We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Fluorine resin coating.
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Fluorine resin coating Product List and Ranking from 41 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:May 06, 2026~Jun 02, 2026
This ranking is based on the number of page views on our site.

Fluorine resin coating Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:May 06, 2026~Jun 02, 2026
This ranking is based on the number of page views on our site.

  1. 吉田SKT Aichi//Manufacturing and processing contract
  2. フロロコート Saitama//others
  3. 日建塗装工業 Tokyo//Manufacturing and processing contract
  4. 4 YMM コーティング事業部 Osaka//others
  5. 5 NIPPON FUSSO CO.,LTD. Osaka//Electronic Components and Semiconductors

Fluorine resin coating Product ranking

Last Updated: Aggregation Period:May 06, 2026~Jun 02, 2026
This ranking is based on the number of page views on our site.

  1. Causes of Teflon coating peeling and how to address them. 吉田SKT
  2. Advantages and disadvantages of re-coating a non-stick frying pan. 吉田SKT
  3. Fluororesin Coating: "Differences in Color and Selection Method" 吉田SKT
  4. 4 What is the semiconductor manufacturing process? An introduction to surface treatment that supports semiconductor manufacturing. 吉田SKT
  5. 5 Introduction to fluoropolymer resins: ETFE, PVDF, PCTFE, ECTFE. 吉田SKT

Fluorine resin coating Product List

301~330 item / All 422 items

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Solve vacuum forming release defects with super TP coating.

We would like to introduce a coating that improves release defects caused by vacuum forming of films.

■Customer's Issue In vacuum forming of films, the formed film was difficult to detach from the mold, resulting in release failure. ■Background / Conditions for Choosing Treatment The cause was uneven heating and poor air release due to inadequate adhesion between the mold and the film. ■Adopted Coating Super TP Coating ■Achieved Effects The Super TP Coating forms a smooth convex surface with fluororesin. The convex surface of the coating created an appropriate gap between the mold and the film, improving air release and resolving the issue of uneven heating, resulting in better release properties. For details about the coating, please download the materials or contact us.

  • Secondary Cells/Batteries
  • Fluorine resin coating

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What is the flame retardancy of plastics? An explanation of flame retardant grades and material characteristics.

We will provide a detailed explanation of the elements of combustion, the flame retardancy of plastics, and flame-retardant materials made from plastics.

This document is intended for those who want to learn more about the flame retardancy of plastics and those interested in the flame retardancy of fluororesins. ■INDEX■ 1. What is flame retardancy? 2. The three elements of combustion 3. Flame retardancy of plastics from the perspective of oxygen index and standards 3-1. Oxygen Index 3-2. UL94 standard 4. Characteristics of flame retardant materials (fluororesin PTFE) 4-1. Strong C-C bonds 4-2. Low reactivity with oxygen 5. Applications of fluororesin flame retardancy If you would like to know more about flame retardancy, please download the document or check the related links.

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Eliminate static electricity troubles! Improve dirt resistance with "Safron AS+"

Suppresses static electricity and makes it easy to wipe off dirt! Anti-static fluororesin coating 'Safron AS+'.

■Losses Due to Static Electricity Troubles - Decreased productivity due to product adhesion, dust accumulation, mesh clogging, and fiber entanglement - Decreased safety due to fires, electric shocks, and equipment malfunctions - Increased running costs due to higher cleaning expenses ■Challenges of Conventional Anti-Static Coatings - Low dirt resistance - Limited color variations ■Newly Developed "Safron AS+" - Significantly improved dirt resistance while maintaining equivalent anti-static performance to conventional products - Easily wipes off magic stains - Four color variations tailored to different applications ■Benefits of "Safron AS+" - Reduces static electricity troubles, leading to increased productivity, equipment protection, and enhanced safety - Improved dirt resistance results in reduced cleaning time and lower running costs - Abundant color variations *For more details, please refer to the PDF document or feel free to contact us.

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Comparison of types of fluoropolymer coatings: Explanation of the differences between FEP and ETFE.

【Presentation of Materials】A detailed explanation of the differences between PTFE and PFA, as well as FEP and ETFE, which are surprisingly not well known!

The technical document "Differences Between PTFE and PFA" provides a detailed explanation of FEP and ETFE, covering everything from molecular structure to properties. It also discusses the differences in characteristics of fluoropolymer coatings at the end. With this single book, you can gain a solid understanding of the differences and features of each. If you are interested, please feel free to download it. [Contents (excerpt)] - Types and properties of fluoropolymers - Differences between PTFE and PFA / Overview of FEP and ETFE - Differences among four types of fluoropolymer coatings

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Materials that are helpful when you want to correctly choose the type of fluororesin.

【Presentation of Materials】A detailed explanation of the differences between PTFE and PFA, as well as the differences between FEP and ETFE, including molecular structures and properties!

The technical document "Differences Between PTFE and PFA" provides a detailed explanation of PTFE, PFA, FEP, and ETFE, covering everything from molecular structure to properties. Fluoropolymers are well-known for their non-stick and slippery characteristics, but many people may not be aware of their various types and differences. This single volume allows for a thorough understanding of the differences and features of each. If you are interested, please feel free to download it. [Contents (excerpt)] ■ Types and characteristics of fluoropolymers ■ Differences between PTFE and PFA / Overview of FEP and ETFE ■ Differences among four types of fluoropolymer coatings

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Problem-solving during adhesive tape manufacturing! Super Coating Series

We introduce a coating that exhibits excellent non-adhesive properties to prevent sticking of sticky materials such as labels and adhesive tapes.

Adhesive tape often sticks to machines and other materials during the manufacturing process due to its nature. To prevent such issues, it is essential to employ coating technologies that exhibit non-adhesive properties, especially against sticky adhesives. By using appropriate coating technologies, the ease of handling materials on the production line can be significantly improved, contributing to the preservation of product quality. Introduction to Coating Technologies ■ Super TP and TP Series Composed entirely of fluororesin, these can be used in silicone-free environments. The use of fluororesin eliminates concerns about the transfer or contamination of silicone oil, and it is expected to improve non-adhesiveness by reducing contact area. ■ Super CTT Series This silicone-based series features excellent non-adhesiveness and slip resistance. Since it uses silicone, consideration must be given to the transfer to the counterpart material. ■ Super Alloy Coating Consisting of both fluorine and silicone types, it achieves a balance of flexibility and high hardness. Surface treatment of HV600 can also be applied to resins and sponge rubber, achieving high durability. *For more details, please download the PDF or feel free to contact us.

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[Example] Prevention of resin adhesion in the welding heater block of the packaging bag manufacturing process.

Zero resin adhesion even in high-temperature environments! Achieved 4 months of durability with our uniquely developed surface treatment.

■Issue We want to prevent the adhesion of resin films in a high-temperature environment of up to 180°C. A surface treatment that can accommodate both polypropylene bags and aluminum vapor-deposited bags is necessary. The current treatment has a short lifespan and requires frequent replacements. ■Background The heater block is an important component in the sealing process of packaging bags. When heat is applied to bond the resin film, there is a problem where the resin from the film easily adheres to the surface of the block. The customer tried surface treatments from other companies but did not achieve sufficient results, making the realization of stable non-stick properties and long lifespan urgent. ■Adopted Treatment We developed our unique "TP Coating" and applied it to the surface of the heater block. ■Features - Excellent release properties that prevent resin adhesion - Stable performance even in high-temperature environments - Selection process for the treatment ■Effects - Achieved a lifespan of about 4 months with an operating frequency of 10 times per minute - Reduced cleaning frequency and operational losses by maintaining non-stick properties - Improved operational efficiency of the production line with stable performance under high temperatures For more details, please refer to the catalog or contact us directly.

  • Secondary Cells/Batteries
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Comparison of heat resistance of fluororesins

Fluororesin is used in various industries due to its excellent heat resistance, chemical resistance, and non-stick properties.

This comparison table summarizes the characteristics of representative fluoropolymers and their maximum operating temperatures (heat resistance). 【Comparison of Types of Fluoropolymers and Heat Resistance】  Name   Maximum Operating Temperature (Heat Resistance)  PTFE   260℃  FEP    200℃  PFA    260℃  ETFE   150℃  ECTFE   150℃  PCTFE   120℃  PVdF   150℃ 【Selection of Fluoropolymers】  Highest heat resistance (260℃): PTFE, PFA  Slightly lower heat resistance (below 200℃): FEP, ETFE, ECTFE, PCTFE, PVdF  Balance of chemical resistance and non-stick properties is important: selection according to application is necessary ▶ For details on each fluoropolymer, please download and check the "Fluoropolymer/Super Engineering Plastic Properties Summary Table."

  • Resin mold
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Food Sanitation Law Compliance and PL (Positive List) Compliant Coating Series

Balancing hygiene and efficiency in manufacturing equipment. Coating compliant with the Food Sanitation Act positive list - Download materials.

We introduce coatings that comply with food sanitation laws to enhance safety and production efficiency in food manufacturing and processing equipment. Our lineup includes coatings that meet the food sanitation law (positive list system) and can be used in applications that come into direct contact with food, covering essential functions required in manufacturing environments such as slip resistance, non-stick properties, release properties, heat resistance, anti-static properties, and high durability. 【Applications】 Our coatings are suitable for a wide range of food manufacturing environments, including bread and bakery, confectionery, meat processing, dairy products, frozen foods, noodles, seafood processing, rice and bento, side dishes and school meals, beverage manufacturing, and packaging machine components. 【Features】 ■ Coatings with slip resistance, non-stick properties, and release properties reduce line stoppages and cleaning frequency due to adhesion. ■ Multifunctional specifications including anti-static properties, heat resistance (maximum operating temperature class of 260°C), chemical resistance, and corrosion resistance. ■ We also offer the FFLC series, which is free from PFAS, demonstrating our commitment to environmental considerations. If you are considering improving the efficiency of your manufacturing line, please download our materials and contact us.

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Bi-Coat for Electronic Components: Improved Release Properties of Precision Molds

Improving the release properties of injection molding molds and achieving micron-level dimensional accuracy.

In the electronic components industry, the miniaturization and high performance of products demand precise molding of molds. Particularly in the manufacturing of electronic components with fine shapes and complex structures, the release properties of the molds become a crucial factor that affects product quality. Poor release can lead to product deformation or damage, resulting in a decrease in yield. Bycoat extends the lifespan of molds and enables stable production due to its excellent release properties, sliding properties, and wear resistance. 【Application Scenarios】 - Injection molding molds for precision electronic components - Molds requiring micron-level dimensional accuracy - Molds used in harsh environments 【Benefits of Implementation】 - Prevention of yield loss due to poor release - Extension of mold lifespan - Stable supply of high-quality products For more details, please download the materials or contact us.

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  • Other surface treatment equipment
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Why do paints and inks stick to containers?

"There's a waste of paint left in the container" and "Cleaning during color changes is difficult." We will introduce the causes of these issues and the ideas for improvement through surface treatment.

In workplaces that handle liquid materials such as paints, inks, and adhesives, the adhesion of materials to the inner walls of containers and tanks leads to raw material loss and increased cleaning costs. ■ Why do liquid materials stick? Paints and inks contain components such as pigments, resins, and solvents. As the solvent evaporates, the concentration of the resin component increases, causing the viscosity to rise and solidify on the container walls. Once solidified, the paint film has a strong adhesion to the metal surface and cannot be easily removed. Additionally, prolonged storage and repeated use lead to the accumulation of thin layers of paint film on the inner walls of the container, further worsening the sticking issue. Yoshida SKT has a proven track record of non-stick coatings for paint and ink containers. If you are struggling with residual liquid loss or cleaning tasks, please feel free to consult us. *For detailed information about the coating, you can download the PDF or contact us at your convenience.

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  • Processing Contract
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Fluororesin coating for kitchens - Surface treatment by Minoru Sangyo Co., Ltd.

This is a fluororesin coating that has passed the Food Sanitation Act under Notification No. 20 of the Ministry of Health, approved by the FDA.

What is kitchen fluoropolymer? It is a fluoropolymer coating for kitchen utensils that meets the standards of the U.S. Food and Drug Administration (FDA) and the Ministry of Health's Notification No. 20 under the Food Sanitation Act, featuring abrasion resistance, corrosion resistance, release properties, and heat resistance. Characteristics of kitchen fluoropolymer coatings: - Silkware (kitchen fluoropolymer coating) Baking temperature: 360-420°C Continuous maximum usage temperature: 260°C Chemical resistance: ◎ Release properties: ◎ Conductivity: ×

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CFRP/Coating to Suppress Deflection and Improve Speed [Case Study Available]

Contributing to particle suppression in CFRP. *We will be exhibiting at the 24th Mechanical Elements Technology Exhibition!

One of the characteristics of CFRP is that it is a lightweight material that is less prone to distortion and bending. Therefore, its adoption as an alternative material to metals is progressing, but there are challenges such as the generation of particles from CFRP. By combining our fluororesin coating technology, we expect effects such as particle suppression, corrosion resistance, and non-stick properties. You can see the actual product at the "Mechanical Elements Technology Exhibition" held in Makuhari starting in February! *We have introduced our achievements in a PDF, so please download it from the link below to take a look.

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Technical Data: Types and Characteristics of Fluororesin Coatings

We will introduce the technical data on the types and characteristics of fluororesin coatings.

Kyushu Denka Co., Ltd. is a plating company, but we are not limited to just plating; we are conducting research and development aimed at various functional coatings. One of our new ventures is in the field of Teflon processing. There are different types of "Teflon," and it is necessary to select the appropriate material according to the intended application. In addition to standard Teflon processing, we also offer multi-purpose applications that combine plating and Teflon (for example, a roll body with Teflon processing and a shaft with hard chrome plating). Please feel free to consult us. Kyushu Denka Co., Ltd. will handle prototypes and other requests. [Contents] - Tape peel strength - Coating thickness - Chemical resistance For more details, please contact us or download the catalog.

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Fluororesin coating slip properties examples [gasket] catalog now available.

Achieving a fluororesin coating that follows the stretch and shrinkage of rubber with wear resistance!

This is a coating designed for one of the excellent features and functions of fluoropolymer resin: "slipperiness." Fluoropolymer coatings demonstrate excellent slip and lubricity without the need for oil or grease supply. Furthermore, unlike other lubricants, fluoropolymer coatings possess characteristics such as chemical resistance, electrical insulation, and non-adhesion, making them suitable for use in various environments. Additionally, coatings can be applied not only to metals but also to rubber and plastic surfaces! They can be applied in applications where slip is required on the surface while maintaining rubber elasticity.

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PFAS-free coating for pharmaceuticals "Nano Coat-S"

Contributing to contamination prevention! Coating technology that enhances the durability of sliding parts.

In the pharmaceutical industry, it is essential to thoroughly prevent contamination (foreign matter intrusion) to maintain product quality. In particular, the generation of wear particles and foreign matter from sliding components used in the manufacturing process poses a significant risk to product quality. The PFAS-free coating "Nano Coat-S" suppresses wear on sliding components and reduces the risk of contamination. This contributes to maintaining product quality. 【Application Scenarios】 - Pharmaceutical manufacturing equipment - Sliding components in clean rooms - Environments where contamination is not permitted 【Benefits of Implementation】 - Reduced risk of contamination - Improved product quality - Extended equipment lifespan

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Prevent ink adhesion with ADLON coating for the printing industry!

Solve ink adhesion and cleanability issues in printing environments with ADLON coating!

In the printing industry, ink adhesion and contamination are significant challenges that lead to a decline in quality and a decrease in work efficiency. Particularly in areas where ink is difficult to dry or tends to stick, cleaning can be labor-intensive, potentially reducing productivity. ADLON coating addresses these issues by preventing ink adhesion and improving cleanability. ADLON coating contributes to enhancing the quality of printed materials and improving work efficiency. 【Usage Scenarios】 - Rollers of printing machines - Ink supply areas - Inside dryers 【Effects of Implementation】 - Suppression of ink adhesion - Reduction of cleaning time - Improvement in print quality - Increase in productivity

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ADLON Coat for Semiconductor Manufacturing

Achieving improved sliding performance and increased durability of precision parts!

In the semiconductor manufacturing industry, precise component operation and high durability are required. In particular, components that repeat fine movements can suffer from performance degradation and product defects due to wear from friction and foreign matter contamination. ADLON coat addresses these challenges by improving sliding properties and reducing friction. In semiconductor manufacturing processes that require precise movements, ADLON coat contributes to enhancing product reliability. 【Application Scenarios】 - Sliding parts of precision machinery - Moving parts of semiconductor manufacturing equipment - Micro-machined components 【Benefits of Implementation】 - Improved sliding properties - Reduced wear - Extended product lifespan - Decreased risk of foreign matter contamination

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Challenges in Adopting Mg Alloys for Medical Devices <ADLON coat>

Prevent corrosion and galvanic corrosion of Mg alloys, and improve biocompatibility.

In the medical device industry, materials with high biocompatibility are required. Magnesium alloys are lightweight and have high strength, making them promising for medical device applications; however, they are prone to corrosion and have durability issues in biological environments. ADLON coat addresses these challenges by coating the surface of magnesium alloys, contributing to the performance improvement of medical devices. 【Application Scenarios】 - Implants - Surgical instruments - Biologically implanted devices 【Effects of Implementation】 - Corrosion suppression - Improved biocompatibility - Enhanced durability

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[For Robots] Problem-Solving Document on the Adoption of Mg Alloys

Contributes to the reduction of weight and improvement of durability of movable parts.

In the robotics industry, there is a demand for both lightweight movable parts and durability. Particularly in areas that operate in environments exposed to chemicals or corrosive gases, material corrosion and wear can lead to performance degradation and failure. Magnesium alloys are expected to be adopted due to their lightweight nature combined with strength; however, they face challenges such as susceptibility to corrosion and wear. This document introduces these challenges associated with the adoption of magnesium alloys and presents solutions through Adron coating. 【Application Scenes】 - Robot arms - Joint parts - Exterior components 【Effects of Implementation】 - Improved mobility due to weight reduction - Enhanced durability through coating - Extended product lifespan

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[For Bicycles] Problem-Solving Document Using Mg Alloy

Solving the challenges of using Mg alloys to achieve weight reduction in bicycles.

In the bicycle industry, weight reduction is an important factor for improving performance and increasing customer satisfaction. Magnesium alloys are expected to be adopted for bicycle frames and components due to their lightweight yet high strength. However, magnesium alloys are prone to corrosion, suffer from galvanic corrosion when in contact with dissimilar metals, and are easily oxidized. These issues can potentially compromise the durability and appearance of the products. This document introduces these challenges associated with the adoption of magnesium alloys and the coating technologies to address them. 【Application Scenarios】 * Weight reduction of bicycle frames * Improved durability of components * Maintenance of aesthetic appearance 【Effects of Implementation】 * Enhanced riding performance through weight reduction * Protection against corrosion and galvanic corrosion * Extended product lifespan

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Introducing the effects of fluoropolymer coating for kitchens in a video!

On the official YouTube channel, we introduce the effects of fluoropolymer coating in a video!

In the kitchen industry, there is a demand for reducing the burden of daily cleaning. In particular, grease stains and food sticking require considerable time and effort to clean, which can decrease work efficiency. Fluoropolymer coatings help suppress the adherence of these stains and improve cleanability, contributing to hygiene management and increased efficiency in the kitchen. 【Usage Scenarios】 - Kitchen equipment (frying pans, pots, etc.) - Cooking surfaces - Food processing trays 【Benefits of Implementation】 - Stains are less likely to adhere and easier to remove - Reduced cleaning time - Maintenance of a hygienic environment

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Effects of Fluoropolymer Coating for Pharmaceuticals

Introducing the effects of fluoropolymer coating in a YouTube video!

In the pharmaceutical industry, preventing foreign matter contamination and removing residues during drug manufacturing are important challenges. In particular, when highly adhesive substances adhere to manufacturing equipment, it can increase cleaning efforts and potentially reduce production efficiency. Fluoropolymer coatings provide excellent non-stick properties to address these challenges, contributing to improved product quality and productivity. 【Application Scenarios】 - Parts of pharmaceutical manufacturing equipment (mixers, filling machines, etc.) - Containers for reagents and raw materials - Areas where adhesion prevention is necessary 【Benefits of Implementation】 - Easier removal of residues, leading to reduced cleaning time - Reduced risk of foreign matter contamination - Improved production efficiency - Stabilization of product quality

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ADLON coating's difficult adhesion and release for pharmaceuticals

We will solve your problems with adhesion and aggregation in pharmaceutical manufacturing.

In the pharmaceutical industry, the manufacturing process of drugs can face challenges such as the adhesion and agglomeration of raw materials and products. Particularly, powdered raw materials and highly viscous liquids tend to adhere to the walls of manufacturing equipment and containers, potentially leading to reduced yield and impacts on quality. ADLON coating addresses these challenges by providing excellent non-stick properties, contributing to improved manufacturing efficiency and stabilized quality. 【Application Scenarios】 - Coating for pharmaceutical manufacturing equipment - Hoppers and mixers for powdered raw materials - Filling containers for viscous liquids 【Benefits of Implementation】 - Improved yield through reduced adhesion - Increased productivity due to shorter cleaning times - Enhanced quality by reducing the risk of foreign material contamination

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Ink adhesion prevention with fluorocoat for the printing industry.

Are you having trouble with ink stains? Fluorocoat will solve it!

In the printing industry, ink adhesion is a significant problem that reduces production efficiency and compromises quality. Particularly when using high-speed printing or special inks, proper ink transfer and prevention of adhesion to unwanted areas become crucial. Fluorocoat addresses these challenges by suppressing ink adhesion, contributing to improved print quality and increased productivity. 【Application Scenes】 * Printing machine rollers * Ink supply sections * Conveying sections of printed materials 【Effects of Implementation】 * Improved yield due to prevention of ink adhesion * Increased operational rate due to reduced cleaning frequency * Stabilization of print quality

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Improved slip properties with ADLON(r) coating for medical devices.

Improving the performance of medical devices with ADLON(r) coating that considers biocompatibility.

In the medical device industry, materials with high biocompatibility are required to enhance patient safety and the quality of treatment. This is particularly important for medical devices that are inserted into the body, where reducing friction and achieving smooth operability are essential. ADLON coating was developed to meet these needs. 【Application Scenes】 - Catheters - Endoscopes - Surgical instruments 【Effects of Introduction】 - Improved operability due to reduced friction resistance - Noise reduction - Enhanced durability

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Hard A (Ace) for Food Factories

Stronger and longer-lasting! Durability + resistance to adhesion!

Equipment and supplies used in food factories must always be clean from a hygiene management perspective. The durability and cleanability of the coating are extremely important. Frequent cleaning and disinfection can accelerate the deterioration of the coating and increase the risk of bacterial adhesion and proliferation. Hard A (Ace) addresses these challenges with high durability and non-adhesion properties. This makes it possible to maintain a hygienic environment and ensure the quality and safety of products. 【Usage Scenarios】 - Food production lines - Kitchen equipment - Walls and floors 【Benefits of Implementation】 - Reduced cleaning time - Lower hygiene management costs - Improved product quality

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Effects of Fluororesin Coating for Food Manufacturing

Improve food release from molds! Showcasing the effects in a YouTube video.

In the food manufacturing industry, smooth release from molds is essential to maintain product quality and improve production efficiency. Particularly, if food adheres to the mold, it can lead to product damage and reduced yield. Fluororesin coatings provide excellent release properties and address these challenges. Our products help improve food release from molds and enhance production efficiency. 【Application Scenarios】 - Food molding - Production of baked goods, bread, etc. - Prevention of ingredient adhesion to molds 【Benefits of Implementation】 - Improved mold release and increased product yield - Reduced cleaning time - Enhanced product quality

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  • Fluorine resin coating

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Effects of Fluororesin Coating for Semiconductors

Introducing the effects of fluoropolymer coating in a YouTube video!

In the semiconductor industry, resistance to chemicals in the manufacturing process is required. In particular, high durability against chemical solutions is essential for maintaining product quality. Inadequate coatings can lead to corrosion of components and performance degradation. Our fluoropolymer coatings excel in chemical resistance and contribute to the protection of materials in the semiconductor manufacturing process. 【Application Scenarios】 - Semiconductor manufacturing equipment - Protection of components in environments using chemical solutions 【Benefits of Implementation】 - Improved chemical resistance - Extended product lifespan - Cost reduction

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  • Fluorine resin coating

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Effects of Fluoropolymer Coating for Medical Devices

Introducing fluororesin coatings considering biocompatibility in a video.

In the medical device industry, materials with high biocompatibility are required to ensure patient safety. This is especially important for medical devices that are implanted in the body, where minimizing the risk of foreign body reactions and infections is crucial. Fluoropolymer coatings are ideal for surface treatment of medical devices due to their excellent biocompatibility. Our fluoropolymer coatings utilize Adron coating technology, imparting properties such as slip resistance, water repellency, and non-adhesion, thereby contributing to the performance enhancement of medical devices. 【Application Scenarios】 - Catheters - Implants - Surgical instruments 【Benefits of Implementation】 - Improved biocompatibility - Reduced friction resistance - Enhanced cleanability

  • Other surface treatment equipment
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  • Fluorine resin coating

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