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Coating - メーカー・企業41社の製品一覧とランキング

更新日: 集計期間:Sep 10, 2025~Oct 07, 2025
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Coatingのメーカー・企業ランキング

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  1. 吉田SKT Aichi//Manufacturing and processing contract
  2. フロロコート Saitama//others
  3. ニッカ Tokyo//Resin/Plastic
  4. 4 null/null
  5. 5 トーカロ Hyogo//Manufacturing and processing contract

Coatingの製品ランキング

更新日: 集計期間:Sep 10, 2025~Oct 07, 2025
※当サイトの各ページの閲覧回数を元に算出したランキングです。

  1. Advantages and disadvantages of re-coating a non-stick frying pan. 吉田SKT
  2. Liquid Coating Device WEKO Rotating Dumping ニッカ
  3. Fluororesin Coating: "Differences in Color and Selection Method" 吉田SKT
  4. 4 Causes of Teflon coating peeling and how to address them. 吉田SKT
  5. 5 Fluororesin coating "Adron Coating in Such Places" フロロコート

Coatingの製品一覧

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Guide to PFAS Measures for the Manufacturing Industry! From PFAS-Free Coatings to Solutions.

Understand the latest trends in PFAS and alternative technologies in one book! Free guide on PFAS measures for the manufacturing industry.

"The PFAS Countermeasures Guide for the Manufacturing Industry" is a comprehensive guidebook that consolidates essential information on the latest trends in PFAS and alternative technologies for 2025. It clearly explains the differences between PTFE, PFOS, and PFOA, which are surprisingly not well-known, through comparison tables detailing their structures, properties, and toxicity. Feel free to download it if you are interested. [Contents (excerpt)] ■ What are PFAS? ■ Latest trends in PFAS regulations ■ What should be done? Responding to regulations

  • Surface treatment contract service

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What are PFAS alternatives? Fluoropolymer (PTFE) alternative coatings.

Fluoropolymer (PTFE) alternative coatings compliant with environmental regulations.

PTFE (polytetrafluoroethylene) is the most widely used fluoropolymer and is also known by the brand name "Teflon." It is a material with properties such as non-stickiness, low friction, chemical resistance, weather resistance, excellent electrical characteristics, and high heat resistance (maximum operating temperature of 260°C). In response to trends in PFAS regulation, we are advancing the development of coatings using alternatives such as silicone and other engineering plastics as substitutes for PTFE (fluoropolymer). By appropriately adopting these alternatives according to their applications, it is expected that desirable functions can be achieved. 【Characteristics】 ■ Alternative technologies utilizing super engineering plastics such as silicone, PEEK, and PI ■ Non-fluorinated coatings optimized for specific applications ■ Functionality tailored to applications, such as release properties, non-stickiness, and chemical resistance 【Non-Fluorinated Coating Product Lineup】 Yoshida SKT continues to develop products in collaboration with customers, offering new non-fluorinated coating products as options to address next-generation challenges. Together with conventional products, we are realizing a diverse lineup of PFAS-free options. For more details, please download the materials or check the related links.

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PTFE alternative coatings in response to trends in PFAS regulation.

Fluoropolymer (PTFE) alternative coatings compliant with environmental regulations.

Among PFAS, PTFE (fluoropolymer) is a substance that has different properties from PFOS, PFOA, and PFHxS, which are regulated under international treaties (the POPs treaty). Unlike these substances, PTFE is considered to have no harmful effects unless used at significantly high temperatures. However, there is currently a proposal being considered within the EU to regulate a comprehensive range of PFAS, including PTFE. If this regulatory proposal is adopted, it could lead to international regulatory trends beyond the EU, so it is necessary to keep an eye on developments. If regulations on fluoropolymers become a reality, the impact on the manufacturing industry could be immense, forcing companies to seek alternatives. Since there is no technology that can completely replace the excellent functions of fluoropolymers, the response will be extremely challenging. Yoshida SKT offers both fluoropolymer coatings (Teflon coatings) and non-fluoropolymer coatings, providing proposals tailored to customer needs. For more details, please check the link.

  • Surface treatment contract service

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High hardness and excellent release properties coexist! CAS (Ceramic Alloy System)

High durability and high release property coating 'CAS (Ceramic Alloy Coating)'

**Features** CAS is a coating technology that achieves both high hardness and excellent release properties. It enables the formation of rounded convex surfaces, which was difficult with conventional coating technologies, thereby improving the release properties of adhesives and resins. Additionally, unlike traditional thermal spraying, it can be reprocessed without damaging the substrate, making it highly maintainable. **Differences Between CAS and Thermal Spraying** ■ Characteristics of Conventional Thermal Spraying Technology - Forms convex surfaces by spraying melted metals or ceramics at high temperatures, resulting in a jagged surface shape. ■ Characteristics of CAS Technology - Capable of forming rounded ceramic convex surfaces. **Five Features of CAS** - Excellent release properties - Wide processability - Selection of convex surfaces tailored to applications - Diverse lineup of release materials - Easy reprocessing This is a groundbreaking coating technology that realizes these features. For more details, please check the related links.

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Easy to reprocess and excellent release properties! CAS coating

A coating that allows for reprocessing without damaging the substrate compared to conventional thermal spraying during the stripping and reprocessing phase.

**Features** CAS is a coating technology that achieves both high hardness and excellent release properties. It realizes the formation of rounded convex surfaces, which was difficult with conventional coating technologies, thereby improving the release properties of adhesives and resins. Additionally, unlike traditional thermal spraying, it allows for reprocessing without damaging the substrate, making it highly maintainable. **Differences Between CAS and Thermal Spraying** ■ Characteristics of Conventional Thermal Spraying Technology - Forms convex surfaces by spraying melted metals or ceramics at high temperatures, resulting in a jagged surface texture. ■ Characteristics of CAS Technology - Capable of forming rounded ceramic convex surfaces. **Five Features of CAS** - Excellent release properties - Wide processability - Selection of convex surfaces tailored to applications - Diverse lineup of release materials - Easy reprocessing This is a groundbreaking coating technology that realizes these features. For more details, please check the related links.

  • Surface treatment contract service

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Explaining the features, advantages, and disadvantages of ETFE coating.

ETFE coating is a coating technology that uses ETFE, a copolymer of tetrafluoroethylene and ethylene.

ETFE coating is a type of fluoropolymer coating that is primarily processed using techniques such as powder coating and rotational molding. ■ What is ETFE Coating? ETFE is a type of fluoropolymer, specifically a copolymer of tetrafluoroethylene and ethylene. It is mainly processed using powder coating technology and is considered a relatively thick coating among fluoropolymer coatings. Therefore, it is commonly referred to as ETFE lining. ■ Advantages of ETFE Coating ETFE has a low melting point and excellent processability, allowing for thick coatings on various substrate shapes. ■ Disadvantages of ETFE Coating On the other hand, because its molecular structure contains hydrogen (H), its heat resistance and chemical resistance are inferior compared to PTFE. ETFE coating requires the selection of materials and methods according to the application, environment, and substrate shape. Yoshida SKT offers ETFE coating services through powder coating and rotational molding (rotolining). *If you are considering ETFE coating, please feel free to contact us. For those considering various linings, please also check the "Basic Knowledge of Lining" PDF.

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Methods to solve release defects in injection molding.

The astonishing durability that surpasses fluoropolymer coatings, "Bicoat," is a surface treatment suitable for applications subjected to mechanical stress. *Product and case materials are available.

**Main Causes of Release Failure in Injection Molding** Release failure is a common issue in the injection molding process. It often arises from excessive adhesion between the mold surface and the resin. This problem particularly occurs with complex shapes or thin-walled parts, where the resin strongly adheres to the mold surface. Surface roughness and insufficient draft angles can also worsen release properties. Additionally, high temperatures of the resin during release can contribute to release failure. "Bycoat® NYK-01" is a high-performance surface treatment that suppresses resin adhesion and wear in injection molding, thereby improving productivity. Its special coating, designed for use in high-temperature environments, achieves approximately double the lifespan compared to conventional surface treatments. This reduces the frequency of replacements and contributes to lower running costs. It has a proven track record with automotive motor parts manufacturers and has led to regular requests due to its reliable coating technology. **Features** ■ Incredible durability ■ High hardness, resistant to scratches ■ Excellent wear resistance ■ Outstanding non-stick and release properties ■ Safe for use in molds requiring micron-level precision *For more details, please refer to the PDF document or feel free to contact us.*

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CAS (Ceramic Alloy System) for Conveyors for Transport Equipment

Eliminate adhesive troubles in conveyor transport! Improve productivity with high release properties!

In on-site conveyor transport, troubles caused by product adhesion and sticking are common. These issues can lead to decreased productivity and deterioration of product quality. Yoshida SKT's "CAS (Ceramic Alloy Coating)" is a revolutionary coating technology that combines high durability and excellent release properties. It achieves the formation of rounded convex surfaces, which was difficult with conventional thermal spraying techniques, thereby improving the release properties of adhesives and resins. 【Usage Scenarios】 - Conveyor transport in logistics sites - Decreased productivity due to adhesion and sticking of products - Deterioration of product quality - Increased cleaning burden 【Benefits of Implementation】 - Increased productivity by resolving adhesion troubles - Stabilization of product quality - Reduction in cleaning time - Decrease in maintenance costs

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TP Coating: A fluororesin coating that innovates release properties on convex surfaces.

Forming fine convex surfaces with fluororesin to reduce contact area and improve release properties.

By forming a unique fine convex surface structure on the fluororesin coating, we solve challenges in high-temperature and high-load environments that conventional smooth coatings struggle to address. This is an innovative surface treatment technology that does not require processes like spraying or blasting and can be applied to thin plates and delicate components. 【Features】 ■ Reduces contact area with fine convex surface structure, achieving excellent release and lubricating properties ■ Durability over 10 times greater than conventional fluororesin coatings (based on case studies) ■ No need for spraying or blasting, suitable for thin plates and delicate components ■ Three series available to choose from according to application (TP-3○○ series, TP-4○○ series, TP-7○○ series)

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Contract Coating Service

"Advancing stainless steel with cutting-edge surface treatment technology" High-performance contract coating services

■What about the surface of stainless steel? Among stainless steels, the surface of austenitic stainless steel (SUS304) is covered with a passive film, making it resistant to rust and maintaining a beautiful luster in normal environments. However, in specific environments, it may corrode, and when used as machine parts, properties such as slip resistance and wear resistance become necessary. 【Types of Surface Treatment and Coating for SUS304】 - Electrolytic polishing - Sandblasting / bead blasting - Plating - Teflon coating There are methods like the above to modify the surface of stainless steel. Generally, these methods provide sufficient functionality, but if you want to further enhance durability, slip resistance, and non-stick properties, we introduce a coating that can meet such demands. 'Bicoat,' with its hard coating of HV700-900 and the lubricating properties of fluororesin, combines wear resistance, slip resistance, and non-stick properties, making it recommended for those who are not satisfied with conventional surface treatments and coatings. For more detailed product information about 'Bicoat(R),' please download the PDF materials and take a look.

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Insulation Coating PBI/PI Coating

Excellent insulation properties, resistant to friction heat, long-lasting, and the coating effect lasts!

PBI (Polybenzimidazole) and PI (Polyimide) possess the highest heat resistance among super engineering plastics, and they are ultra-super engineering plastics that excel in electrical insulation and other properties. At Yoshida SKT, we have developed a technology to apply PBI and PI, which have traditionally been used as plastic molded products, as coatings on metal products and other surfaces. This coating process allows us to enjoy the excellent functions and properties of super engineering plastics while also gaining advantages in cost and durability that molded products do not offer. *For more details, please refer to the catalog or contact us directly.

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Electrical insulation coating

Fluororesin is a high-performance insulating material with high insulation properties (high resistivity) and an extremely low dielectric loss tangent tanδ.

Fluororesin has high insulation properties, with a volume resistivity of Ω·cm or more, and its arc resistance is more than three times that of general-purpose resins, making it superior. Compared to other resins, it remains stable in various electrical environments. On the other hand, the coated surface is prone to charging, which can lead to issues such as the adhesion of foreign substances due to electrostatic attraction and electrostatic disasters. In such cases, you can choose fluororesin coatings with antistatic properties. [Selected Surface Treatments] ■ Electrical Insulation - Fluororesin Coating (Teflon Coating) - Polyimide Coating *For more details, please refer to the PDF document or feel free to contact us.

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Wear-resistant coating PFAS-free urethane coating

Wear-resistant coating without PFAS! All types are processed at room temperature, and can be applied to metals, as well as chemical wood and plastics.

"Urethane coating" is a resin coating that does not use PFAS. It excels in abrasion resistance and soundproofing, and is a room temperature curing type that can be processed onto any material except for liquids and gases. The usable temperature range is -30°C to 100°C, and depending on the grade, there are types that can be used for surface treatment of various transport equipment, as well as types that enhance slip performance and include static electricity countermeasures. Additionally, if you require a specific color, we are open to consultations. 【Features】 ■ Excellent abrasion resistance and soundproofing ■ Can be processed in various locations ■ Protects materials and equipment with coating ■ Cures at room temperature, making it suitable for various materials *For more details, please refer to the PDF document or feel free to contact us.

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  • Coating Agent

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PFAS-free wear-resistant resin coating

PFAS-free wear-resistant resin coating! All types are processed at room temperature and can be applied to metals, as well as chemical wood and plastics.

"Urethane coating" is a resin coating that does not use PFAS. It excels in abrasion resistance and soundproofing, and is a room temperature curing type that can be processed onto any material, excluding liquids and gases. The usable temperature range is -30°C to 100°C, and depending on the grade, there are types that can be used for surface treatment of various transport equipment, as well as types that enhance slip performance and include static electricity countermeasures. Additionally, if you require a specific color, we are open to consultations. 【Features】 ■ Excellent abrasion resistance and soundproofing ■ Can be processed in various locations ■ Protects materials and equipment with coating ■ Cures at room temperature, making it suitable for various materials *For more details, please refer to the PDF document or feel free to contact us.

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A PFAS-free coating that breaks the barrier of "fluoropolymer is difficult to replace."

We will introduce coatings that do not use PFAS, which are subject to the European PFAS regulation proposal.

"The excellent functionality of fluoropolymer cannot be completely replaced" - that's true. However, depending on the application and required performance, effective alternative coatings do exist. ■ Non-stick Coating "MRS Coating" Model Number: MRS-102, etc. Silicone-based coating that excels in releasing high-adhesion materials. ■ Convex Surface Forming Coating "CAS" Model Number: CAS-CX102, etc. A combination of ceramic convex surfaces and silicone that achieves smooth release properties. ■ High Hardness Coating "Bicoat" Model Number: NYK-52, etc. A composite of inorganic and organic materials that meets the precision required for molds at the micron level. ■ Lubricating Coating "FFLC Series" All model numbers are PFAS-free designs, with durability exceeding that of fluoropolymer under heating conditions. ■ Corrosion-resistant Coating "Cerashield" Model Number: CST-1508, etc. A composite of organic and inorganic materials that protects equipment, tanks, and piping in harsh environments. ■ High Hardness Coating "PEEK Coating" Model Number: YEK-0001, etc. Made from super engineering plastics, it has heat resistance comparable to fluoropolymer. *For coatings considering PFAS regulation proposals, please contact our company.

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