Fluorine resin coatingのメーカーや取扱い企業、製品情報、参考価格、ランキングをまとめています。
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Fluorine resin coating - メーカー・企業38社の製品一覧とランキング

更新日: 集計期間:Oct 29, 2025~Nov 25, 2025
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Fluorine resin coatingのメーカー・企業ランキング

更新日: 集計期間:Oct 29, 2025~Nov 25, 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. 吉田SKT Aichi//Manufacturing and processing contract
  2. フロロコート Saitama//others
  3. 東海ライニング工業 Gifu//Manufacturing and processing contract
  4. 4 YMM コーティング事業部 Osaka//others
  5. 5 null/null

Fluorine resin coatingの製品ランキング

更新日: 集計期間:Oct 29, 2025~Nov 25, 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. Causes of Teflon coating peeling and how to address them. 吉田SKT
  3. Fluororesin Coating: "Differences in Color and Selection Method" 吉田SKT
  4. 4 Regulations on Teflon? Regarding the PFAS regulation proposal. 吉田SKT
  5. 4 What is foldability? An explanation of materials with excellent slip properties and low friction. 吉田SKT

Fluorine resin coatingの製品一覧

331~345 件を表示 / 全 362 件

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Case Study on Surface Treatment: "Reducing the Use of Release Agents in Rubber Molding Dies"

Significantly reduces the adhesion of rubber to the inner diameter of pipe-shaped molds. By utilizing surface treatment, various production challenges can be solved. Samples and case studies are currently being offered.

In a production line, troubles such as the following can occur at any time: ■ Line stoppage ■ Delay in takt time ■ Increase in defects ■ etc... When such problems arise, quick responses and identifying the causes are important, but learning preventive measures in advance can help avert emergencies. By imparting "release properties and slip properties" through surface treatment, we are currently offering free "trial sets" that have actually improved production processes, as well as a "case study collection on process improvement." For more details on the cases, please download the "case study collection on process improvement" and check it out. You can apply for a free trial set of surface treatment samples through the "related links." We encourage you to take this opportunity to apply.

  • Other surface treatment equipment

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Case Studies on Surface Treatment: "Improving Resin Release with Ejector Pins"

Reduces the adhesion of soft resin and allows for easy demolding with ejector pins. Surface treatment can solve various production challenges. Samples and case studies are available.

Troubles such as the following can occur at any time on the production line: ■ Line stoppage ■ Delay in takt time ■ Increase in defects etc… While prompt responses and identifying the causes are important when such issues arise, learning preventive measures in advance can help avert emergencies. By imparting "release properties and slip properties" through surface treatment, we are currently offering free samples of surface treatments that have actually improved production processes, as well as a "Process Improvement Case Collection." For more details on the cases, please download the "Process Improvement Case Collection" and check it out. You can apply for the free sample set of surface treatments from the "Related Links." We encourage you to take this opportunity to apply.

  • Other surface treatment equipment

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Fluororesin coating 'QCE-033M'

Explanation of Yoshida SKT's fluororesin coating 'QCE-033M'.

There are various types of resin for fluoropolymer coatings, depending on the application environment. At Yoshida SKT, we specify materials and processing according to the product number. 'QCE-033M' is a type of PFA coating. Among fluoropolymer coatings, it is characterized by excellent non-stick properties, smoothness, and minimal defects. 【What is PFA (Perfluoroalkoxy Alkane Polymer)?】 ■Features It is an improved resin of PTFE, having the same continuous use temperature of 260°C as PTFE. With a low thermal melt viscosity, it can achieve a continuous film with fewer pinholes than PTFE, making it the highest-performing fluoropolymer for corrosion-resistant coatings. Additionally, PFA is superior in non-stick properties compared to PTFE for certain applications, and is used as a high-temperature release coating. For more details, please download the materials or contact us.

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  • Secondary Cells/Batteries

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Fluororesin coating 'ECK-033'

Explanation of Yoshida SKT's modified fluororesin coating 'ECK-033'.

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. "ECK-033" is a type of modified fluoropolymer coating. It is characterized by excellent wear resistance and slip properties among fluoropolymer coatings. Modified fluoropolymer coatings form a coating film using engineering plastics or super engineering plastics combined with fluoropolymers. For more details, please download the materials or contact us.

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  • Secondary Cells/Batteries

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Fluororesin coating minimizes deformation of the substrate during processing.

The thin film fluoropolymer coating "10UNDER" is a revolutionary fluoropolymer coating that minimizes deformation of the substrate and can be processed.

■What is the "10under" Thin Film Fluoropolymer Coating? Conventional fluoropolymer coatings can be challenging to apply when dimensional stability of the substrate is a priority, particularly in terms of film thickness. Yoshida SKT has been working on development to meet these needs and has announced the "Thin Film Fluoropolymer Coating '10under.'" ■Features of 10under - Non-stick properties equivalent to standard fluoropolymer coatings - Capable of thin film processing of approximately 10μm, reducing dimensional changes - While being a thin film, it minimizes transparency *For more details, please download the materials or contact us.

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  • Surface treatment contract service

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Case study of mold release for molten metal: Surface treatment to solve film sticking and stringing issues.

Prevent film adhesion even with fluororesin coatings! Solve the issues of welded molds with fluororesin coatings that reduce contact area.

We would like to introduce a case study that resolved film adhesion issues that could not be solved with fluororesin coating on fusion molds. ■Consultation Details In the fusion process where a film is used to cover a container, the fusion mold is heated to over 100°C, causing the surface of the film to melt. Initially, fluororesin coating was applied to the mold to prevent film adhesion. ■Background of Selection Due to the material of the film and the melting temperature, film adhesion to the fusion mold was causing product defects. The mold has small holes for vacuuming the film, and there were limitations on options due to conditions such as not blocking these holes. ■Coating Adopted 'TP Coating' ■Adoption Background and Effects To meet the customer's usage conditions, we proposed a coating that has better release properties than the current coating and does not block the mold's holes, reducing the contact area. The customer adopted the "TP Coating," which has excellent release properties and does not affect vacuuming. *For more details, please refer to the materials or contact us directly.

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  • Food Packaging Machinery

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What is foldability? An explanation of materials with excellent slip properties and low friction.

[Presentation of Materials] An explanation of fluoropolymer PTFE, which is an excellent low-friction lubricant, and coatings that provide superior sliding properties.

■What is sliding property? Sliding property refers to the ease of sliding. To improve sliding property, materials with a low friction coefficient or lubricants are used. By reducing friction, a state of high sliding property and ease of sliding can be achieved. ■Materials with high low-friction properties A well-known material with low friction properties is fluoropolymer PTFE. PTFE is utilized as a material that enhances sliding property with a low friction coefficient, often described as having a slippery quality similar to ice. ■Methods to improve the sliding property of components 〇Fluoropolymer coating Fluoropolymer coating primarily forms a film of fluoropolymer on the surface of metals, achieving a low friction coefficient and a smooth, slippery surface. 〇Bicoat Bicoat is a coating that combines inorganic materials with high hardness and fluoropolymer, excelling in both sliding properties and wear resistance. 【Selected Coatings】 ■Sliding and low friction properties - Teflon(TM) fluoropolymer coating ■Sliding, wear resistance, and high hardness - Bicoat(R) *For more details, please refer to the PDF document or feel free to contact us.

  • Processing Contract

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Here are some terms related to molds.

We will introduce terms related to molds, as well as surface treatments and case studies that can solve molding troubles.

Terms related to molds include the following: [Mold-Related Terms] - Shot: The unit amount of molten resin injected from the injection port in injection molding. - Gate: The part within the mold where molten resin flows in during injection molding. - Ejector Pin: A pin that moves with the operation of the mold to remove the molded product from the mold. - Laminated Plate: An element that constitutes the mold, consisting of multiple stacked plates. - Drilling Process: One of the manufacturing processes for molds, involving creating holes in metal plates, etc. - Heat Treatment: A process of heating and rapidly cooling metal materials to extend the durability and lifespan of the mold. - Wear: Refers to the wear that occurs due to the use of the mold, which affects the mold's lifespan. - Casting Mold: A mold used in casting. - Design Drawing: A drawing created by the designer in the mold design process. - Assembly: The process of assembling the various components of the mold. - Mold Surface Treatment: A technique that can improve wear resistance or release properties on the surface of the mold. These are basic terms that people involved in mold manufacturing, operation, and maintenance should be familiar with. Below, we will introduce surface treatments.

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  • Other molds

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What is the semiconductor manufacturing process? An introduction to surface treatment that supports semiconductor manufacturing.

What is the semiconductor manufacturing process? This introduces the surface treatments used in semiconductor manufacturing equipment.

The semiconductor manufacturing process refers to a series of steps involved in designing, producing, and shipping semiconductor devices. Semiconductor devices are essential components used in various modern electronic devices such as computers, smartphones, automotive electronics, and LEDs. The semiconductor manufacturing process requires high purity and precision technology, and is often conducted in automated clean rooms. 1. Design → Photomask production Logic circuit design, layout design, photomask production 2. Front-end process (wafer processing) Procurement of silicon wafers → Cleaning → Film deposition → Photolithography → Ion implantation → Wiring → Inspection 3. Back-end process (assembly) Dicing → Die bonding → Wire bonding → Encapsulation → Solder ball mounting → Separation → Stamping → Inspection → Packaging and shipping In the semiconductor manufacturing process, especially in the front-end process, a high level of precision at the nano level is required, necessitating high purity and precision. Surface treatments, including fluororesin coating, support semiconductor manufacturing and play a significant role in semiconductor manufacturing equipment, an area in which Japan excels. Below, we will introduce surface treatments that are indispensable in semiconductor manufacturing.

  • Surface treatment contract service

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Fluororesin coating "Method of reprocessing"

What is the method for reprocessing fluororesin coatings?

Fluororesin coating can experience wear and peeling depending on the application, environment, and conditions. In such cases, it is possible to strip the coating and reprocess it. Reprocessing places a greater burden on the substrate compared to the initial processing, so consultation according to the application is necessary. 【Overview of Processing Steps】 ■Receiving the Substrate ○ Inspection of the substrate is conducted. ■Preheating ○ The substrate is heated in a furnace to thermally decompose oils, dirt, and fluororesin. ■Surface Preparation ・Blasting ○ The processing surface is blasted to remove rust and dirt, and to create a moderately rough surface. ■Primer Coating ○ A primer that enhances adhesion between the substrate and fluororesin is applied. ■Baking ○ The primer is cured. ■Coating ・Powder Coating ○ Fluororesin powder is applied using a special coating machine. ・Enamel Coating ○ Fluororesin enamel is applied either by machine or manually. ■Baking ○ The fluororesin is heated and melted to form a coating. ■Inspection ○ After processing is complete, an inspection is conducted to ensure that the processing meets specifications and agreements. For inquiries regarding reprocessing, please contact Yoshida SKT.

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  • Surface treatment contract service

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[Example] Surface treatment to prevent eye mucus in elastomer extrusion molding.

We will introduce examples of surface treatments to prevent eye discharge that occurs during the extrusion molding of elastomers.

An elastomer is a type of synthetic resin that possesses elasticity and can change shape, being a polymer compound that has both rubber and plastic properties. This time, we received a consultation regarding the inability to produce stable products due to the occurrence of eye mucus in the mold during the extrusion molding of elastomers. ■ Background for Coating Adoption - Without surface treatment, the elastomer adhered to the mold to the extent that almost no products could be manufactured. - By adopting our Bi-Coat, we were able to prevent adhesion to a level that allowed for production. - It was found that after about a month of mass production, defects due to the adhesion of eye mucus occurred. ■ Effects of Surface Treatment Adoption - After adopting our 'MRS-102' and starting tests, eye mucus did occur, but it did not adhere to the mold and could be easily removed, which helped suppress the occurrence of defects, allowing for continuous use for six months. *For details on the adopted 'MRS-102', please refer to the materials or contact us.

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  • Processing Contract

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What is a fluoropolymer?

Here are the features of fluoropolymer.

Fluoropolymer refers to a type of polymer that contains fluorine atoms as a major component. Fluorine is a very distinctive element, and its properties are prominently reflected in the polymer. Below, I will explain the main characteristics and common applications of fluoropolymers in detail. ■Characteristics Very low adhesion Fluoropolymers are generally very smooth and have almost no adhesion, which is why they are known as "non-stick" or "non-adhesive." High chemical resistance Fluoropolymers possess excellent chemical resistance. They show resistance to many corrosive substances and solvents, and have chemically stable properties. This makes them suitable for applications such as chemical containers, piping, and gaskets. High heat resistance Fluoropolymers have the ability to withstand high temperatures. In particular, PTFE can endure very high temperatures (around 260°C or 500°F). This property makes them suitable for applications that require use under high-temperature conditions. Electrical insulation Fluoropolymers have excellent electrical insulation properties. This is one of the reasons they are widely used as insulating materials for electronic components and cables.

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  • Surface treatment contract service

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[Surface Treatment Example] Prevention of Epoxy Adhesive Adhesion on Electronic Component Transport Plates

Introducing a case study of precision surface treatment that prevents adhesion of epoxy adhesives used for bonding electronic components.

■Problems We Wanted to Solve We received an inquiry from a customer who wanted to resolve the issue of epoxy adhesive used for bonding parts overflowing and sticking to the transport plate. ■Conditions for Choosing the Treatment - Heat resistance of 150°C that can withstand the curing process - A tolerance of warping of less than 1mm to maintain precision - Silicone-free - Durable and washable ■Adopted Treatment TLS-200 (Nano Process) ■Achieved Effects After testing with samples and confirming with prototypes, it was adopted for mass production processes. If you want to prevent adhesion of epoxy adhesive, want to know more about the nano process, or are struggling with surface treatment in the precision field, please download the materials or contact us directly.

  • Other semiconductors

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I will introduce the characteristics of different types of fluororesins.

I will explain nine types of fluororesins.

List of 9 Representative Fluororesins ■PTFE Also known as polytetrafluoroethylene or tetrafluoroethylene, it is a white fluororesin with excellent sliding properties, non-stick characteristics, chemical resistance, and electrical properties. ■FEP A melt-processable perfluoropolymer developed after PTFE, it is a copolymer of TFE and hexafluoropropylene (HFP). Although its continuous use temperature is inferior to that of PTFE, it excels in moldability and non-stick properties. ■PFA A fluororesin developed to lower the melt viscosity while maintaining heat resistance equivalent to PTFE. It is a copolymer of tetrafluoroethylene (TFE) and perfluorovinyl ether (PFVE). ■ETFE A copolymer of TFE and ethylene, it is partially fluorinated. While it has excellent processability, its heat resistance and chemical resistance are lower compared to the above three types since it is not a perfluoropolymer.

  • Surface treatment contract service

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Explanation of the molecular structures and properties of PTFE, PFA, FEP, and ETFE.

[Presentation of Materials] A detailed explanation of the differences between PTFE and PFA, which are surprisingly not well known, including molecular structure 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 book allows you to thoroughly understand 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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