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Coating Product List and Ranking from 573 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Mar 18, 2026~Apr 14, 2026
This ranking is based on the number of page views on our site.

Coating Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Mar 18, 2026~Apr 14, 2026
This ranking is based on the number of page views on our site.

  1. 吉田SKT Aichi//Manufacturing and processing contract
  2. 日本コーティング工業 本社、大阪営業所、東京営業所、関西工場、東京工場 Hyogo//Manufacturing and processing contract
  3. 日建塗装工業 Tokyo//Manufacturing and processing contract
  4. 4 トーカロ Hyogo//Manufacturing and processing contract
  5. 5 フロロコート Saitama//others

Coating Product ranking

Last Updated: Aggregation Period:Mar 18, 2026~Apr 14, 2026
This ranking is based on the number of page views on our site.

  1. Understanding Thermal Spray Technology! Comprehensive Catalog of Ceramic & Metal Coatings 日本コーティング工業 本社、大阪営業所、東京営業所、関西工場、東京工場
  2. Advantages and disadvantages of re-coating a non-stick frying pan. 吉田SKT
  3. Causes of Teflon coating peeling and how to address them. 吉田SKT
  4. 4 BALINIT ALCRONA EVO - Born to evolve. Made to last. Oerlikon Japan Co., Ltd.
  5. 4 Water-repellent, non-stick, anti-adhesion coating "tt-kote series" トーカロ

Coating Product List

1951~1980 item / All 2643 items

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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
  • Coating

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Case study on improving mold release for molten metal: Coating that solved polyethylene stringing.

We will introduce a case where surface treatment technology solved the issue of stringing in welding molds.

■Request We want to eliminate stringing that occurs on the heating plate during the thermal welding of polyethylene containers. We aim to reduce product defects caused by stringing without changing the takt time and to decrease the frequency of replacing the heating plate. ■Criteria for Processing Selection As a result of considering cost-effectiveness, we require a lifespan that is twice that of the current coating. ■Achieved Effect By adopting CHC technology for the coating, we have successfully achieved both release effect and longevity. *You can download a PDF summarizing the product information. For more details, please contact us.

  • 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
  • Coating

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Case study on mold release for molten metal: Solving the stringing issue in battery cases through surface treatment.

We will introduce a coating case that solves the adhesion and stringing of resin that occurs during the welding process of the battery case container and lid.

■Concern In battery production, resin boxes and lids are welded together for sealing. The welding mold is made of aluminum and is heated to over 200°C for use. During this process, molten resin and stringing occur, which was addressed with a fluororesin (PTFE) coating. ■Background of Consultation with Our Company Due to the production of several thousand shots per day at temperatures above 200°C, the coating peels off in about a week. The hassle of changing setups for reprocessing and damage to the mold led to decreased production efficiency, prompting the consultation for improvements in surface treatment. ■Adopted Coating "CHC-1111CR" ■Adoption Background and Effects We proposed a newly developed "CHC-1111CR" that offers the same release properties as fluororesin coatings while maintaining high film hardness even when heated. Testing showed no stringing of the resin or peeling of the coating, allowing for use in tens of thousands of shots and achieving approximately three times the lifespan of conventional coatings. *For details on the coating, please refer to the PDF document.*

  • 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
  • Coating

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Surface treatment "Safron(R)"

Prevent "charging" of fluororesin coatings and reduce static electricity issues! It also minimizes adhesion caused by static electricity.

"SafeLon®" is a fluororesin-based surface treatment that enables static electricity prevention by allowing charges generated on the coating surface to flow to the substrate metal or ground. It reduces static electricity issues caused by fluororesin coatings and provides functions such as "preventing adhesion," "increasing slipperiness," and "enhancing corrosion resistance." Additionally, it improves production efficiency in various settings by preventing product troubles caused by material sticking and lightening the cleaning work of adhered substances. 【Features】 - Prevention of static electricity on the coating surface - Good release from adhesives, preventing or making it difficult for them to stick - Improved lubricity due to the low friction coefficient of fluororesin coatings - Prevents poor flow and clogging during transport by treating transport guides, chutes, pipes, etc. - Protects tanks and stirring blades that come into contact with chemicals, enhancing safety and durability *For more details, please refer to the PDF document or feel free to contact us.

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  • Surface treatment contract service
  • Coating

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What is "MYL-001"? It is a permeation-resistant PFA fluororesin lining.

"MYL-001" is a thick film PFA lining that can improve permeation resistance and blister resistance.

The term "MYL-001" refers to a fluororesin lining called "MY Lining," which has significantly improved permeation resistance compared to standard PFA. - It is expected to have a lifespan several times longer than conventional products (according to our coating comparison). - It is suitable for environments that could not be used before or for places where the previous lifespan was unsatisfactory. - Lining can be applied to complex shapes such as eye plates and stirrers. 【Features】 ■ Dramatic improvement in permeation resistance performance (compared to our products) ■ Thick film processing possible (MAX 2000μm) ■ Strong adhesion (vacuum resistance) ■ Seamless integrated processing ■ Lining possible for complex shapes such as eye plates and search machines *For more details, please refer to the PDF document or feel free to contact us.

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  • Surface treatment contract service
  • Coating

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What is "TP-855"? An explanation of Yoshida SKT's coating.

TP-855" is Yoshida SKT's "contact area reduction type fluororesin coating.

There are various types of resin for fluoropolymer coatings depending on the application environment. At Yoshida SKT, we specify materials and processing based on the product number. "TP-855" is a type of fluoropolymer coating designed to reduce contact area and is one of the "TP Coatings." TP Coatings are characterized by their ability to form unique convex surfaces solely from fluoropolymer, offering excellent release properties and slip resistance against adhesives. For more details, please download the materials or contact us.

  • Secondary Cells/Batteries
  • Coating

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Explanation of the types of mold coatings, their purposes, and features.

We will introduce coatings that improve the hardness, wear resistance, corrosion resistance, and non-stick properties of mold surfaces.

**Main Purposes of Mold Coating** - To extend the lifespan of molds by improving the hardness of the mold surface. - To enhance the quality of molded products by ensuring a smooth flow of resin. - To prevent resin adhesion by providing non-stick properties. **Main Types and Features of Mold Coatings** - **Chrome Plating** Chrome plating can improve the hardness of the mold surface. It also excels in wear resistance and corrosion resistance. - **DLC Coating** By forming a thin film called Diamond-Like Carbon (DLC) on the mold surface, it can enhance the hardness and non-stick properties of the mold surface. - **TiCN Coating** By forming a thin film called Titanium Carbonitride (TiCN) on the mold surface, it can improve the hardness, wear resistance, and corrosion resistance of the mold surface. - **Teflon Coating** By forming a Teflon resin with excellent non-stick properties on the mold surface, it can prevent resin adhesion. However, there may be cases where desired functions such as release properties and durability are not met with these surface treatments. If you are having trouble with mold coatings, please consider "Bicoat."

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  • Other molds
  • Coating

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What is the efficiency of transportation? Introducing specific improvement examples utilizing surface treatment.

In engineering, transportation is considered a waste that does not produce anything. Streamlining transportation directly leads to increased productivity. *Case study collection available.

Streamlining transportation refers to optimizing the process of moving products to save time and effort. For example, it includes improving methods for efficiently transporting products between processes in a factory or after packaging finished goods for shipment. Additionally, the automation of transportation processes and the use of robots are also related to streamlining transportation. Approaches to streamline transportation include improving transportation methods and means, enhancing worker training and skills, automating transportation tasks, and strengthening tracking and management of transportation. By adopting these improvements, many industries, such as manufacturing, can enhance productivity and achieve benefits like cost reduction and increased customer satisfaction. Yoshida SKT contributes to improving your transportation processes and equipment with its unique surface treatment technology, helping to enhance operational efficiency. Yoshida SKT's convex coating will assist you in transitioning to the new normal of transportation! [We are offering a collection of case studies on improvements through coating as a gift.] If you are interested, please request the "trial set" from the related link.

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  • Conveyor
  • Coating

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What are the characteristics of fluororesin? | Textbook on Fluororesin Coating

We are currently offering a textbook filled with practical information about the characteristics of fluororesin coatings, from basic content to tips for selection.

■What are the characteristics of fluoropolymer resins? Fluoropolymer resins have unique characteristics compared to other resins. - Non-stick property A characteristic that makes it difficult for things to stick. - Low friction (slipperiness) A characteristic that has low friction resistance and is easy to slide. - Water and oil repellency A characteristic that repels water and oil. - Chemical resistance A characteristic that does not get affected or dissolve in chemicals. - Heat and cold resistance A characteristic that withstands high and low temperatures. - Electrical insulation A characteristic that insulates electricity. - Weather resistance A characteristic that is less affected by ultraviolet rays. - Purity A characteristic that is chemically inert. In "The Textbook of Fluoropolymer Coatings," we will explain in detail why it possesses such a diverse range of characteristics. [Contents (excerpt)] ■What is fluoropolymer? ■Explanation of the characteristics of fluoropolymer ■Processing methods for fluoropolymer coatings ■Tips for selecting fluoropolymer coatings ■Suitable substrates for fluoropolymer coatings ■Case studies of fluoropolymer coatings If you are interested, please download the materials from the link below.

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  • Surface treatment contract service
  • Coating

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List of surface treatments with excellent release properties.

This surface treatment is effective when you want to reduce adhesion, such as in mold release or heat plate release! We will introduce a surface treatment with excellent release properties.

"Release properties" refer to the ability of a mold to release from the cast, and it is often used with a similar meaning to non-stick properties. Non-stick properties refer to the characteristic of not adhering to or being difficult to adhere to strongly adhesive substances. Surface treatments with excellent release properties often use materials such as fluororesin and silicone, which have low surface free energy and, due to their molecular structure, possess properties that make them difficult to wet. Surface treatments that utilize such functions are effective for release applications, applications where adhesion needs to be minimized, and for simplifying cleaning. 【Selected Coatings (Partial)】 ■ Non-stick, slippery, heat-resistant - Fluororesin coating ■ Release properties, high hardness, dimensional stability (durable parts, molds) - Bi-Coat ■ Resin release at high temperatures - FSR coating ■ Prevention of adhesion of high-viscosity substances - Adhesive release coating - CTT fabric sheet - MRS coating (silicone-based coating) ■ Release properties, precision, water repellency, oil repellency, liquid runoff (precision parts, precision molds) - Nano process *For more details, please refer to the PDF document or feel free to contact us.

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  • Processing Contract
  • Coating

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PFAS-free corrosion-resistant coating "Cerashield"

PFAS-free corrosion-resistant coating! It can be used for corrosion prevention and permeation prevention against gases and chemicals.

The organic-inorganic oxyalkylene oligomer coating system "Cerashield" is a corrosion-resistant coating material that reduces the frequency of updates for industrial equipment such as tanks by preventing corrosion and permeation. It is a hardening type paint with excellent corrosion prevention effects, forming a coating film with high crosslink density. Additionally, it can be applied to a wide range of substrates including metals, plastics, wood, concrete, and ceramics, demonstrating excellent adhesion. There are two types available: the room temperature curing type "Cerashield CST-1108" and the heat curing type "Cerashield CST-1508." 【Features】 ■ Reliable corrosion resistance ■ All-around chemical resistance (heat curing type) ■ Room temperature processing available (room temperature curing type) ■ Excellent hardness ■ Electrical insulation ■ Advantageous for aftercare *For more details, please refer to the PDF document or feel free to contact us. For coatings considering the use of PFAS, please contact our company.

  • Coating Agent
  • Coating

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What is corrosion protection? Explanation of methods to enhance corrosion resistance [Materials available].

Is it enough to prevent just one element of corrosion for corrosion protection?

Corrosion prevention refers to methods used to prevent corrosion. Metal corrosion is a state in which the appearance and function of an object are compromised due to chemical and biological actions. Iron is generally cited as a metal material that is prone to corrosion. These metals can undergo rust and corrosion as a result of factors that cause corrosion, such as oxygen, sulfur, nitrogen, and water vapor present in the atmosphere, combined with the inherent properties of the metal, impurities, and electrochemical reactions. ■ The three main elements of corrosion: - The flow of electricity - The presence of water - The presence of oxides To enhance corrosion resistance, it is important to prevent one of these three elements. ■ Corrosion prevention using Teflon fluoropolymer Teflon fluoropolymer is widely used as a corrosion-resistant material due to its exceptional chemical resistance among resins. This is not only because of its excellent chemical resistance but also due to its insulating properties, water repellency, and weather resistance. Additionally, advancements in processing technology have made it possible to select materials and shapes suited to specific applications. *For details on coatings and linings that enhance corrosion resistance, please download the materials for confirmation.

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  • Processing Contract
  • Coating

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Coating Technology: "Coating Case Studies Specialized in Adhesion Prevention for Heat Welding"

CHC coating technology contributes to improving durability in high-temperature environments compared to PTFE coating.

CHC (Ceramic Hard Coat) is a new type of coating technology that achieves both non-stick properties equivalent to conventional fluoropolymer coatings and high film hardness at elevated temperatures. ■ Examples of Surface Treatment Applications - A case where high-temperature release and long-term durability were achieved in the thermal welding process of filter cases. - A case where the release effect from processing thermal welding plates lasted three times longer than PTFE coatings. - A case that resolved the "peeling" and "blistering" issues of fluorine coatings on resin welding plates. - A case that eliminated adhesive adhesion and peeling at high temperatures, which could not be resolved with PTFE coatings. *You can download a PDF summarizing detailed case studies and product information. Please contact us for more information.

  • 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
  • Coating

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Chemical resistance of Teflon, fluoropolymer, PTFE, and PFA.

I will explain the chemical resistance of Teflon, fluoropolymer, PTFE, and PFA.

PTFE (polytetrafluoroethylene) and PFA (perfluoroalkoxy alkane) are types of fluoropolymer that both exhibit excellent chemical resistance. PTFE and PFA are resistant to chemical substances and are stable against acids, alkalis, organic solvents, and corrosive gases. They do not react with most substances and do not corrode or degrade. As a result, they are widely used as chemical containers, piping, gaskets, and sealing materials. PFA has a lower melt viscosity compared to PTFE, making it relatively easy to mold and process. Therefore, it expands the range of applications, especially for coatings that require chemical resistance or for thick film processing. *For more detailed information on chemical resistance, please download the materials or contact us.*

  • Surface treatment contract service
  • Coating

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[Example] Adhesion prevention coating for a device that automatically applies adhesive tape.

Introducing examples of coatings that prevent adhesive from sticking, enabling the transport of duct tape.

■Problems We Wanted to Solve We received a consultation regarding the accumulation of adhesive on the feed roll of a device that automatically applies tape, which caused line stoppage issues that needed to be resolved. ■Background / Conditions for Choosing Treatment Initially, a knurling process was implemented as a countermeasure, but it was not very effective. Therefore, we proposed a coating that prevents tape adhesion. ■Adopted Treatment MRS Coating ■Achieved Effects After processing and testing with a prototype roller, there was no longer any adhesive accumulation or tape sticking, and they are considering expanding this solution to other lines. For detailed information on the surface treatment, please download the materials or contact us.

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  • Surface treatment contract service
  • Coating

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Does fluoropolymer dissolve in hydrochloric acid? Explanation.

Does fluoropolymer, which has excellent chemical resistance, dissolve in hydrochloric acid?

Fluororesin is a material that exhibits excellent chemical resistance to almost all chemicals. Hydrochloric acid is a strong acid that can dissolve many metals, but fluororesin does not dissolve in hydrochloric acid. Fluororesin is generally not affected by hydrochloric acid on its own; however, caution is necessary when used as linings or coatings intended to protect metals. Hydrochloric acid can penetrate fluororesin linings or coatings depending on its concentration and temperature. This penetration can lead to blistering, which impairs corrosion resistance. Additionally, thin fluororesin coatings may leave pinholes, allowing hydrochloric acid to infiltrate and directly corrode the substrate. If you want to protect metals from chemical solutions like hydrochloric acid, please consult us when considering measures involving fluororesin.

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  • Coating

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What is the difference between lining and fluororesin (Teflon) coating?

I will explain the differences between fluororesin (Teflon) coating and lining.

■Difference Between Lining and Coating Lining is a method that protects the substrate with a relatively thick film, enhancing its corrosion resistance. The differences from coating include the thickness of the film, the presence of pinholes, and the intended use. There are no clear standards, but thick films used for corrosion protection are referred to as lining. ■What is Fluororesin Coating? Coating is a surface treatment technology that can impart the properties of fluororesin to the surface of a substrate, primarily using a baking paint method. The film thickness is generally around several tens of micrometers. ■What is Fluororesin Lining? Fluororesin lining can be processed using the same method as coating. It is particularly used for corrosion protection applications that leverage chemical resistance, and the film thickness is several hundred micrometers, making it thicker than coating. Additionally, to enhance corrosion resistance, processing without pinholes is possible. *You can download a document summarizing information about lining. *For more details, please click on "PDF Download" or feel free to contact us.

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What is delamination? Introducing surface treatments that excel in delamination resistance.

[Presentation of Materials] What is release property? We will introduce methods to improve release property and coatings that are particularly excellent in release property.

Release properties refer to the characteristic of materials or products that allows them to be easily removed from molds or forming tools without sticking. This property is important in the manufacturing process and affects product quality and production efficiency. ■ Methods to Improve Release Properties By applying a release agent to the surface, a thin film is created between the mold and the product, preventing adhesion. Silicone and fluorine-based release agents provide excellent release properties for many materials. ■ Resin Coating Applying a resin coating to the surface exhibits non-stick properties, making it easier to remove the product. Fluororesin coatings are commonly used. ■ Metal Plating For example, chrome plating has high hardness and is less reactive with other substances, aiding in product removal. Fluororesin-containing types of plating also exhibit non-stick properties. ■ Surface Roughness Adjustment By designing the surface with fine uneven structures, the contact area is reduced, thereby decreasing adhesion. As mentioned above, there are various methods, but we will introduce surface treatment technologies and coatings that are particularly effective in enhancing release properties, reducing product defects, and improving productivity. For more details, please download the PDF document or feel free to contact us.

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What is the heat resistance temperature of fluorine coatings? An explanation of the varying heat resistance by type.

I will explain the heat resistance of fluororesin coatings.

There are various types of fluorine coatings, even if we refer to them simply as such. Typical examples include PTFE, FEP, PFA, and ETFE. In practice, the heat resistance varies depending on the application, but the continuous use temperatures for fluororesins are defined. ■ Continuous Use Temperatures - PTFE: 260℃ - FEP: 200℃ - PFA: 260℃ - ETFE: 150℃ For example, when used as an anti-corrosion coating, the practical heat resistance will be at a much lower temperature. Additionally, when considering applications that involve friction or physical contact, further considerations are necessary. Fluorine coatings (fluororesin coatings) possess various properties such as non-stickiness, low friction, chemical resistance, electrical characteristics, and weather resistance, and it is essential to consider the type and thickness according to each application. *For more details, please click on "PDF Download" or feel free to contact us.

  • Resin mold
  • Coating

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Regulations on Teflon? Regarding the PFAS regulation proposal.

The regulation of Teflon resin explains the proposed PFAS regulations.

Teflon is a trademark of Chemours and refers to fluoropolymer. Fluoropolymers include types such as PTFE, PFA, and FEP, but currently, the use of fluoropolymers like PTFE, PFA, and FEP is not regulated in Japan. On the other hand, within the EU, regulatory proposals are being considered to minimize the emissions of PFAS. The following substances are also mentioned as targets: - Fluorinated surface treatment agents: water and oil repellents, release agents, fluoropolymer-containing coatings, etc. - Coatings: PTFE, PFA, FEP, ETFE, and other fluoropolymers (for applications such as corrosion lining, non-stick, lubrication, etc.) - Molding and processed products: PTFE, PFA, FEP, ETFE, and other fluoropolymers (such as lining sheets, fabric sheets, etc.) - Fluorinated surfactants, fluorinated oils, low molecular weight PTFE, fluorinated molding aids, etc. The regulatory proposals include fluoropolymers, which are considered to be extremely stable and pose no toxicological or environmental concerns. For more details, please download the materials or check our website through the related links.

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Understand the differences between PTFE, PFA, FEP, and ETFE! Technical materials available.

A detailed explanation of the differences between PTFE and PFA, which are surprisingly not well known, including their 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 functionality, such as being non-stick and slippery, 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 characteristics 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

  • Surface treatment contract service
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Introducing the features and types of non-stick coatings.

Non-stick means that things do not stick. Non-stick coatings can prevent the sticking and adhesion of items.

"Non-stick" can be rephrased as non-adhesive. By processing a non-stick coating, it becomes easier to release from strongly adhesive substances, resulting in surfaces that either do not adhere or are difficult to adhere to. Such properties can be achieved through fluoropolymer coatings or silicone coatings. Not only for household frying pans but also for improving the release properties and reducing adhesion of jigs and component parts used in production environments. Here are some examples of non-stick coatings. 【Selected Coatings (Partial)】 ■ Non-adhesive, slippery, chemical-resistant - Fluoropolymer coating ■ Release properties, high hardness, dimensional stability (durable parts, molds) - Bi-coat ■ Resin release at high temperatures - FSR coating ■ Prevention of adhesion of high-adhesion substances - Adhesive release coating - MRS coating (silicone-based coating) ■ Release properties, precision (precision parts, precision molds) - Nano process *For more details, please refer to the PDF materials or feel free to contact us.

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PFAS-free (non-use) abrasion-resistant coating, urethane coating

[Presentation of Materials] PFAS-free abrasion-resistant resin coating! All types are processed at room temperature and can be applied to metal, chemical wood, and plastic.

"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 measures against static electricity. Additionally, if you require a specific color, we can accommodate your request. [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 click "PDF Download" or feel free to contact us.

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PFAS-free (non-use) abrasion-resistant, release, and slip-resistant coating

[Presentation of Materials] We will introduce a coating that provides release properties and slip properties without the use of PFAS.

"Bycoat Exceed HR↑" achieves PFAS-free, non-stick properties, improved slip characteristics, and enhanced heat resistance. For example, it provides reliable release properties even when using molds made from highly adhesive resins. Additionally, like conventional Bycoat, it offers excellent dimensional accuracy, making it suitable for areas requiring micron-level precision. 【Features of Bycoat Exceed HR↑】 - High hardness, long lifespan, dimensional stability of Bycoat × enhanced heat resistance grade *For more details, please click on "PDF Download" or feel free to contact us. For information regarding coatings considering PFAS regulations, please contact our company.

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PFAS-free (non-use) anti-corrosion coating 'Cerashield'

[Information Presentation] PFAS-free anti-corrosion coating! It can be used for corrosion prevention measures against corrosive gases and chemicals, as well as for penetration measures.

The organic-inorganic oxirane oligomer coating system "Cerashield" is a PFAS-free coating that prevents corrosion and permeation, serving as a corrosion-resistant coating that reduces the frequency of updates for industrial equipment such as tanks. It is a hardening-type paint with excellent corrosion prevention effects, forming a coating film with high crosslink density. Additionally, it can be applied to a wide range of substrates including metal, plastic, wood, concrete, and ceramics, demonstrating excellent adhesion. There are two types available: the room temperature curing type "Cerashield CST-1108" and the heat curing type "Cerashield CST-1508." 【Features】 ■ Reliable corrosion resistance ■ All-around chemical resistance (heat curing type) ■ Room temperature processing available (room temperature curing type) ■ Excellent hardness ■ Electrical insulation ■ Advantageous for aftercare *For more details, please refer to the PDF materials or feel free to contact us. For inquiries about PFAS-free coatings, please contact our company.

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[Data Download] Surface Treatment "By Application" Chosen in the Semiconductor and Electronics Field

We will introduce surface treatment technologies chosen for semiconductor manufacturing and electronic component manufacturing.

■Applications such as plating jigs, soldering jigs, and semiconductor manufacturing lines - Selected surface treatment 'TEFLON (TM) fluoropolymer coating' ■Applications such as precision molds - Selected surface treatment 'Bicoat (R)' 'Nanoprocess (R)' ■Applications such as wafer and glass handling - Selected surface treatment 'Saflon (R)' 'PBI, PI coating' ■Applications such as precision nozzles, MEMS components, and optical lenses - Selected surface treatment 'Nanoprocess (R)' ■Applications such as chemical supply tanks - Selected surface treatment 'TEFLON (TM) fluoropolymer coating' 'Saflon (R) AP+' 'MY Lining (R)' ■Applications such as clean room walls, experimental equipment, and various jigs - Selected surface treatment 'SeraShield F' *You can download the PDF of the introduced surface treatment products. Please download the materials and contact us for more details.*

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What is "STP-HS"? An explanation of Yoshida SKT's coating.

Yoshida SKT's coating 'STP-HS' is a revolutionary fluororesin coating that reduces contact surface area.

There are various types of resin for fluoropolymer coatings depending on the application environment. At Yoshida SKT, we specify materials and processing based on the product number. 'STP-HS' is a type of fluoropolymer coating designed to reduce contact area and is one of the 'Super TP Coating Hemisphere Graphics'. Super TP Coating uniquely forms a convex surface using only fluoropolymer, characterized by excellent release properties and slip resistance against adhesives. For more details, please download the materials or contact us.

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[Sample Presentation] Surface Treatment and Coating to Prevent Troubles with Conveying Equipment

With Yoshida SKT's convex coating, transportation becomes smoother.

We solve product jams and adhesion issues that occur in conveying devices with Yoshida SKT's surface treatment. Surface treatment (coating) helps reduce problems that arise in conveying devices and improve efficiency. Specifically, we can address the following issues: - Jamming of conveyed items - Adhesion of products - Wear of conveying devices Yoshida SKT's surface treatment offers a combination of various technologies to solve these problems. For example, we provide coatings that prevent wear and dirt, coatings that prevent adhesion, and coatings that enhance sliding. [We offer a collection of case studies on improvements through coating] If you are interested, please request a "trial set" through the related link!

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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.

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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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