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

1276~1290 item / All 1411 items

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Powdered resol resin application example: automotive brake pads (friction materials)

Powdered resol resin (pure resol) possesses characteristics such as heat resistance, wear resistance, and dimensional stability!

Powdered resol resin (pure resol) is a powdered form of resol-type phenolic resin with an extremely low amount of monomers. In addition to suppressing odor generation, it offers various benefits such as compliance with regulations (not classified as a toxic substance), improved workability and mixability, and is available in different grades according to applications and requirements. This time, we will introduce a case where powdered resol resin was utilized in automotive brake pads (friction materials). 【Case Study】 Target: Brake pads (friction materials) Role: Used as a binder for brake pads Reason: Exhibits stable friction characteristics even at high temperatures; resistant to seizing and wear Effect: Stabilization of braking performance, reduction of noise, extension of pad lifespan *For more details, please download the PDF or contact us.

  • Other polymer materials

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Introducing examples of the use of phenolic resin as a molding material!

Phenolic resins are utilized in various fields by leveraging their properties such as heat resistance, chemical resistance, non-fusibility, electrical insulation, and cost-effectiveness.

Phenolic resin is the first synthetic resin (plastic) to be produced industrially, and it excels in heat resistance, chemical resistance, non-fusibility, electrical insulation, and cost-effectiveness compared to other synthetic resins. This page introduces examples of the use of phenolic resin as a molding material. - Molding Products - - Features and Advantages - Switch Box High insulation and low thermal deformation Outlet and Plug Housing Flame retardant and tracking resistance Breaker Case Safe to use even under high voltage Transformer Bobbin Electrical insulation and dimensional stability Relay and Solenoid Cover High-precision molding possible Distributor Cap Strong against high voltage and high insulation Brake Lining Base Material High wear resistance and heat resistance Clutch Facing Strong against pressure and friction heat Fuse Box Housing Heat resistance, insulation, and shape stability Handles of Pots and Pans Difficult for heat to transfer and easy to hold Bottom Material of Electric Pot Insulation and heat resistance are important Exterior Parts of Rice Cooker Balances appearance retention and functionality *For more details, please download the PDF or contact us.

  • plastic

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Powdered resol resin "Pure Resole (PUR) Series"

No hardener required for heat curing! It has low moisture absorption and excellent anti-blocking properties.

The "Pure Resole (PUR) Series" is a product that begins curing at temperatures lower than approximately 130°C, where the curing reaction between novolac and hexamine occurs, and it exhibits a gentle reaction characteristic. It has achieved the powdering of solid resole-type phenolic resin that performs thermal self-curing without the need for curing agents such as hexamine. This product is not subject to the Poisonous and Deleterious Substances Control Law. It has high bending strength as a molding adhesive. 【Features】 ■ Thermal self-curing without the need for curing agents such as hexamine ■ High bending strength as a molding adhesive ■ Lower moisture absorption compared to novolac + hexamine systems, with blocking resistance ■ High dispersibility with fillers is expected *For more details, please download the PDF or feel free to contact us.

  • 粉末レゾール樹脂『ピュアレゾール(PUR)シリーズ』2.jpg
  • 粉末レゾール樹脂『ピュアレゾール(PUR)シリーズ』3.jpg
  • 粉末レゾール樹脂『ピュアレゾール(PUR)シリーズ』4.jpg
  • Other polymer materials

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粉末レゾール樹脂『ピュアレゾール(PUR)シリーズ』

新たに上市した新素材。低臭気かつ毒劇法に非該当。常温保管が可能で扱いやすい

当社が新たに上市した『ピュアレゾール(PUR)シリーズ』は、 ヘキサミンなどの硬化剤を使用しない、熱自硬化型の粉末レゾール樹脂です 全グレードが毒物及び劇物取締法に非該当のため取り扱いやすく、 加熱時の臭気を大幅に抑制する設計により、作業環境の改善にも貢献します。 粉末状のため流動性と混合性も良好で、フィラーとの高い分散性が期待でき、 常温でもブロッキングしにくい優れた保管性も備えています。 【特長】 ■ヘキサミンなど硬化剤を必要とせず熱自硬化 ■硬化剤由来のアンモニア臭気を大幅抑制 ■毒物及び劇物取締法に非該当(全グレード) ■保管性が高く、常温保管でもブロッキングしにくい ※詳しくは資料をご覧ください。お問い合わせもお気軽にどうぞ。

  • Composite Materials

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KYNAR AQUATEC (PVDF-acrylic water-based emulsion)

Water-based paint binder with weather resistance equivalent to Kynar 500.

Kynar Aquatec® is a binder for high weather-resistant water-based paints that enhances adhesion to various substrates while lowering the minimum film-forming temperature by uniquely mixing acrylics with water-based emulsions of PVDF resins, making it suitable for use in room temperature drying paints. Due to the high baking temperature required, the highly weather-resistant Kynar 500® paint can only be used on metal substrates, but by using Kynar Aquatec®, it is possible to produce high weather-resistant paints for substrates with lower heat resistance or those that are difficult to paint in a factory setting.

  • Engineering Plastics

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KYNAR FLEX (PVDF-HFP)

Fluororesin with excellent flexibility and solubility.

Kynar Flex® copolymer possesses flexibility, high elongation, and the ability to be dissolved in various organic solvents, while maintaining weather resistance and processability similar to PVDF homopolymer. By varying the proportion of hexafluoropropylene, we offer a wide range of grades with different properties. All products are available in powder, pellet, and some aqueous emulsion forms. Features: - Excellent resistance to direct sunlight and UV exposure - Chemical resistance to a wide variety of substances - Radiation resistance - Flame retardancy/smoke resistance - Ease of processing in post-processing such as welding and assembly - High purity for extremely demanding applications - Very high electrochemical stability - Soluble in polar organic solvents - Flexibility

  • Engineering Plastics

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Case Study - Riding Helmet

Design Case Introduction - Riding Helmet -

This is a design example of a bicycle helmet for schoolchildren. To balance design aesthetics with domestic safety certification standards (JIS), we advanced the product development through close communication with the client. The silhouette line that gently slopes towards the back of the head and the character line that bulges from the front to the top of the head serve as a counterbalance, making the overall height appear lower and effectively directing rainwater away during rides in wet conditions, thereby reducing visibility obstruction. Alongside the design mentioned above, I was involved in the interior design considering efficient assembly for mass production, as well as the design of the adjuster mechanism that operates reliably with a simple structure. The development flow for this product is as follows: - Exterior design - Interior design - Creation of design data - Creation of product data for molds - First prototype mock-up (for design confirmation) - Second prototype mock-up (for final confirmation) You can find more details on our company website.

  • others

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Introduction to Resin

Three sales locations (Tokyo, Chubu, Osaka) covering the entire country! Introducing two types: polyethylene and polypropylene.

We would like to introduce the "resin materials" that we handle. We deal with two types of thermoplastic resins that represent petrochemical products: "polyethylene," which is a representative thermoplastic resin, and "polypropylene," which is also a representative thermoplastic resin alongside polyethylene. We cover three sales bases (Tokyo, Chubu, Osaka) nationwide. 【Features】 ■ With a team of experienced sales, operations, technical, and development personnel, we respond to our customers' needs from the position of a resin manufacturer. *For more details, please refer to the related links or feel free to contact us.

  • Other polymer materials

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Resin, plastic materials melting point, Tg (glass transition temperature) measurement (DSC)

Evaluation of melting point (Tm), glass transition temperature (Tg), crystallinity, and specific heat is possible!

Our company conducts "Differential Scanning Calorimetry (DSC)" to evaluate the thermal properties of resin materials, such as melting point (Tm) and glass transition temperature (Tg). The measurement conditions are as follows: temperature range from -100°C to 400°C, measurement atmosphere is Air or N2, and the sample amount is 5mg. Additionally, when performing material qualification of polyethylene (PE), the melting point is measured using DSC, allowing us to determine whether the sample is LDPE (Low-Density Polyethylene) or HDPE (High-Density Polyethylene) based on the differences in melting points. 【Measurement Conditions】 ■ Temperature Range: -100°C to 400°C ■ Measurement Atmosphere: Air, N2 ■ Sample Amount: 5mg ■ Applicable Standards - JIS K7121 Transition Temperature (Melting, Crystallization, Glass Transition) - JIS K7122 Transition Heat *For more details, please refer to the related links or feel free to contact us.

  • Contract Analysis

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Resin, plastic materials thermal gravimetric analysis (TGA)

The amount of inorganic fillers such as glass fibers, talc, and carbon black can be measured!

In "Thermogravimetric Analysis (TGA)," which is a type of thermal analysis, we measure the weight change of a sample when heated under specific conditions. Simultaneous measurement of Differential Thermal Analysis (DTA) is also possible. This allows us to capture chemical changes accompanied by weight changes such as decomposition, oxidation, and reduction, as well as changes without weight changes such as transitions and crystallization. 【Measurement Conditions】 ■ Temperature Range: Room Temperature to 1300℃ ■ Measurement Atmosphere: Air, N2 ■ Sample Amount: 10mg ■ Corresponding Standards: JIS K7120 (TG/DTA) *For more details, please refer to the related links or feel free to contact us.

  • Contract Analysis

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Resin, plastic materials thermal mechanical analysis (TMA)

Physical changes such as expansion and contraction of the sample due to heating can be confirmed!

In "Thermomechanical Analysis (TMA)," which is one type of thermal analysis, the dimensional changes such as expansion, compression, and tension of a sample are measured when the temperature changes, allowing for the evaluation of thermal properties such as linear expansion coefficient, glass transition temperature, and softening point. Differences in the flow direction of the resin during molding of resin-molded products (same material) can be confirmed by the different expansion rates and their differences. Physical changes in the sample, such as expansion or contraction due to heating, can be observed. 【Measurement Conditions】 ■ Temperature Range: -100 to 300℃ ■ Measurement Atmosphere: Air, N2 ■ Measurement Mode: Compression, Expansion, Tension, Penetration ■ Applicable Standards: JIS K7196 Penetration Mode JIS K7197, ISO 11359-2 Linear Expansion Coefficient Measurement *For more details, please refer to the related links or feel free to contact us.

  • Contract measurement

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Resin, plastic materials long-term durability test (creep test)

Change the load stress (weight) and measure the time until failure for each!

The "Long-term Durability Test (Creep Test)" is an evaluation of the long-term durability of resin materials, assessing creep characteristics under tensile, bending, and compression modes. By varying the load stress (weight) and measuring the time until failure for each, it is also possible to predict the lifespan of the resin material by plotting these results. Creep failure refers to the phenomenon where a resin material experiences failure below its breaking strength when subjected to a load for an extended period. [Test Conditions] ■ Test Temperature: 23℃ to 200℃ ■ Test Load: 1 to 500 kg ■ Test Modes: Tensile, Bending, Compression ■ Number of Tests Possible: Up to n = 6 *For more details, please refer to the related links or feel free to contact us.

  • Contract measurement

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Resin, plastic materials standard testing <combustibility, thermal properties, permeability>

Corresponds to combustion tests, TG (thermogravimetric analysis), oxygen gas permeability tests, etc., according to standards such as JIS, ISO, and ASTM.

This document is a list of standard tests related to combustibility, thermal properties, and permeability. For combustibility, it includes tests such as horizontal combustion test for automobiles and vertical combustion test. For thermal properties, it covers methods like DSC (Differential Scanning Calorimetry) and DTA (Differential Thermal Analysis). For permeability, it lists standards for oxygen gas permeability and water vapor permeability. Please feel free to contact us if you have any inquiries. [Included Items (Partial)] ■ Horizontal combustion test for automobiles ■ Vertical combustion test ■ Horizontal combustion test ■ Oxygen index ■ DSC (Differential Scanning Calorimetry) ■ DTA (Differential Thermal Analysis) *For more details, please download the PDF or feel free to contact us.

  • Contract measurement

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Resin, plastic materials standard testing <specimen preparation>

Corresponds to standards such as JIS, ISO, and ASTM for processes like press molding, injection molding, specimen cutting, and specimen punching.

This document is a list of standard tests corresponding to specimen preparation. It includes standard numbers for test items related to press molding, injection molding, specimen cutting, specimen punching, and notch processing. Please feel free to contact us when you need assistance. 【Listed Items】 ■ Press Molding ■ Injection Molding ■ Specimen Cutting ■ Specimen Punching ■ Notch Processing *For more details, please download the PDF or feel free to contact us.

  • Contract measurement

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Analysis of gases emitted from resin and plastic (please consult us for odor analysis as well).

Heat the headspace bottle and collect the generated gas! Qualitatively analyze the generated gas to identify the cause and improve the issue.

Our company is capable of qualitative and quantitative analysis of outgassing using static headspace GC/MS by sealing samples in glass vials. If solvents or unreacted materials remain in the product's resin materials, packaging materials, or cushioning materials, they can diffuse as outgassing (volatile gases). This can not only cause defects in the product but may also have adverse effects on the environment and human health. Our company possesses analytical know-how, including sample handling. Please feel free to consult with us. 【Sample Handling Instructions】 ■ Avoid direct contact with samples using bare hands and do not place them directly into plastic bags. ■ Powdered samples, liquid samples: Pack tightly in glass screw-cap bottles to eliminate air space and seal with a lid that has a fluororesin-coated gasket. ■ Film (sheet) type, plate type samples: Wrap them so that the matte side of the aluminum foil is in contact with the sample, ensuring there is no air space. *For more details, please download the PDF or feel free to contact us.

  • Contract Analysis
  • Gas Analyzers

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