We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Ceramic Coating.
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Ceramic Coating Product List and Ranking from 28 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 10, 2025~Jan 06, 2026
This ranking is based on the number of page views on our site.

Ceramic Coating Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 10, 2025~Jan 06, 2026
This ranking is based on the number of page views on our site.

  1. null/null
  2. フロロテクノロジー Aichi//Chemical
  3. ナラサキ産業 メカトロソリューション部 機能材料課 Tokyo//Manufacturing and processing contract
  4. HEF DURFERRIT JAPAN Kanagawa//Manufacturing and processing contract
  5. 5 吉田SKT Aichi//Manufacturing and processing contract

Ceramic Coating Product ranking

Last Updated: Aggregation Period:Dec 10, 2025~Jan 06, 2026
This ranking is based on the number of page views on our site.

  1. High-performance ceramic coating "CS Ceramic Coat"
  2. Cell test coating for fuel cell separators HEF DURFERRIT JAPAN
  3. ECC - Electroceramic Coating ヘンケルジャパン
  4. [Example] Improved cutting performance by preventing blade contamination. フロロテクノロジー
  5. 4 Non-stick coating agent FluoroSurf FG-5000 series フロロテクノロジー

Ceramic Coating Product List

76~90 item / All 118 items

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Non-stick OF Coat Si

A film with special additives is formed! There is little transfer of release agent components to the molded product, resulting in good quality.

We handle "Non-Stick OF Coat Si," which can be applied to improve the release properties of rubber and plastic molds, as well as for the release of CFRP molding molds and for anti-fouling purposes. It boasts excellent durability and can be used at temperatures ranging from -30°C to 300°C. The film is flexible, allowing it to be used in areas that stretch, such as rubber, without breaking, thus maintaining its effectiveness. 【Physical Properties (excerpt)】 ■ Appearance: Colorless, transparent liquid ■ Components: Silicone-based special compound ■ Applicable materials: Metal, resin, rubber, glass, fabric, etc. ■ Curing conditions: Effective in 3 hours at room temperature; fully cured in 3 days ■ Operating temperature range: -30 to 300°C *For more details, please download the PDF or feel free to contact us.

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New fluorine coating film "OF Coat OH-Fm"

Forms a smooth fluorine coating on the surface! Prevents dirt from adhering.

The "OH-Fm" coating is a fluorine film with a thickness of about 10 nanometers, featuring excellent water and oil repellency, durability, stain resistance, fingerprint wipe-off capability, and slip resistance. Fingerprints that are usually difficult to remove can be easily wiped away. It prevents water and oil from adhering, maintaining the beauty of the substrate. Additionally, with its excellent slip resistance, it not only makes it easy to wipe away dirt but also protects the surface from scratches. 【Features】 ■ Approximately 10 nanometer thin film ■ Forms a smooth fluorine coating on the surface to prevent dirt from adhering ■ Easily wipes away fingerprints that are usually hard to remove ■ Prevents water and oil from adhering, maintaining the beauty of the substrate ■ Excellent slip resistance *For more details, please refer to the PDF document or feel free to contact us.

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Ceramic Coating: "Solving the Problem of Fluorine Coating Peeling"

It is a coating technology that maximizes "non-stick and release properties" by combining ceramics and fluororesins.

CHC (Ceramic Hard Coat) is a new type of fluoropolymer coating that achieves non-stick properties equivalent to standard fluoropolymer coatings while also providing high film hardness at elevated temperatures. ■Features - Non-stick properties equivalent to PTFE and PFA - High film hardness at temperatures above 200°C (compared to PTFE) *Based on internal testing ■Applications - Resin welding plates - Resin molding molds - Heater plates - Heat sealers *For case studies and product details, please see the link below.

  • FireShot Capture 492 - 【新開発】表面処理CHC(セラミックハードコート)のご紹介 - コーティングマガジン - 吉田SKT - www.y-skt.co.jp.png
  • Resin mold

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Ceramic Coating: "Eliminating the peeling of fluorine coating at high temperatures."

It is a coating technology that maximizes "non-stick and release properties" by combining ceramics and fluororesins.

CHC (Ceramic Hard Coat) is a new type of fluoropolymer coating that achieves non-stick properties and high film hardness at elevated temperatures, comparable to standard fluoropolymer coatings. ■Features - Non-stick properties equivalent to PTFE and PFA - High film hardness at temperatures above 200°C (compared to PTFE) *Based on internal testing ■Applications - Resin welding plates - Resin molding molds - Heater plates - Heat sealers *For case studies and product details, please see the link below.

  • FireShot Capture 492 - 【新開発】表面処理CHC(セラミックハードコート)のご紹介 - コーティングマガジン - 吉田SKT - www.y-skt.co.jp.png
  • Resin mold

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Non-stick coating to prevent adhesive and tape adhesion to metal blades.

Power of fluorine strongly prevents adhesion of adhesives and tapes! The surface treatment of the transparent thin film can be easily applied at room temperature. Reapplication on-site is also easy.

The simple fluorine coating exhibits strong non-stick properties. By applying the coating, it becomes difficult for adhesives to adhere, and it also reduces dirt such as fingerprints, grease, and water stains. Furthermore, it can be easily removed. This helps to eliminate the hassle of daily maintenance. 【It is effective in the following cases】 ■ Preventing adhesive from sticking to metal knives and scissors ■ Ensuring that tape does not stick to the blade when cutting adhesive tape ■ Making it easier to remove scale from faucet fixtures ■ Wanting to easily remove fingerprints from touch panel surfaces ■ Improving the slip properties of touch panels to enhance the user experience ■ Aiming to reduce cleaning time for fingerprints and dirt ■ Needing a durable anti-fouling coating that does not change the appearance ■ Scale (white stains) adhering to metal surfaces and becoming difficult to remove ■ Fingerprints being noticeable on stainless steel control panels and inner doors ■ Improving the light transmittance of films used on displays and preventing fingerprints ■ Enhancing slip properties during operation *If you would like a free sample, please include "Sample Request" in your inquiry.

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Longer lifespan of rolling rollers! Ceramic coating *Technical documentation available.

Rollers necessary for the rolling process. Proposing reduced wear and increased longevity through a unique coating. *The materials are a collection of case studies on the same ceramic products.

Narasaki Industries has developed a ceramic coating that achieves extremely precise film thickness control. Its name is "Ceramic Dip Coating." As the name suggests, the workpiece is dipped into a ceramic slurry to form a film. This allows for greater freedom in ceramic coating for a wide variety of materials and shapes. 【Features】 ◆ High freedom of shape, capable of coating 3D shapes on a meter scale ◆ Coating possible on almost all ceramic substrates ◆ Average thickness of 50μm achievable ◆ Excellent thermal shock resistance with a film having a pore diameter of 0.1μm and a porosity of 30-40% ◆ Good surface roughness of the coating with excellent smoothness (Ra below 0.8) 【Materials that can be coated】 ■ Mullite ■ Alumina-based ■ SIC-based ■ Porous and dense materials used for setters, etc. *Please download and view the coating case collection. We optimize using composite ceramic films according to applications. Feel free to contact us.

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Reaction prevention! Ceramic coating for fuel cell sintering setters.

[New Technology] Ceramic coating is possible up to the end face with a new method different from thermal spraying! *Available in a range from standard grade to dense grade!

In electronic components, it can be said that there is almost always a "sintering" process involved. Therefore, we would like to introduce a ceramic coating method using a dipping technique that differs from conventional thermal spraying for the setters you are using. 【Four Features】 ◆ High freedom of shape allows for ceramic coating on 3D shapes at meter scale ◆ Ceramic coating is possible on most high-performance materials ◆ Ceramic coating can be applied with an average thickness of 50μm ◆ The surface roughness of the coating is good, providing excellent smoothness (Ra 0.8 or lower) 【Materials that can be coated】 *Main setter materials ■ Mullite ■ Alumina-based ■ Zirconia-based ■ SiC-based *We can accommodate both porous and dense ceramics. *Ceramic coating is also possible on other materials. Currently, we have a lineup of various dense grades of ceramic coating films (some are still in development), and by downloading, you can view SEM image data categorized by grade. We can handle a wide variety of film types, so please feel free to contact us.

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Long-lasting without peeling! Ceramic coating for electronic component setters.

[New Technology] Ceramic coating is possible up to the end face with a new method different from thermal spraying! *Available in a range from standard grade to dense grade!

In electronic components, it can be said that there is almost always a "sintering" process involved. Therefore, we would like to introduce a ceramic coating method using a dipping technique that differs from conventional thermal spraying for the setters you are using. 【Four Features】 ◆ High degree of freedom in shape, allowing ceramic coating on 3D shapes at meter scale ◆ Ceramic coating possible on most high-performance materials ◆ Ceramic coating possible with an average thickness of 50μm ◆ Coating surface has good roughness and excellent smoothness (Ra 0.8 or lower) 【Materials that can be coated】 *Main setter materials ■ Mullite ■ Alumina-based ■ Zirconia-based ■ SiC-based *We can accommodate both porous and dense ceramics. *Ceramic coating is also possible on other materials. Currently, we have a lineup of various dense grades of ceramic coating films (some are still in development), and by downloading, you can view SEM image data categorized by grade. We can handle a wide variety of film types, so please feel free to contact us.

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It is possible to form a ceramic film on complex structures such as three-dimensional structures and hollow shapes!

【New Technology】Ceramic Dip Coating!! It enables the formation of ceramic films on complex structures such as 3D structures and hollow shapes.

In electronic components, it can be said that there is almost always a "sintering" process involved. Therefore, we would like to introduce a ceramic coating method using a dipping technique that differs from conventional thermal spraying for the setters you are using. 【Four Features】 ◆ High freedom of shape, capable of coating 3D shapes on a meter scale ◆ Coating possible on most high-performance materials ◆ Average thickness of 50μm achievable ◆ Good surface roughness of the coating with excellent smoothness (Ra 0.8 or lower) 【Materials that can be coated】 *Main setter materials ■ Mullite ■ Alumina-based ■ Zirconia-based ■ SiC-based *Both porous and dense materials can be accommodated. For coatings related to setters, many customers are selecting "zirconia films," so if you are having trouble choosing a film type, please try zirconia films first! Additionally, we currently have a lineup of dense grades of zirconia films, and by downloading, you can view SEM image data categorized by grade. In addition to zirconia, many other combinations of film types are possible, so please feel free to contact us.

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[Problem Solving Case] I want to improve the release properties of rubber molds.

Improved release properties and sliding performance! It is necessary to create a certain surface roughness on the mold before Nip-PTFE plating!

We would like to introduce a case that addresses the request to "improve the release properties of rubber molds." Physical irregularities were formed on the mold surface through shot blasting, but issues arose as sand got stuck, and unstable grain size led to molding defects. In response, we proposed our 'NiP-PTFE,' which allows for roughness adjustment through film thickness. Since it is an electroless treatment and chemically processed, uniformity can be ensured, and it also allows for the elimination of the blasting process. [Key Points for Problem Solving] - For improving the release properties of resin and rubber molding, there are applicable cases for Teflon coatings, hard chrome plating, PVD-TiN, CrN, etc. - While coatings and plating are important, the surface roughness after treatment is also a very important factor. - In addition to this case, we can also form "micro dimples" on the surface. *For more details, please refer to the PDF document or feel free to contact us.

  • Other surface treatment equipment

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Slick coat (S/H) - a carbon thin film with high hardness, electrical insulation properties, and infrared transmittance.

Slick coat (S/H) - a carbon thin film with high hardness, electrical insulation properties, and infrared transmittance.

**Application** It is also effective for insulation. DLC coating is currently used in many applications and has shown effectiveness, but there were concerns about adhesion under high loads due to its high hardness and low-temperature treatment. DLC-soft was developed to address this issue by significantly improving the adhesion of the coating by lowering its hardness to an acceptable range. This coating has been spreading mainly in Europe and the United States and is being applied to sliding and rolling parts that experience high loads, such as automotive components and fuel injection pump parts.

  • Surface treatment contract service

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Ceramic Coating for Parts Feeders

With an appropriate surface roughness and slip properties, it is effective for transporting small resin products.

With an appropriate surface roughness and slip properties, it is effective for transporting small resin products. It has better slip properties than conventional fluoropolymer coatings, and the film hardness is 9H, which is about three times harder than fluoropolymer coatings. *For more details, please feel free to contact us.*

  • Parts feeder
  • Assembly Jig
  • Food Processing Equipment

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[Food Processing Case Study] Ceramic Coating

Case studies of problem-solving in food processing equipment! Shine Kogei's ceramic coating technology "Cera Armor."

We have gathered case studies of solutions using the ceramic coating "Sera Armor" in food processing equipment. This addresses issues such as product stagnation and the hassle of cleaning due to residue adhesion in food processing environments. 【Challenges We Solve!】 Case Study 1: "Slip and Non-Stick Properties in Food Processing Equipment" Case Study 2: "Non-Stick Coating in School Meal Production Equipment" Case Study 3: "Ceramic Processing for Commercial Rice Cookers" Case Study 4: "Ceramic Processing for Pan Trays" 【Ideal for Such Customers!】 ◎ Products stick and become stagnant on the line... ◎ Residue adheres, making post-operation cleaning cumbersome... ◎ Fluorine coatings wear out quickly, requiring re-coating... ◎ High food adhesion necessitates extra input to secure production numbers... ◎ Issues with burning and coating peeling indicate poor durability! ◎ Locations requiring heat resistance ◎ Poor durability with coating peeling! ◎ Fluorine coatings lack hardness, rated H to 2H!

  • Non-ferrous metals
  • Surface treatment contract service

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Ceramic coating for food processing equipment

Attention those troubled by product stagnation and residue adhesion on food processing lines! Shine will solve your problems.

We are distributing case studies on food processing equipment using the ceramic coating "Sera Armor"! We solve issues such as product stagnation on the production line and the hassle of cleaning due to residue adhesion! 【Ideal for such customers!】 ◎ Products get stuck and stagnate on the line... ◎ Residue adheres, making post-operation cleaning cumbersome... ◎ The fluorine coating wears off quickly, requiring re-coating... 【Contents included】 ◆ Customer's issues ◆ Proposal from Shine Kogei ◆ What solutions were achieved ◆ About inquiries ◆ When making an inquiry, it would be smooth if you could provide the following information: 1. Characteristics of the substrate to be coated (material, shape, size, etc.) 2. Purpose of coating (e.g., non-stick, chemical resistance, slip properties, etc.) 3. Operating conditions (e.g., temperature, chemicals, wear condition, etc.) * If possible, providing drawings would be helpful for estimating costs.

  • Non-ferrous metals
  • Surface treatment contract service

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