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 442 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

resin Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

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

resin Product ranking

Last Updated: Aggregation Period:Dec 24, 2025~Jan 20, 2026
This ranking is based on the number of page views on our site.

  1. Epoxy Resin Zero Mar Series for Sample Grinding [Made in Japan] アイエムティー
  2. Joint Surface Treatment Agent "Hitlock B" イチネンケミカルズ
  3. Concrete joint surface treatment agent "Tritex CB-20" Sanyo Trading Co., Ltd.
  4. 4 What are the differences between fluororesin, PTFE, and ETFE? 吉田SKT
  5. 5 Liquid Bismaleimide Resin LMI-5000 OSAKA ORGANIC CHEMICAL IND., LTD.

resin Product List

916~930 item / All 1464 items

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Epoxy resin for bonding and repair 'Alpron D-12/12L'

Strong adhesion even on wet surfaces! Adhesive for bonding concrete and mortar joints.

"Alpron D-12/12L" is an epoxy resin used for bonding new concrete or mortar to old concrete, providing strong adhesion and waterproofing properties. It adheres powerfully even to wet surfaces and excels in compressive, bending, and tensile strength. Additionally, using reinforcing bars in conjunction can achieve even greater integration. 【Features】 ■ Excellent adhesion between new and old concrete ■ Superior compressive, bending, and tensile strength ■ Excellent water resistance and waterproofing ■ Greater integration can be achieved when used with reinforcing bars *For more details, please refer to the PDF document or feel free to contact us.

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High-performance epoxy resin "Alpron A Series"

We offer a lightweight filling type with a soft paste-like consistency, as well as adhesives for block construction methods and concrete molding repair agents!

Our company offers the high-performance epoxy resin "Alpron A Series." "A-1010/1010HS" is an extremely lightweight epoxy resin-based putty. It can be applied thickly to ceilings and walls without sagging or falling, and it has excellent moldability, making it easy to work with. In addition, we also offer the adhesive for block construction "A-105T/105TD," which demonstrates strong adhesion to concrete, cement mortar, iron, wood, glass, etc., and the concrete product molding repair agent "A-6050." 【Features of A-1010/1010HS】 ■ Both the base agent and hardener are lightweight, with a cured density of 0.7 ■ Can be applied thickly ■ Easy to mix the base agent and hardener in the required amounts ■ Excellent moldability and trowel cutting, providing great workability ■ Easy to nail and perform cutting processes *For more details, please refer to the PDF materials or feel free to contact us.

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[Production Example] Nano-phase Structure Tough Resin

Introducing examples of the production of robust 3D printed resins with controlled nanostructures, compatible with 355nm large-scale SLA 3D printers!

We would like to introduce examples of the production of "Nano-phase structured tough resins." The "CHL series" features high hardness (Shore D79) and high elongation (37%), compatible with 355nm large SLA 3D printers. The "RHL-E series" is a resin suitable for hinge applications in 3D printing, with medium hardness (Shore D70) and ultra elongation (101%). Additionally, we also have production examples of the "JAG series," which possesses high rebound elasticity. 【Features of Nano-phase structured tough resins】 ■ CHL Series - Compatible with 355nm large SLA 3D printers - High hardness (Shore D79), high elongation (37%) ■ RHL-E Series - Resin suitable for hinge applications in 3D printing - Medium hardness (Shore D70), ultra elongation (101%) *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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[Production Example] High Heat-Resistant Resin for Resin Molding Applications

Introducing examples of high heat-resistant resins, such as those with high heat resistance over 250℃ and high strength with a tensile strength of 94MPa!

We would like to introduce examples of high heat-resistant resins for resin mold applications. The "RHRCM series (for LCD and DLP)" has high heat resistance (HDT > 250°C) and high strength with a tensile strength of 94 MPa. The "RHRCM-S series (for SLA)" features low curing shrinkage (< 4%). In addition, we also have examples of materials for ceramic sintering, the "RCACM series (for LCD and DLP)." 【Features of High Heat-Resistant Resins】 ■ RHRCM series (for LCD and DLP) - High heat resistance (HDT > 250°C) - High strength (tensile strength: 94 MPa) ■ RHRCM-S series (for SLA) - High heat resistance (HDT > 250°C) - Low curing shrinkage (< 4%) *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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[Production Example] Castable Light-Curing 3D Printing Resin

Possible expansion into lost-wax applications! Introducing examples of castable photopolymer 3D printing resin.

Here are some examples of the production of "Castable Light-Curing 3D Printing Resin." The "RCA-BS Series" is a standard grade material that excels in fine detail reproduction and burn-out characteristics, suitable for casting gold, silver, and other metals. The "RCA-HM Series" completely liquefies at temperatures of 150-200°C, achieving excellent castability even for platinum casting. 【Features of Castable Light-Curing 3D Printing Resin】 ■RCA-BS Series  ・Standard grade suitable for casting gold, silver, and other metals  ・Material with excellent fine detail reproduction and burn-out characteristics ■RCA-HM Series  ・Completely liquefies at temperatures of 150-200°C  ・Achieves excellent castability even for platinum casting *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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NAGASE 3DP Open Lab

Tune and customize light-curing resin! We propose light shaping devices and post-processing methods.

At Nagase Chemtex's open lab, we conduct joint experiments with customers on photopolymer 3D printing. We tune and customize photopolymer resins, and propose suitable photopolymerization devices, post-processing methods, and optimal structural shapes. We possess a wide variety of photopolymerization devices, ranging from small to large sizes, and we also have analytical equipment to measure various mechanical strengths and thermal properties. 【Features】 ■ High heat resistance ■ Structure (lattice structure, weight reduction) ■ Post-processing (cleaning, post-curing) ■ High-speed lightweight ■ Photopolymerization (prototyping, condition examination) ■ Resin (tuning, customization) *For more details, please refer to the PDF materials or feel free to contact us.

  • 3D Printer
  • Resin processing machine
  • Prototype Services

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DSR Shell Chair FRP Resin [Matte White]

Reproduced furniture focused on the quality and price of 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, and it impressively won 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 using molded plywood proved to be extremely difficult. Eames did not give up on commercialization and successfully brought the chair to market 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 using the 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 Gray]

Reproduced furniture with a focus 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, and it achieved an impressive second place. At that time, Charles Eames was trying 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 brought the product to market using FRP, 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 using the 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 Red]

Reproduced furniture focused on the quality and price of 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, and it achieved an impressive second place. At that time, Charles Eames was trying 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 brought the chair to market using FRP, 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, with options for wood legs or a rod base. This is the side shell chair using the 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 Pale Blue]

Reproduced furniture focused on the quality and price of 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, and it impressively won second place. At that time, Charles Eames was trying 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 adhesive 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, 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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[Kibbs Case] Gear for Reduced Metal Wear

A kibbs composed of UHMWPE and over 50% lubricant! It provides better sliding properties on contact surfaces. *Exhibited at the trade show.

We would like to introduce a case where a major robot manufacturer adopted our product for mass production. They faced the challenge of wanting to apply lubricating components to the teeth of gears to reduce metal wear, and they were testing with polyacetal (POM) and oil-containing resins. However, the results were not very effective, leading them to request our assistance. After several changes to the oil-containing components and shapes, and through trial and error, we successfully created gears using Kibbs. 【Case Overview】 ■ Major Robot Manufacturer ■ Challenge: To apply lubricating components to the teeth of gears to reduce metal wear ■ Result of trial and error: Gears made with Kibbs - The adopted robot operates for several years without maintenance - The shaft center has a mechanism that allows lubricating oil to seep out from the inside *For more details, please refer to the PDF document or feel free to contact us. *We will be exhibiting the actual video at Intermold 2022 (April 20-23). Please stop by; we will provide an explanation. Booth number 5-311-33

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Metallic electromagnetic wave permeable resin

Despite being metallic, it transmits radio waves! Development of new materials for millimeter-wave technology.

"Metallic Electromagnetic Wave-Transmitting Resin" is a material that allows radio waves to pass through while maintaining a metallic design aesthetic. By using PSQ, which has a heat-resistant and weather-resistant molecular structure similar to glass, transparency is also achieved. Co-polymerization of PSQ with organic monomers forms a solvent-free curing resin, enabling the creation of glass-like designs with excellent aesthetic qualities. [Features] - Metallic design (design enhancement) - Allows electromagnetic waves to pass through as it does not contain metals - Adding fillers to PSQ-based resin achieves a metallic feel while being lightweight (contains no metallic elements) - Low dielectric properties: due to the cage-like structure of PSQ, it has a porous structure *For more details, please refer to the PDF document or feel free to contact us.

  • Company:KRI
  • Price:Other
  • Other metal materials

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[Technical Data Presentation in Progress!] Reaction Force of Rubber-like Resin

<For customers in the Tokai area> A prototype 3D printer that simulates the rebound of rubber is now available!

Our 3D printer can create objects using rubber-like resin. Since it is a rubber-like "resin," it has elasticity, but its physical properties differ from those of conventional "rubber," resulting in a weaker rebound when compressed and a feeling of being squished. Even with the same hardness, there may be differences in rebound, so if you want to evaluate rebound in a prototype, careful selection of rubber-like resin materials is necessary. A must-see for customers in the Tokai area, especially in Shizuoka, Aichi, and Yamanashi prefectures! Feel free to contact us, even if it's just for an initial consultation.

  • Resin processing machine
  • 3D Printer

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Basic Knowledge of Thermal Conductivity Thermal Conductivity Table Rigid Polyurethane, etc.

We will introduce the basic knowledge of thermal conductivity, starting with the characteristics of our materials!

Thermal conductivity refers to the measure of how easily heat is conducted. High thermal conductivity → Heat is easily transmitted Low thermal conductivity → Heat is not easily transmitted Liquids conduct heat better than gases, and solids conduct heat better than liquids, with thermal conductivity increasing in the order of "gas < liquid < solid." Metals have high thermal conductivity, while materials like polyurethane foam have low thermal conductivity, which is even lower than that of air. [Features of Our Materials] ■ Uses high-performance polyurethane (cyclopentane material) with excellent insulation and environmental properties ■ Thermal conductivity: 0.021 W/mk (initial value) ■ Approximately 30% higher performance compared to typical expanded PS (0.034 W/mk) *For more details, please refer to the PDF document or feel free to contact us.

  • Other Auto Parts
  • Composite Materials

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Basic knowledge of thermal conduction, thermal conductivity table, rigid polyurethane, etc.

Thermal conductivity is the amount of heat that flows through an area of 1 m² in one second when there is a temperature difference of 1°C across a thickness of 1 m.

Thermal conductivity refers to the measure of how easily heat is conducted. High thermal conductivity → Heat is easily transmitted Low thermal conductivity → Heat is not easily transmitted Liquids conduct heat better than gases, and solids conduct heat better than liquids, with the order of thermal conductivity being "gas < liquid < solid." Metals have high thermal conductivity, while materials like polyurethane foam have low thermal conductivity, which is even lower than that of air. [Features of Our Materials] ■ Uses high-performance polyurethane (cyclopentane material) with excellent insulation and environmental properties ■ Thermal conductivity: 0.021 W/mK (initial value) ■ Approximately 30% higher performance compared to typical expanded PS (0.034 W/mK) *For more details, please refer to the PDF document or feel free to contact us.

  • Injection Molding Machine

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