We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Fluorine resin coating.
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Fluorine resin coating Product List and Ranking from 78 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jul 29, 2026~Aug 25, 2026
This ranking is based on the number of page views on our site.

Fluorine resin coating Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jul 29, 2026~Aug 25, 2026
This ranking is based on the number of page views on our site.

  1. 吉田SKT Aichi//Manufacturing and processing contract
  2. NIPPON FUSSO CO.,LTD. Osaka//Electronic Components and Semiconductors
  3. フロロコート Saitama//others
  4. 4 null/null
  5. 5 日建塗装工業 Tokyo//Manufacturing and processing contract

Fluorine resin coating Product ranking

Last Updated: Aggregation Period:Jul 29, 2026~Aug 25, 2026
This ranking is based on the number of page views on our site.

  1. Fluororesin coating and lining for quartz. NIPPON FUSSO CO.,LTD.
  2. [Developed Product] Discharge and Static Electricity Countermeasures! Medium Resistance Fluororesin Coating NIPPON FUSSO CO.,LTD.
  3. ADLON coating フロロコート
  4. 4 Advantages and disadvantages of re-coating a non-stick frying pan. 吉田SKT
  5. 5 Causes of Teflon coating peeling and how to address them. 吉田SKT

Fluorine resin coating Product List

541~570 item / All 605 items

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What non-stick (non-stick) coating is

Things won't stick! What is non-stick coating?

Non-stick means that things do not stick in English. Non-stick coatings, such as fluoropolymer coatings, can be referred to as non-stick coatings. In addition to fluoropolymers, coatings like silicone are also one type of non-stick treatment. In particular, silicone coatings may be appropriate for the release of sticky substances. MRS coating is a non-stick silicone coating that exhibits excellent release properties against sticky substances and adhesive tapes. <Features> - Smooth surface that demonstrates release properties even with sticky substances - Maintains water-repellent, oil-repellent, and slip properties even after wiping with solvents* *Varies by series Yoshida SKT offers a variety of non-stick coatings. For more details, please refer to the PDF materials or feel free to contact us.

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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

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Fluororesin lining for stainless steel tanks

This explains the benefits of fluororesin lining that enhance the convenience and durability of stainless steel tanks.

Benefits of Fluororesin Lining for Stainless Steel Tanks ■ Chemical Resistance Fluororesin has strong resistance to chemicals such as acids and alkalis. It prevents corrosion and deterioration of the tank, allowing for safe use when handling chemicals and substances. ■ Non-Stick Properties Fluororesin has a property that makes it difficult for liquids like water and oil to adhere. This facilitates the cleaning and discharge of liquids within the tank. Additionally, the reduced contact area between the liquid and the tank can also help prevent corrosion and deterioration. ■ Durability Fluororesin has excellent heat resistance. The lining film is thick, providing the advantage of maintaining performance even after long-term use. 【Applications】 - Food Processing Safely store acidic and alkaline foods. - Chemical Industry Safely store highly corrosive chemicals. - Medical Field Hygienically store liquids such as blood and pharmaceuticals. In this way, fluororesin lining for stainless steel tanks demonstrates high effectiveness across various fields. *Please download the document summarizing the details of the lining for your reference.

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New Possibilities of Thin Film Fluororesin Coating '10under'

A groundbreaking thin-film fluororesin coating that achieves thin-film technology while maintaining the performance of fluororesin coatings!

The 10under thin film fluoropolymer coating possesses non-stick properties equivalent to standard fluoropolymer coatings while being processable at a thickness of approximately 10μm. As a result, the dimensional changes due to film thickness are reduced compared to the standard type. Additionally, despite being a thin film, it minimizes transparency and prevents aesthetic defects. When compared to other fluoropolymer coating products, it is generally considered that a thickness of at least 20-50μm is required to maintain good appearance and performance. Therefore, when requesting processing with a thin film like 10under, it was common to propose a "modified type" fluoropolymer coating; however, there are challenges where the modified type may not exhibit the necessary functions. 10under addresses such challenges and is capable of demonstrating high performance while being a thin film. For specific comparisons and detailed information, please check the link.

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Both metal and resin! Coating 'Safron LF+' that can be processed at low temperatures.

Addressing the disadvantages of conventional antistatic fluoropolymer coatings! Lubrication grade suitable for low-temperature processing.

■Disadvantages of Conventional Antistatic Fluororesin Coatings - Requires high-temperature sintering (around 400°C) - Applicable only to metals - Limited color options - Low mechanical strength ■Features of Safron LF+ - Can be processed at low temperatures (below 100°C) - Applicable to both metals and resins - Rich color variations - High friction coefficient and mechanical strength - Antistatic performance equivalent to conventional Safron ■Customer Case Study for Problem Solving 【Antistatic Coating for Aluminum Parts in Semiconductor Equipment】 Challenge - Distortion of thin aluminum parts Solution - Low-temperature sintering with Safron LF+ Effect - Provision of antistatic performance and resolution of distortion issues *For more details, please check the detailed page and PDF materials via the link, or feel free to contact us.

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Achieve low-temperature processing and high lubricity! Newly developed 'Safron LF+'.

Solving the disadvantages of anti-static fluororesin coating! Newly developed Safron LF+ enables low-temperature processing and achieves high lubricity.

The new series "Safron LF+" of the antistatic fluororesin coating developed by Yoshida SKT achieves low friction and allows for low-temperature processing. This expands the options for color tone, film thickness, and processability. Additionally, the antistatic performance remains unchanged from the conventional Safron, and due to its high mechanical strength, it excels in film hardness and wear resistance. It can also accommodate applications that were not possible with previous Safron series, and the variety of colors has increased. For specific performance details, please refer to the property comparison table linked. Moreover, there are specific case studies addressing challenges such as antistatic coatings for flow paths of special inks used in organic EL and antistatic coatings that reduce distortion due to firing. If you have any questions about detailed information or other products, please feel free to contact us.

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Electrostatic discharge prevention fluororesin coating that reduces strain in semiconductor device components.

Electrostatic discharge prevention coating for thin aluminum parts used in semiconductor devices! Electrostatic discharge prevention fluororesin coating that can reduce distortion caused by firing.

■Concerns to be resolved and goals to be achieved We received an inquiry about wanting to apply an anti-static coating to thin aluminum parts used in semiconductor equipment. The conventional fluorine-based anti-static coatings required high firing temperatures, which raised concerns about distortion in the aluminum parts. We were looking for a coating that could provide anti-static properties and was less prone to distortion even for thin aluminum parts. ■Coating adopted Saflon LF+ ■Effects achieved Among the Saflon series, Saflon LF+ has a low minimum firing temperature of below 100°C, which is expected to reduce distortion caused by firing, so we proposed it. We confirmed the provision of anti-static properties and resolution of distortion issues through tests and prototypes, leading to its adoption for product coating. The newly developed Saflon LF+ is an anti-static fluororesin coating that can accommodate various environments and applications of our customers. If you have any questions about detailed information or other products, please feel free to contact us.

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An explanation of the fluoropolymer PTFE, which has excellent gas barrier properties and high chemical resistance.

PTFE is a rare resin that excels in chemical resistance, heat resistance, and gas barrier properties.

PTFE (polytetrafluoroethylene) has a very stable molecular structure and excellent chemical resistance. It is also known for its particularly high gas barrier properties among fluoropolymers. This is because PTFE has very low permeability, making it difficult for gases and vapors to pass through. Therefore, it is suitable for use under harsh chemical conditions, such as in chemical plants and semiconductor manufacturing processes. Furthermore, PTFE has high heat resistance and can be used in a temperature range from -200°C to +260°C. This allows it to maintain its properties even under extreme temperature conditions. However, it is important to select the appropriate usage environment, as it may react with fluorine (gas) or alkali metals (sodium, potassium, lithium) under certain conditions. Fluoropolymer lining can form a lining with high gas barrier and chemical resistance properties on the substrate. For more detailed information on chemical resistance, please download the materials or contact us.

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Fluororesin lining that protects materials weak to corrosion and chemicals from corrosion.

We are currently providing detailed materials explaining fluororesin lining, which is particularly excellent in chemical resistance among linings.

Fluororesin lining is an important technology for protecting materials from damage caused by corrosion and chemicals. The main types of fluororesin lining include PTFE, PFA, and ETFE, each possessing specific properties suitable for particular applications and environments. Types of fluororesin lining: - PTFE lining: Excellent non-stick and heat resistance, with resistance to almost all chemicals. - PFA lining: Offers more options for processing methods compared to PTFE, accommodating various shapes of substrates. - ETFE lining: Combines strength and chemical resistance, with a wide range of substrate shapes that can be processed similarly to PFA. Fluororesin lining methods: - Sheet lining: A method of adhering fluororesin sheets to substrates, allowing for thicker linings. - Powder coating: A method of applying fluororesin as a powder coating and forming a film in a sintering furnace. - Rotolining: A method of applying lining material while rotating, forming a uniform film. It is suitable for use under harsh chemical conditions, such as in chemical plants and semiconductor manufacturing processes, and can protect materials over a long period. Please check the materials and contact us for further consideration.

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The best study material for fluororesins! What are the differences between PTFE and PFA?

[Presentation of Materials] A detailed explanation of the differences between fluororesins PTFE, PFA, FEP, and ETFE, 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 types and differences. This single volume 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

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Ideal for those who want to know the differences between PTFE and PFA, as well as between 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. It is an ideal resource for those who want to understand the differences between PTFE and PFA, as well as FEP and ETFE. With this single document, you can gain a solid understanding of the differences and characteristics of each. If you are interested, please feel free to download it. [Contents (excerpt)] ■ Types and properties of fluoropolymer resins ■ Differences between PTFE and PFA / Overview of FEP and ETFE ■ Differences among four types of fluoropolymer coatings

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Presentation of materials for those who do not understand the benefits of fluororesin and cannot utilize it.

[Presentation of Materials] An explanatory document that addresses the voices of those who do not understand the characteristics and advantages of fluororesin, making it difficult to select appropriate materials.

The technical document "Differences Between PTFE and PFA" provides a detailed explanation of the differences in characteristics between PTFE and PFA, as well as information on FEP and ETFE, covering everything from molecular structure to properties. With this single volume, you can gain a solid 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

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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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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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PFAS-free release agent 'MRS Coating' for logistics and packaging

Powerful adhesive tape can also be removed! Contributes to the efficiency of packaging work.

In the logistics and packaging industry, the application and removal of adhesive tape on packaging materials are frequently performed. In this process, adhesive residue from the tape can reduce work efficiency and compromise product quality. Additionally, the difficulty in applying and removing labels also increases the burden of the work. MRS coating addresses these challenges, contributing to the efficiency of packaging operations and product protection. 【Usage Scenarios】 - Packaging of cardboard boxes - Fixing with adhesive tape - Label application 【Benefits of Implementation】 - Improved efficiency in tape removal tasks - Prevention of adhesive residue - Enhanced usability in label application *Features may vary depending on the type of product. For more details, please download the PDF or contact us.

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Transparent static-free fluororesin coating "Safron CC+"

With low-temperature processing at 60 to 80°C, a transparent anti-static coating is applied to plastics. Dirt resistance is also significantly improved.

The "Safron CC+" CCC1-F200 is a transparent, static-resistant fluororesin coating that enables low-temperature processing at 60 to 80 degrees Celsius. It is compatible with general-purpose transparent resins (such as PC and acrylic) that may have concerns about heat resistance, significantly broadening the range of applicable substrates. - Transmittance: 86% (550nm) - Antistatic performance with surface resistivity of 10^5 to 10^8 Ω/sq - Dirt resistance (anti-magic contamination rating: ◎◎) - Achieves water and oil repellency (contact angle: 105 to 115 degrees) - Pencil hardness: 9H or higher This multifunctional coating can be applied to both glass and general-purpose transparent resins. For more details, please click the URL to check.

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Fluororesin coating for semiconductor devices (chemical resistance and corrosion prevention)

Resistant to strong acids, strong alkalis, and organic solvents. A chemical-resistant coating compatible with all processes in semiconductor manufacturing.

This is a fluororesin coating that protects equipment parts from corrosive chemicals such as acids, alkalis, and organic solvents used in semiconductor manufacturing processes. We offer a wide range of grades tailored to applications, including PTFE, PFA, and FEP, allowing for the selection of the optimal treatment based on the type of chemical, temperature, and substrate. Yoshida SKT is one of the few authorized processors of Teflon(TM) coatings, with over 2,000 achievements and hundreds of surface treatment technologies. Please provide details about the type of chemical, concentration, and usage environment. We will suggest the optimal grade for you. You can check detailed specifications, case studies, and selection guides in our materials. Please download the materials and make use of them.

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Fluororesin coating for semiconductor devices (purity and metal contamination prevention)

Control metal ion contamination at the ppb level. Protect high-purity processes with fluororesin.

In semiconductor manufacturing, contamination by metal ions at the ppb level directly reduces yield. Fluororesin coatings cover metal surfaces with a stable chemically inert film, greatly suppressing the leaching of metal ions. This contributes to the stability of high-purity process quality and improved yield rates. Yoshida SKT is a specialist with over 2,000 achievements and hundreds of surface treatment technologies as one of the few authorized processors of Teflon(TM) coatings. Please let us know the chemicals you will use and the desired purity level. We will suggest the optimal grade. You can check detailed specifications, case studies, and selection guides in our materials. Please download the materials and make use of them.

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Fluororesin coating for semiconductor manufacturing equipment

From transportation, cleaning, etching, CMP, plating, to inspection. Coating that supports a wide range of processes in semiconductor manufacturing.

With the expansion of AI demand, the high operation and high precision of semiconductor manufacturing equipment are progressing, making it increasingly important to suppress surface-related troubles such as corrosion, adhesion, wear, and charging. Fluororesin coatings solve a wide range of challenges in processes such as transport, cleaning, etching, photomasks, CMP, plating, and inspection due to their five characteristics: chemical resistance, non-stick properties, slip properties, insulation, and purity. Yoshida SKT, as a pioneer in Teflon(TM) coatings, has a track record of over 2,000 companies and offers customized proposals that are optimal for customers' processes and equipment from hundreds of surface treatment technologies. Please download the materials to check specific application examples for each process.

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Why do powders clog in pipes and hoppers? The mechanisms of adhesion and bridging.

"The powder does not come out of the hopper" and "it gets clogged in the piping." The causes are not just one. This explains the typical mechanisms of clogging and the countermeasures.

■Three Main Mechanisms of Powder Clogging (1) Adhesion to Walls Powder particles adhere to the inner walls of hoppers and pipes, narrowing the flow path and worsening the flow. The causes vary, including adhesion due to static electricity, moisture, and the physical adhesion of sticky powders. (2) Agglomeration of Particles Due to humidity and temperature influences, particles may stick together and form clumps. Agglomerated powders significantly reduce flowability and can block pipes and valves. (3) Bridging This phenomenon occurs when powder forms an arch-like structure (bridge) near the outlet of a hopper, becoming stable under its own weight. The particle size distribution, shape, and friction with the wall all affect this. ■Approach to Solutions To prevent powder clogging, one effective method is to reduce the friction of the wall surfaces that the powder contacts, thereby lowering adhesion forces. Particularly when static electricity is a cause of adhesion, surface treatments with anti-static functions are effective. The causes of powder clogging can vary with even slight differences in the environment. At Yoshida SKT, we propose optimal surface treatments based on the conditions provided by our customers. If you encounter issues with powder transport, please feel free to consult us.

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Why is it difficult to find alternatives to fluoropolymer? Alternative technologies in the era of PFAS regulation.

I want to be PFAS-free, but I can't find an alternative that matches the performance of fluoropolymer... I will organize the reasons for this and the current state of alternative technologies.

■Reasons Why It Is Difficult to Find Alternatives to Fluoropolymer Fluoropolymers possess multiple excellent properties in a single material, such as non-stickiness, low friction, chemical resistance, heat resistance, and electrical insulation. Currently, while some of these properties can be met by common alternative materials, achieving all of them simultaneously remains a challenge. For example, silicone-based materials excel in heat resistance and release properties, but may fall short in chemical resistance and wear resistance compared to fluoropolymers. Engineering plastics may have types that excel in heat resistance and wear resistance, but they can still have issues with non-stickiness. ■Considerations When Exploring Alternatives Rather than trying to completely replace all the properties of fluoropolymers with a single material, the first step in selecting alternative technologies is to clarify "what functions are truly necessary for our applications." Is non-stickiness the most important, or is it chemical resistance, or heat resistance? By clearly prioritizing the functions, realistic alternative options become apparent. At Yoshida SKT, we will work together to find alternative solutions that meet your conditions from among hundreds of surface treatment technologies. If you are struggling with finding alternatives to fluoropolymers, please feel free to consult with us.

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Why does stainless steel rust? = Corrosion mechanisms and anti-corrosion measures =

The belief that 'stainless steel shouldn't rust' is a misconception. This explains the conditions under which stainless steel can corrode and the measures to counteract it.

■Why Does Stainless Steel Rust? The corrosion resistance of stainless steel is maintained by a very thin oxide film (passivation film) that forms on its surface. When this film is damaged, the metal substrate is exposed and corrosion progresses. The typical causes of damage to the passivation film are as follows: - Pitting corrosion due to chloride ions: In environments containing chlorine, the passivation film can be locally destroyed, leading to localized corrosion. - Galvanic corrosion: When different types of metals come into contact and are exposed to an electrolyte solution, one metal preferentially corrodes due to the potential difference. - Stress corrosion cracking: This phenomenon occurs when tensile stress and a corrosive environment act simultaneously, causing the material to fracture in a brittle manner. While the above describes the typical corrosion mechanisms of stainless steel, the causes of corrosion can vary depending on factors such as the type and concentration of chemicals used, temperature, and stress conditions. At Yoshida SKT, we offer anti-corrosion coatings and linings tailored to our customers' usage environments. If you are troubled by metal corrosion, please feel free to consult us. *For information on anti-corrosion coatings and linings, please download the PDF for details.

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Why does unnecessary film form on the plating jig?

Unwanted plating film adhesion on the plating jig affects the jig's lifespan and plating quality.

In the plating process, unnecessary plating films adhere to the jigs used to apply plating to the products. ■ Why does plating adhere to the jigs? Since the jigs are also immersed in the plating solution, plating inevitably precipitates on the parts that come into contact with the solution. The accumulated plating film can reduce the dimensional accuracy of the jigs and, if it peels off and adheres to the products, it can cause quality defects. ■ Considerations for countermeasures Fluororesin coatings possess both electrical insulation and chemical resistance, making them suitable as coating materials for plating jigs. The optimal countermeasures vary depending on the type of plating, composition of the plating solution, shape of the jigs, target costs, and other factors. At Yoshida SKT, we have a track record of insulating and non-stick coatings for plating jigs. For details and case studies on the coatings, please download the PDF for confirmation.

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Explanation: The difference between Biocote® and fluoropolymer coatings.

High hardness, resistant to scratches and wear. Non-stick coating that withstands long-term use.

"Bi-Coat®" is a coating that achieves excellent non-stick and release properties through a treatment that combines inorganic and organic materials. Compared to conventional fluoropolymer coatings, it has high hardness, is resistant to scratches, and experiences less wear, making it durable for long-term use. It also has high dimensional accuracy and is suitable for applications requiring micron-level precision. *For detailed explanations, please check the link.*

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Selection Guide: How to Choose BiCote® Grades

Iron, stainless steel, aluminum, copper alloys... We propose the optimal grade tailored to the base material and usage environment.

The grades of "Bicoat(R)" are selected based on the usage environment and required performance. There are three main criteria for selection: (1) Type of substrate: Since compatibility varies depending on the substrate, such as iron, stainless steel, aluminum, or copper alloys, selection must be tailored to the substrate. (2) Operating temperature (3) The type of substances in contact will also affect the optimal grade. After understanding the specific usage environment and performance requirements, our technical sales representatives will propose the most suitable grade. Please feel free to consult with us.

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Main applications of "Bycoat(R)" - from mold release to sliding parts.

Prevention of resin adhesion, wear resistance, and improved slip properties. Safe to use in areas subject to mechanical loads.

"Bycoat(R)" is suitable for preventing resin adhesion and improving release properties in injection molding molds, and can also be used in precision molds where micron-level dimensional accuracy is required. It provides excellent lubrication for guides and chutes in various packaging machines, achieving wear resistance and improved sliding in areas where friction occurs. It is also useful for releasing components that come into contact with particularly adhesive substances, such as adhesives. Due to its excellent durability, it can be confidently used in applications subject to mechanical loads, such as IC encapsulation cavities, piezoelectric ceramic manufacturing equipment, molds for rubber and resin, and sliding parts.

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Case Studies: 8 Examples of Bicoat® Applications

From PET bottle molds to heat sealers. We will introduce examples of solving on-site challenges.

Here are some representative application examples of "Bicoat(R)." In blow molding molds for PET bottles, a release coating on the inner surface prevents the adhesion of softened PET resin due to heat, reducing maintenance burdens while maintaining the transparency of the PET bottles. In heat sealers for pillow packaging machines, non-stick and wear-resistant properties prevent resin adhesion and improve productivity. Additionally, it demonstrates effectiveness in a wide range of applications, including decorative sheet transfer molds, transport jigs, vacuum transfer molds, suction pads, ejector pins, and biodegradable plastic molding molds.

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PFAS-free compatible 'Bicoat(R)' product line expansion

There are product numbers that do not contain PFAS (fluororesin). Development of next-generation PFAS-free products is also underway.

Bikote(R) also offers PFAS-free product numbers that do not contain PFAS (fluororesin). For information on the presence or absence of PFAS for each product number, please contact us. Additionally, we are advancing the development of environmentally friendly PFAS-free coatings as part of our next-generation product development. If you are considering compliance with PFAS regulations, please feel free to consult with us.

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【Selection Guide】How to Choose SafeLon(R) Grades

The corrosion resistance is AP+, the anti-fouling and release properties are AS+, the low friction and resin substrate are LF+, and the transparency is CC+.

The various grades of "Saflon(R)" are selected based on the usage environment and required performance. For applications where corrosion resistance is particularly important, "Saflon(R) AP+" is suitable, while "Saflon(R) AS+" is appropriate for environments requiring stain resistance and release properties. If lubrication is needed or for applications on heat-sensitive substrates like resins, please choose "Saflon(R) LF+," and for applications requiring transparency, "Saflon(R) CC+" is recommended. After understanding your specific usage environment and performance requirements, our technical sales representatives will propose the optimal grade. Please feel free to consult with us.

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