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resin(uv) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
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resin Product List

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Sliding PES compound resin | LUVOCOM 1100-8549

"LUVOCOM 1100-8549" is a sliding compound material developed for automotive oil pumps.

By adding a uniquely formulated additive to the base resin PES (polyether sulfone), we have developed a material that excels in wear resistance and dimensional accuracy. It is used as an alternative to aluminum parts, and improvements in reaction speed and performance in variable valve timing mechanisms have been confirmed. Furthermore, it is not only a metal substitute but also a candidate for switching from other super engineering plastics such as PEEK and PEI. 'LUVOCOM 1100-8549' is a material that offers an excellent balance of mechanical properties, outstanding friction and wear characteristics, and high dimensional stability. The anisotropy of the coefficient of linear expansion has also been improved, and die swell is minimized, which means that post-processing after molding can be kept to a minimum, leading to potential cost reduction benefits.

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  • Engineering Plastics

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Recycled Engineering Plastics | LUVOTECH eco

LUVOTECH eco is an environmentally friendly resin pellet material provided by the German company Lehmann & Voss.

It is based on physically recycled raw materials and is manufactured using 100% green energy supplied by certified energy companies as a contribution to sustainability. Through long-term contracts with raw material sources and continuous quality management of the value chain, we provide high-quality and sustainable pellet materials. The base resins range widely from engineering plastics to super engineering plastics, including PC/ABS, PA6, PA66, PPS, and PEEK. In addition to natural grades, we also offer PTFE-blended sliding grades, glass fiber reinforced grades, and carbon fiber reinforced grades.

  • Engineering Plastics

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[Research Material] Global Market for Cationic UV-Curable Resins

Global Market for Cationic UV-Curable Resins: Epoxy Resins, Vinyl Ether Resins, Coatings, Inks, Adhesives, Others

This research report (Global Cationic UV-Curable Resins Market) investigates and analyzes the current status and outlook for the global market of cationic UV-curable resins over the next five years. It includes information on the overview of the global cationic UV-curable resins market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the cationic UV-curable resins market focus on epoxy resins and vinyl ether resins, while the segments by application target coatings, inks, adhesives, and others. The regional segments calculate the market size of cationic UV-curable resins by dividing them into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa. It also includes the market share of major companies in the cationic UV-curable resins market, product and business overviews, and sales performance.

  • Other services

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Raman UV-curable resin

The Raman spectrum reflects the functional groups of organic compounds! The curing reaction can be estimated to some extent.

Our company analyzes the spectra of UV-curable resins before and after UV irradiation. We irradiate UV-curable resin (acrylic type) with ultraviolet light and obtain Raman spectra before and after irradiation. Through the analysis of the Raman spectra, the curing reaction can be estimated to some extent. For a more detailed analysis of the curing mode, analyses such as GCMS are necessary, but our company can provide not only structural estimation but also reaction estimation through spectral analysis. 【Features of Raman Spectral Analysis】 ■ The curing reaction can be estimated to some extent. ■ We provide support for both structural estimation and reaction estimation. *For more details, please refer to the PDF materials or feel free to contact us.

  • Contract Analysis
  • plastic

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[New Development] One-component Heat and UV Curing Epoxy Resin TE-5111K2

This is a one-component heat-curing and UV-curing epoxy resin for new development. It has a low curing shrinkage rate, a relatively high Tg point, and a fast curing time. [Properties table available]

TE-5111K is an epoxy resin with a low curing shrinkage rate, fast curing time, and a relatively high glass transition temperature of 153°C. It can cure using either heat or UV light, providing flexibility in work options. It can be used for sealing electrical and electronic components. One-component heat-curing, UV-curing white epoxy resin Features: low coefficient of thermal expansion, low shrinkage, high workability (relatively low viscosity), high heat resistance, short curing time *For details, we have published a product specification sheet, so please download the PDF from the link below or contact us. *Samples are also available, so please contact us if needed.

  • Other polymer materials
  • Other electronic parts
  • glue

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Cellulose Fiber Compounded Resin "GREEN CHIP CMF"

"The convenience of plastic and the eco-friendliness of biomass" biomass compound resin containing wood-derived cellulose that contributing to sustainability.

"The convenience of plastic and the eco-friendliness of biomass" - GREEN CHIP CMF is a biomass compound resin contains wood-derived cellulose fiber, contributing to sustainability - Our GREEN CHIP CMF contains 55% wood-derived cellulose fiber, significantly reducing the use of petroleum-derived plastics - When using GREEN CHIP CMF, which contains 55% cellulose fiber, the amount of total CO2 emissions, from manufacturing to incineration, can potentially be reduced by approximately 20%*1 compared to petroleum-derived resins. *1: By our own calculations based on the Ministry of the Environment's "Guidelines for the Utilization and Application of Cellulose Nanofiber Towards the Decarbonization and Achievement of a Circular Economy" - GREEN CHIP CMF has obtained the Biomass Mark in Japan and TUV AUSTRIA OK biobased certification in Europe - No need to replace currently used molds. Moldability is the same level as conventional resin. - Tensile strength, flexural strength, flexural modulus and heat resistance (load deflection temperature) are improved compared with unreinforced polypropylene resin (PP resin), so it is possible to make molded products thinner - Recyclable: Materials with low attenuation (damping) rate of properties compared to glass fiber compounds - Cellulose fibers can be blended with resins other than polypropylene resin

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  • マグ6.jpg
  • バイオマスマーク.JPG
  • Composite Materials

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Graphene heat dissipation resin (graphene pellets)

The applications for heat-curing resins, three-dimensional heat dissipation materials, and thermal management resins are expanding.

We would like to introduce a thermosetting molding resin material that can "dissipate heat" while being a resin by adding graphite. We have four types of graphene phenolic resin materials available. Regarding molded products, we can assist you from consultation, material selection, drawing review, mold production, prototype creation, to mass production, so please feel free to contact us. Additionally, the manufacturing of these molded products will be handled by our "overseas partner company."

  • Composite Materials

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UV-curable refractive index adjustment resin World Rock 5500 series

A highly transparent UV-curable resin that allows for the adjustment of the refractive index to match the refractive index of the material being used. It is also highly durable and can be safely used within the optical path.

It forms a highly transparent and flexible film. Therefore, even with soft materials, it can adhere without distorting the shape and can accommodate linear expansion changes based on temperature conditions. Since the refractive index of the cured product can be adjusted, it can be used not only for selecting adhesives that match the refractive index of the materials but also as a material for forming optical functional layers.

  • lens
  • Glass
  • Other optical parts

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Flexible compound resin

LUVOCOM sliding compounds are resin compound materials that improve sliding properties and friction/wear characteristics through a combination of various fillers.

By adding materials such as PTFE, graphite, mineral fillers, carbon fibers, glass fibers, aramid fibers, and nano-fillers, we improve surface lubricity and friction/wear characteristics. The benefits of using sliding compound materials include the following points: - It is possible to maintain a clean state as there is no need to use lubricants. - There are no additional costs associated with using lubricants. - It is possible to continue exhibiting sliding properties for an extended period. In addition to sliding properties and friction/wear characteristics, we also implement measures to keep the coefficient of linear expansion low. These compound resin materials are resistant to corrosion and oxidation caused by moisture, acids, and alkalis, making them suitable as alternative materials to metals in applications where metal corrosion is a common issue. As base resins, we have a proven track record with many resins such as PAEK, PEEK, PEI, PES, PPS, PPA, PA66, PA6, POM, and PBT. We will propose appropriate combinations of base resins and various fillers based on the customer's application.

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  • Engineering Plastics

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[New Material] A new polyester resin that can be used in high-temperature environments of 95°C.

Recruiting applications for new materials & giving away samples to those interested!

We have newly developed a polyester resin called 'ALTESTER' that does not deform even at high temperatures of 95°C, with a transmittance of over 90%. It is heat-resistant and has excellent transparency, with heat resistance improved by over 30°C compared to conventional polyester, which deformed at around 65°C. - Maximum heat resistance of 95°C, usable in vehicle interiors and hot water - Excellent transparency, allowing for free molding through extrusion, injection, blow molding, and foaming - Low refractive index with total light transmittance of over 90%. High transmittance of visible light - Strong chemical resistance to acids, alkalis, alcohols, etc. - Easily blendable with polyester resins such as PET, PET-G, PBT, and PC.

  • Other polymer materials

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UV-curable resin with a methacrylate group

It is a di-functional urethane methacrylate with a methacrylate group.

This product is a di-functional urethane methacrylate with a methacrylate base. It is suitable as a base resin for thermosetting adhesives, anaerobic adhesives, and sealing/casting agents. - Due to its milder reactivity compared to acrylate bases, it has low exotherm, anaerobic curing properties, and low curing shrinkage. It is also characterized by high heat resistance and low toxicity due to its high Tg. - It has a structure that combines hydrolysis resistance from the ether backbone and toughness from the aromatic component. - It uses plant-derived raw materials, making it possible to consider environmentally friendly product development. It is supplied in liquid form. Please download the catalog for more details. We also offer free samples, web seminars, and product customization. Feel free to contact us.

  • plastic

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For additive to substrates and polymer modification! Hydrogenated terpene resin 'CLEARON'

Covers compatibility with a wide range of polymers! It has high transparency and excellent thermal stability. It also has low reaction inhibition during UV curing, and we offer three grades.

CLEARON is a hydrogenated terpene resin with low reaction inhibition during UV curing. When blended into adhesive formulations, it improves adhesion to olefins. It can be used in applications such as acrylic-based adhesives, synthetic rubber-based adhesives, olefin-based hot melt adhesives, and polymer modifiers. [Applications] - Acrylic-based adhesives - Synthetic rubber-based adhesives - Olefin-based hot melt adhesives - Polymer modifiers - Rubber modifiers - Inks - Coatings *For more details, please download the PDF or feel free to contact us.

  • glue

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[Research Material] The Global Market for Organic-Inorganic Hybrid Resins

Global Market for Organic-Inorganic Hybrid Resins: EB Curing, UV Curing, Polarographic Reagents, Pesticide Intermediates, Additives, Coatings, and Others

This research report (Global Organic-inorganic Hybrid Resin Market) investigates and analyzes the current status and outlook for the global organic-inorganic hybrid resin market over the next five years. It includes information on the overview of the global organic-inorganic hybrid resin market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The market segments by type focus on EB curing and UV curing, while the segments by application cover polarographic reagents, pesticide intermediates, additives, coatings, and others. The regional segments calculate the market size of organic-inorganic hybrid resins by dividing them into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa. It also includes the market share of major companies in the organic-inorganic hybrid resin sector, product and business overviews, and sales performance.

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Introduction to Light-Curable Resins [For Optoelectronics]

Easy-to-handle liquid resin. A colorless and transparent cured product can be obtained with a short UV exposure. *Available for small sample requests!

**Features** - We offer a wide range of resins from high refractive index to low refractive index. - The cured material has high heat resistance and high hardness. It can be processed by cutting, reflow, and various types of thin film deposition. - Various properties can be customized, including light-curing characteristics, adhesion to substrates, and release properties. - It can be used for hybrid lenses, micro lens arrays, diffraction gratings (DOE), and more. *Photo on the left: Surface shape using light-curable resin (example) created by the Taniguchi Laboratory at Tokyo University of Science.*

  • plastic

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