • Other polymer materials

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Non-edible biomass-derived cellulose-based biodegradable resin

Highly considerate of both the environment and the economy! Developing biodegradable cellulose-based resins with minimal complex chemical reactions.

There is research and development attempting to create cellulose-based resins by breaking down cellulose with acids or enzymes and converting it into sugars. However, due to the labor-intensive processes involved in the decomposition and pre-treatment stages, there are issues with production costs for practical application. From this perspective, our company is developing biodegradable cellulose-based resins while minimizing complex chemical reactions. As a result, the cost becomes lower during mass production, making it a biodegradable resin material that is considerate of both the environment and the economy. Furthermore, our company already has technology for compounding cellulose nanofibers, which are also plant-derived, with resins. By applying this technology to the material, we can also create a composite material of biodegradable cellulose-based resin and cellulose nanofibers. 【Features】 ■ Minimize complex chemical reactions ■ Lower costs during mass production ■ Highly considerate of both the environment and the economy ■ Composite material of biodegradable cellulose-based resin and cellulose nanofibers is also available ・Improvement in mechanical strength confirmed through cellulose nanofiber compounding *For more details, please refer to the PDF document or feel free to contact us.

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  • others
  • Other polymer materials

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Peptide Research Institute, Inc. - Business Introduction

Contributing to the advancement of life sciences by leveraging the technology developed through peptide synthesis!

Our company aims to contribute to the advancement of life sciences, primarily through research on amino acids, peptides, and sugars, and thereby contribute to the development of human society. We also provide researchers with the highest purity bioactive peptides and reagents that can be used with confidence, which is our fundamental operational policy to support the advancement of basic research. Leveraging our experience and technology backed by fundamental research, we will provide services that meet all needs related to peptides. 【Our Technologies】 ■ Peptide Synthesis ■ Glycan-related Synthesis ■ Peptide Drug Development (GMP) *For more details, please download the PDF or feel free to contact us.

  • Peptide synthesis
  • Others Synthesis

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DSR Shell Chair FRP Resin [Matte Black]

Reproduced furniture focused on quality and price from E-comfort.

The Shell Chair is one of the works submitted to the "Low-Cost Furniture Design Competition," co-hosted by a furniture nonprofit organization as part of MoMA's efforts to differentiate itself from other museums by collecting modern design products in 1948. It achieved an impressive second place. At that time, Charles Eames was striving to realize a new era of design that could be mass-produced using molded plywood, but the production with molded plywood proved to be extremely difficult. Eames did not give up on commercialization and successfully produced the chair using FRP, a new material at the time. The chair, produced by layering fiberglass wool with adhesives using a mold and finally shaping the exterior, was released to the world as an innovative mass-produced item. The E-comfort Shell Chair is available in six colors for the seat: black, white, gray, red, pale blue, and pale green, with options for the legs being wood legs or a rod base. This is the side shell chair with a rod base. *The product is a reproduction imported and sold by E-comfort.

  • Office furniture

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DSR Shell Chair FRP Resin [Matte Lime]

Reproduced furniture focused on quality and price by E-comfort.

The Shell Chair is one of the works submitted to the "Low-Cost Furniture Design Competition," co-hosted by a furniture non-profit organization as part of MoMA's efforts to differentiate itself from other museums by collecting modern design products in 1948. It achieved an impressive second place. At that time, Charles Eames was striving to realize a new era of design that could be mass-produced using molded plywood, but the production with molded plywood proved to be extremely difficult. Eames did not give up on commercialization and successfully produced the chair using FRP, which was a new material at the time. The chair, produced by layering fiberglass wool with adhesive using a mold and finally shaping the exterior, was released as an innovative mass-produced item. The E-comfort Shell Chair is available in six colors for the seat: black, white, gray, red, pale blue, and pale green, and you can choose between wood legs and a rod base. This is the side shell chair with a rod base. *The product is a reproduction imported and sold by E-comfort.

  • Office furniture

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Injection molding SPS engineering plastics for automotive parts and medical devices.

Excellent hydrolysis resistance and chemical resistance! Can be used for connectors and engine control components.

HEVs require handling high currents and high voltages due to the use of high-output motors. Therefore, materials for connectors and terminals must have heat resistance and electrical reliability (high dielectric strength and tracking resistance). "SPS (engineering plastic)" has excellent electrical properties because it does not have polar groups, making it suitable for electrical and electronic components used in HEVs. 【Features】 ■ Low specific gravity (lower than other engineering plastics) ■ Heat resistance (high load deflection temperature 250°C, low load deflection temperature 268°C) ■ Hydrolysis resistance ■ Chemical resistance (acid resistance, alkali resistance, oil resistance, aliphatic solvent resistance) ■ Electrical properties (extremely low dielectric loss, good tracking resistance) *For more details, please refer to the PDF document or feel free to contact us.

  • plastic

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Basic knowledge of rigid polyurethane: Cyclopentane, water resistance (polyether type)

Explanation of the differences between polyether-based and polyester-based materials! Introduction to the basics of rigid polyurethane.

I will introduce the differences between polyether-based and polyester-based materials. The molecular structures of polyester-based urethane and polyether-based urethane are different. Polyether-based urethane contains -O- within its bonding molecules, and in principle, this molecular structure is not affected by H2O (water). In other words, it is a material that is strong against water. An example of this is its use in bathtub covers. On the other hand, polyester-based urethane contains -COO- within its bonding molecules, and this molecular structure tends to react with H2O (water) and decompose into -COOH (acid) and -OH (alcohol). Therefore, polyester-based urethane is generally said to have inferior water resistance. *There are also polyester-based materials with high water resistance. *For more details, please refer to the PDF materials or feel free to contact us.

  • plastic
  • Other polymer materials

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Lightweight water-washable partition (aluminum frame) rigid urethane

Made of rigid polyurethane, lightweight! It can be wiped clean with a disinfectant spray, keeping it hygienic.

We would like to introduce a lightweight partition (aluminum frame) weighing approximately 7kg, which can be washed with water. As a measure against virus droplets, it can be sprayed with water and thoroughly washed. The surface is made of resin board, and the frame is aluminum. The size is 750mm × 1800mm × 24mm (maximum size), and the color of the partition is milky white. For heights exceeding 1800mm and other colors, separate consultations are available. 【Features】 ■ Made of rigid polyurethane, lightweight ■ Made of PP, can be wiped clean when dirty or wet ■ Can be kept clean by wiping with a disinfectant spray ■ The color of the partition is milky white *For more details, please refer to the PDF document or feel free to contact us.

  • Other safety and hygiene products

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Non-Freon insulation foam thermal conductivity initial value 0.021 W/mk

We use materials with an ozone depletion potential of zero and an extremely low global warming potential!

Rigid polyurethane insulation materials with higher thermal insulation performance and technology have become widely used. To promote environmental harmony, our company was one of the first in the country to introduce cyclopentane foaming equipment in 1994 (using materials with an ozone depletion potential of zero and an extremely low global warming potential). Our company turns ideas into "forms" through technology. Please feel free to contact us when you need assistance. 【Specifications】 ■Materials - Polyurethane - Thermosetting resin - Assembled products *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract
  • Other contract services
  • Injection Molding Machine

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