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Coating Product List and Ranking from 567 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.

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. 吉田SKT Aichi//Manufacturing and processing contract
  2. グローバルコード 本社 Osaka//Trading company/Wholesale
  3. NGKファインモールド Aichi//Machine elements and parts
  4. 4 KGテクノサービス Saitama//Resin/Plastic
  5. 5 null/null

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. Advantages and disadvantages of re-coating a non-stick frying pan. 吉田SKT
  2. Effective hard coating for resin molding of glass-filled engineering plastics. NGKファインモールド
  3. Low friction solution with PEEK coating and high-performance lubricants. グローバルコード 本社
  4. 4 Causes of Teflon coating peeling and how to address them. 吉田SKT
  5. 5 Granting biodegradability to difficult-to-decompose plastics | High-performance plastic additives KGテクノサービス

Coating Product List

2296~2310 item / All 2475 items

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"DLC coating" with a rich variety of membrane types, including hydrogen-free options. *Case studies available.

Prevent wear and scratches on cutting tools, molds, and machine parts! Types compatible with resin and rubber are also available.

Our "DLC Coating" not only offers high wear resistance but also possesses the characteristics required for mechanical relative motion such as rotation, sliding, and reciprocation, making it widely applicable to cutting tools, molds, automotive parts, sealing materials, and more. We offer a variety of film types that can be selected according to specific challenges, including the hydrogen-free "Genius Coat HA," which reduces friction resistance, and "Genius Coat F," which adapts to the deformation of resin and rubber materials. 【Examples of Applications】 ■ Automotive engine parts: Improved fuel efficiency by reducing friction resistance in oil ■ Various molds: Enhanced resistance to welding and wear ■ Industrial cutting tools: Improved resistance to welding and adhesion (burr prevention) ■ O-rings: Improved sliding properties while maintaining sealing performance 【We will be exhibiting at the 23rd Mechanical Elements Technology Exhibition Tokyo 2019!】 ■ Dates: February 6 (Wednesday) to February 8 (Friday), 2019 ■ Venue: Tokyo Big Sight ■ Booth Number: East 35-24 (East Hall 4) We will showcase various products, including DLC coatings. Please take this opportunity to visit our booth. *We are currently offering materials summarizing the features and application examples of DLC! For more details, please check the materials available for "PDF Download."

  • Surface treatment contract service

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Heat-resistant insulation and acid-resistant coating "Polyimide Electrodeposition Processing Services"

The polyimide electrocoating, which has excellent chemical resistance, shows no impact on the coating even after 96 hours of immersion in 20% nitric acid!

In our processing operations of polyimide-based electrocoating, which excels in chemical resistance, we provide various metal products with special properties tailored to your needs based on the know-how cultivated through our unique research and development. There is no impact on the coating even after 96 hours of immersion in 20% nitric acid! Our proprietary "Electrocoat Process" ensures thorough coating on uneven parts and products! We achieve a smooth finish with a uniform coating thickness. Since we coat while rinsing with water, our process is less prone to dust and debris commonly found in the atmosphere, making it suitable for product processing in fields where even small dust particles cannot be tolerated. 【Features】 ■ Uniform coating on complex shapes! ■ Smooth finish with uniform coating thickness! ■ Measures against dust and debris issues! *For more details, please contact us or download our catalog for more information.

  • Surface treatment contract service

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[Problem Solving Case] Wanted to reduce costs by substituting rolling bearings.

Cost reduction through the replacement of bearings in the rotating sliding parts of AT components! A case that ensures low friction.

We would like to introduce a case study of problem-solving using Japan MT's "Dry Lubrication Coating Dry Surface." There was a challenge of "using bearings to ensure a good feel and low friction during rotational motion, but it is difficult to reduce costs." In response, we implemented a PTFE coating on the inner surface as a simple bearing structure. This ensured low friction and made it possible to reduce the number of parts and control costs. [Key Points of Problem Solving] - The low-friction, sliding coating is formed with PTFE and a hard engineering plastic, and has a proven track record in sliding parts under light loads. - In fields where oil is used in conjunction, it is also possible to further reduce friction and wear, and in this case, the number of parts was reduced, contributing to cost savings. *For more details, please refer to the PDF document or feel free to contact us.

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[Problem Solving Case] Adhesive film sticking to the cutting blade.

It is necessary to ensure the sharpness of the cutter while applying a non-stick treatment! Example of dry lubrication coating.

We would like to introduce a case study of problem-solving for special applications by Nippon MT Corporation. We were using non-coated products, but it was necessary to regularly remove adhesive substances, which significantly reduced productivity. Therefore, we processed with CE100C-MT. The adhesion of substances has decreased, resulting in less maintenance and replacement frequency. Additionally, the film thickness is about 2μm, allowing us to maintain sharpness. [Key Points of Problem Solving] - To make it difficult for adhesive substances to stick, Teflon coating is commonly used. - The film thickness of Teflon coating is about 20μm, so while it eliminates sticking for cutting tools, it may reduce sharpness and lead to other issues. - Generally, the processing temperature for Teflon coating is around 400°C, which can sometimes cause a decrease in the hardness of the cutting tool itself. *For more details, please refer to the PDF document or feel free to contact us.

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[Problem Solving Case] Consideration of Seizing During Assembly of Stainless Steel Bottles

Assembly accuracy and productivity are smooth! A case where molybdenum disulfide demonstrated its performance!

We would like to introduce a case that solved the problem of "seizing occurring during the assembly of stainless steel bottles, making assembly impossible." We were using a PTFE-based coating, but due to insufficient surface pressure resistance of PTFE, we could not meet the performance requirements. Under high load and high surface pressure conditions, the initial break-in coating MD1610 proved effective, allowing for smoother assembly accuracy and productivity. [Key Points of Problem Solving] - Representative examples of solid lubricants include molybdenum disulfide, graphite, and PTFE, each having different load and temperature ranges in which they perform effectively. - In this case, PTFE was insufficient in performance under high load conditions, while molybdenum disulfide, with approximately three times the load-bearing capacity, demonstrated effective performance. *For more details, please refer to the PDF document or feel free to contact us.

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[Problem-Solving Case] Measures to Prevent Bolt Seizure in Exhaust System Pipes

There may be a possibility of removal after use! Examples of dry lubrication coating on dry surfaces.

We would like to introduce a case that solved the problem of wanting to prevent the seizing of stainless steel in an environment of 800°C. We were using heat-resistant grease, but there was a possibility of smoke generation in high-temperature areas, and it could also cause difficulties in disassembly after many years of use. Therefore, by applying heat-resistant and wear-resistant coatings, we maintained low torque during assembly. Seizing was prevented even after prolonged use in high-temperature environments, resulting in improved reliability. [Key Points of Problem Solving] - Various components in high-temperature environments face various issues due to the high temperatures. - Friction and wear conditions are more severe at high temperatures than at room temperature, and the progression is also rapid. - Heat-resistant and wear-resistant coatings protect components even in such environments, and the action of solid lubricants can prevent seizing and galling over the long term. - This greatly contributes to improved reliability. *For more details, please refer to the PDF document or feel free to contact us.

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[Problem-Solving Case] Wear Resistance Measures for the Sliding Parts of a Winding Machine

Due to the action of molybdenum disulfide, load-bearing capacity and low friction properties are provided! An example of a wear-resistant coating.

We would like to introduce a case that solved the problem of "increased load on components and accelerated wear due to the high-speed operation of machines." While hard chrome plating and other measures were applied at key points, fundamental wear countermeasures were not implemented, and there were components where maintaining precision was difficult with plating due to strict accuracy requirements. Additionally, the material was SK steel, which required processing at temperatures below 200°C to ensure strength. Therefore, we applied the wear-resistant coating MD2812. Thanks to the abundant molybdenum disulfide, initial wear is reduced, and the use of durable resin ensures low friction. The processing temperature is also below 200°C, so there is no impact on the components. [Key Points of Problem Solving] ■ Just being hard is not enough to prevent wear; this is the fundamental issue. ■ The action of molybdenum disulfide contained in the wear-resistant coating imparts load-bearing capacity and low friction. ■ Molybdenum disulfide transfers to the counterpart, creating an ideal surface condition on the opposing side. *For more details, please refer to the PDF document or feel free to contact us.

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[Problem-Solving Case] Coating with High Thermal Conductivity and Insulation Properties

A case that combines a coating for heat dissipation and a highly insulating coating!

We would like to introduce a case study of problem-solving using Japan MT's "Dry Lubrication Coating Dry Surface." This involved the application of an insulating film on an aluminum cover for automotive motors, requiring an insulating coating with high thermal conductivity (heat absorption). Initially, we planned to use alumina thermal spraying, but it was very costly, and we needed to secure a film thickness of over 100μm, which posed precision issues. Therefore, we applied the insulating coating DC2830 to ensure insulation at around 20μm. Additionally, we applied the 8441MT coating on top, which also improved thermal issues. The processing temperature was below 200°C, with no impact on the aluminum. [Key Points of Problem Solving] ■ Insulation and thermal conductivity generally have opposing properties. ■ In this case, we attempted to meet both performance requirements by combining a coating that dissipates heat with a highly insulating coating. *For more details, please refer to the PDF document or feel free to contact us.

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PE (Polyethylene) Coating

PE coating that is heated and melted at low temperatures for finishing.

PE coating involves dipping processed products that have been heated to high temperatures into colored polyethylene powder, allowing the heat from the products to melt and adhere the polyethylene powder, and then finishing by heating at low temperatures to melt it. 【Features】 ○ The polyethylene film is thicker compared to electrostatic painting, which applies static electricity to adhere polyethylene to the products. ○ Special specifications of polyethylene powder are also available: - Powder with better weather resistance and abrasion resistance compared to general PE. - Powder mixed with additives that have antibacterial effects. ● For more details, please contact us.

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DLC (TAC) thin film on plastic and ceramic materials, rubber materials.

Due to low-temperature film formation, DLC (TAC) can be deposited on various materials! Significantly improved wear resistance and scratch resistance! Replacement from metal materials to plastic materials.

The deposition of DLC (ta-C) films, which was difficult to coat on plastic and ceramic materials, has become possible. Since the coating is done at low temperatures, there is no deformation or alteration of the substrate materials. Furthermore, by coating a decorative film (metal film) on DLC (TAC), we can provide a high-quality, high-hardness film. Coating of not only DLC (TAC) but also metal films is possible. 【Features】 ■ Low-temperature deposition ■ Scratch resistance ■ DLC (TAC) + decorative film is possible *For more details, please download the PDF or contact us.

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