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Coating Product List and Ranking from 574 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

2281~2310 item / All 2642 items

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Learn from basics to advanced applications in one book! A textbook on fluororesin coatings.

Packed with content that connects theory to practice, from basics to applications! This is an extensive work spanning 38 pages where you can learn all about fluororesin coatings.

We are distributing a textbook on "Fluororesin Coating" from our company, a specialized manufacturer of surface treatment and fluororesin coatings! This document, consisting of 38 pages, is packed with content that connects the basics of fluororesins to their applications. With this single book, you can learn the fundamentals of fluororesins, practical case studies, and tips for selecting coatings. If you are interested, please download the document and take a look.

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Teflon Coating "Method for Measuring Film Thickness"

To use Teflon coating for a long time, not only selection and processing technology are important, but also quality inspection. Let me introduce Yoshida SKT's quality inspection.

Here, we will introduce the measurement inspection of Teflon coating thickness. When you consult about Teflon coating, if a thickness is agreed upon during the meeting, we will conduct a thickness measurement inspection during the post-processing inspection process to confirm whether the thickness has been processed according to the meeting or the order form. ■ Unit of Thickness In coating thickness measurement, the unit commonly used is "μm (micrometers)" = one-thousandth of a millimeter. ■ Specifications of Thickness The thickness varies depending on the specifications and applications. For fluororesin coatings, it is often around 20-50μm for general purposes and more than 300μm for corrosion-resistant applications. ■ Measurement Method In thickness measurement inspections, a thickness gauge is primarily used for confirmation. This method is a non-destructive type of inspection that does not damage the coating. The thickness gauge typically measures the thickness of the coating by pressing a probe, known as a "probe," vertically against the surface of the coating processed on the metal substrate. *For more details about the thickness measurement inspection, please visit our website via the link or contact us.

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Teflon Coating "Method of Pinhole Inspection"

To use Teflon coating for a long time, not only selection and processing technology are important, but also quality inspection. Let me introduce Yoshida SKT's quality inspection.

Why is it a problem if there are pinholes in the Teflon coating film in the first place? In a typical fluororesin coating (thickness: 20-50 μm), there are countless holes (pinholes) that are invisible to the eye and reach the substrate. For applications that require non-stick or slippery properties, these pinholes rarely have a negative impact on performance. However, in applications where corrosion resistance is required, chemicals can reach the substrate (metal) through the pinholes, causing corrosion and leading to holes or causing the coating to peel off. To eliminate pinholes, the coating can be thickened by applying multiple layers, ensuring that there are no pinholes that connect the coating surface to the substrate. At Yoshida SKT, we conduct inspections using insulation resistance meters, pinhole testers, and chemical detection methods according to the coating specifications and substrates. These methods are non-destructive tests that do not damage the coating film. *For more details on pinhole inspection, please visit our website via the link or contact us.*

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Improving the release properties of injection molding molds! Ultra-durable fluororesin coating 'Bicoat'

Improve the release properties of injection molding molds. An organic fluorine-based coating system suitable for applications with mechanical loads that have astonishing durability.

"Bycoat(R)" is a coating system that achieves the ideal functions of "release properties" + "sliding properties" + "wear resistance" by combining inorganic and organic surface treatment technologies. It withstands harsh usage areas such as injection molds and product guides, providing reliable release and sliding properties. Additionally, due to its excellent dimensional accuracy, it is suitable for areas requiring micron-level dimensional precision. 【Features】 ■ Incredible durability ■ High hardness and scratch resistance ■ Excellent wear resistance ■ Outstanding non-stick and release properties ■ Safe for use in molds requiring micron-level dimensional precision *For more details, please refer to the PDF materials or feel free to contact us.

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Countermeasures for mold release troubles in injection molding machines: ultra-durable fluorine-based organic coating.

Amazing durability that surpasses fluoropolymer coatings! Surface treatment suitable for applications with mechanical loads. *Product and case materials available.

Super Durable Fluoropolymer-based Organic Coating System 'Bicoat(R)' "Surface treatment of inorganic materials with hardness and wear resistance, such as metals and ceramics" + "Surface treatment of organic materials with release and sliding properties, such as fluorine and silicone" With our unique surface treatment technology, we have achieved an ideal durability of "Release + Sliding + Wear Resistance" in our coating system. It withstands harsh usage areas such as injection molds, providing reliable release and sliding properties. Additionally, due to its excellent dimensional accuracy, it is suitable for areas requiring micron-level precision. 【Features】 ■ Incredible durability ■ High hardness and scratch resistance ■ Excellent wear resistance ■ Outstanding non-stick and release properties ■ Safe for use in molds requiring micron-level dimensional precision *For more details, please refer to the PDF document or feel free to contact us.

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Surface treatment 'by application' used in semiconductor manufacturing equipment *Documentation available

In semiconductor manufacturing equipment, various surface treatments that excel in chemical inertness, static electricity prevention, heat resistance, and chemical resistance are widely used.

■Applications such as semiconductor manufacturing lines - Selected surface treatment 'TEFLON (TM) fluoropolymer coating' ■Applications such as wafer and glass handling - Selected surface treatment 'SAFELON (R)' 'PBI, PI coating' ■Applications such as precision nozzles, MEMS components, optical lenses - Selected surface treatment 'NANOPROCESS (R)' ■Applications such as chemical supply tanks - Selected surface treatment 'TEFLON (TM) fluoropolymer coating' 'SAFELON (R) AP+' 'MY LINING (R)' ■Applications such as clean room walls, laboratory equipment, various tools - Selected surface treatment 'SERASHIELD F' ■Applications such as high-temperature equipment components (rolls, heater covers) - Selected surface treatment 'SGN coating' *You can download the PDF of the introduced surface treatment products. For detailed information about the products, please visit the "Yoshida SKT official website."

  • Surface treatment contract service
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Explanation of fluoropolymer, a plastic material strong against chemicals.

Fluororesin, famous for being resistant to acids and alkalis. I will explain the principle of why it does not dissolve in solvents such as acids and alkalis.

■Is the chemical resistance of fluoropolymer high? Fluoropolymers have high chemical resistance and do not dissolve, swell, or react with most acids, alkalis, and organic solvents. ■Reasons for the high chemical resistance of fluoropolymers A major reason for the excellent chemical resistance of fluoropolymers is their stable molecular structure. Fluoropolymers are high molecular weight polymers with carbon atoms and fluorine atoms bonded in a linear chain structure. The bond energy between carbon and fluorine atoms (C-F) is very strong among chemical bonds, and furthermore, the C-C bond sections between carbon atoms are completely covered by fluorine atoms in a helical manner. Therefore, they remain inert when in contact with chemicals or solvents, and do not degrade or dissolve as a resin, which means they have excellent chemical resistance. ■Uses of fluoropolymers The chemical resistance of fluoropolymers is utilized in the chemical industry, semiconductor industry, and medical and pharmaceutical fields in products such as: - Various gaskets - Seals - Piping and hoses - Storage tanks - Reaction vessels - Heat exchangers *For more details, please download the materials or refer to the link below.

  • Surface treatment contract service
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High-slip lubricating plastic material: fluororesin.

What makes fluoropolymer, particularly PTFE, excellent in terms of sliding properties among plastics? We will introduce its characteristics, focusing on the lubricity and low friction of fluoropolymer PTFE.

■Types of Lubrication Lubrication can be broadly divided into liquid lubrication using liquids and solid lubrication using solids. A representative example of liquid lubrication is lubrication with oil. On the other hand, lubrication with fluororesin falls under the category of solid lubrication. ■Characteristics of Solid Lubrication Solid lubrication is used in cases where liquids cannot be used or when liquids may evaporate or detach in a vacuum. For example, when sliding products, solid lubrication is helpful in situations where liquid lubricants may dirty the products. ■Low Friction and Sliding Properties of Fluororesin (PTFE) Fluororesin has a low coefficient of friction and is utilized for solid lubrication. PTFE is structured such that fluorine atoms surround carbon atoms without gaps. The free energy of the fluorine atoms on the molecular surface is low, and the molecule has a very small polarity in its target structure. The low coefficient of friction of PTFE is believed to be influenced by this type of molecular structure. ■Reasons for the Low Coefficient of Friction of Fluororesin PTFE → Please check the basic information section for more details.

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[Case Study] Surface Treatment to Enhance Release Properties of Biodegradable Plastic Molding Dies

We will introduce examples of surface treatments to enhance the release properties of biodegradable plastics and improve molding troubles.

■Concern Due to the different moldability of biodegradable plastics compared to regular plastics, there were issues with mold release in the prototypes, leading to molding troubles. ■Background We received this consultation because there is no track record of surface treatment with the materials being molded, and we do not know the appropriate surface treatment. ■Coating Adopted Bicoat Exceed NYK-2000E ■Adoption Process and Effects At Yoshida SKT, we prepared a collection of samples suitable for mold release from molding molds, and confirmed the release properties with actual plastics. We processed the well-performing NYK-2000E into the prototype mold, and it has been used without issues for several months. *Detailed surface treatment materials can be downloaded as a PDF.

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Thin film fluoropolymer coating "NCFPC Series" with excellent lubricity.

Super-thin film fluorine coating with excellent water and oil repellency!

The "Nano Process NCFPC Series" features an ultra-thin fluorine coating that excels in liquid repellency, such as water and oil, compared to fluoropolymer coatings, improving liquid drainage and flow. It causes almost no dimensional changes and maintains optical properties, making it possible to process "precision parts" and in fields that require high dimensional and surface accuracy, where fluoropolymer coatings have previously been difficult. <Examples of Applications> - Improvement of liquid drainage for water and oil - Improvement of liquid flow for water and oil - Prevention of oil diffusion in bearing components, etc. Additionally, Nano Process has been renewed with three other new functions, each with different features and applications. [Features of Each Series] ■ TC-10S Excellent precision, visible light transmittance, water repellency, and oil repellency ■ TLS Series Superior non-stick properties against adhesive materials like tape ■ HP Series Excellent hydrophilicity Currently, we are offering technical materials summarizing the details of each series. If you are interested in more details or are facing challenges with surface treatment in the precision field, please download the materials or contact us directly.

  • Other semiconductors
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What is lining? A detailed explanation of fluororesin lining.

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

■What is Lining? Lining is a method of protecting a substrate with a relatively thick film to enhance corrosion resistance. The lining materials primarily used are "rubber," "resin," and "glass." In linings that require corrosion resistance, a coating without pinholes is crucial. ■What is Fluororesin Lining? Fluororesin lining is one type of "resin lining." Resin lining includes those utilizing "polyethylene" and "nylon" resins, as well as "FRP lining," which combines glass fibers and resin. Among these, "fluororesin" is a material that is less susceptible to chemicals in harsh environments. ■Types of Fluororesin Lining Types of fluororesin lining include PTFE lining, PFA lining, and ETFE lining. Each lining requires appropriate selection based on the usage environment, method, and application. ■Main Fluororesin Lining Methods There are three main methods: 1. "Sheet Lining" 2. "Baked Coating" 3. "Roto Lining" *When considering lining, please check the materials and contact us for inquiries.

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【Presentation of Materials】Features, Advantages, and Disadvantages of PTFE Lining

PTFE (polytetrafluoroethylene), also known as tetrafluoroethylene, is a material that has excellent chemical resistance and is used for fluoropolymer lining.

PTFE lining is characterized by the use of pre-formed PTFE sheets and pipes, and it is also referred to as PTFE sheet lining. Since PTFE has non-stick properties, it cannot usually be adhered with adhesives. Lining sheets are used that have been processed to allow adhesion on one side during or after molding (adhesive lining). ■ Advantages of PTFE Lining By using molded sheets, it is possible to create thickness, making it suitable for use in more demanding environments. Additionally, it is characterized by excellent gas permeability. ■ Disadvantages of PTFE Lining PTFE lining is difficult with baked coatings, so the usable temperature depends on the heat resistance of the adhesive. Furthermore, its use in negative pressure environments is generally not recommended. Yoshida SKT offers lining sheet sales and lining construction services. *For more details on lining, please check the materials or feel free to contact us.

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

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

ETFE lining is a type of fluoropolymer lining that is primarily processed using techniques such as powder coating and rotational molding (rotolining). ■ Advantages of ETFE Lining ETFE has a low melting point and excellent processability, allowing for thick film processing on various shapes of substrates. ■ Disadvantages of ETFE Lining On the other hand, because its molecular structure contains hydrogen (H), it has inferior heat resistance and chemical resistance compared to PTFE. The choice of materials and methods for lining needs to be tailored to the application, environment, and substrate shape. Yoshida SKT offers powder coating and rotational molding (rotolining) for ETFE lining. *Please feel free to contact us when considering lining options.

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[Presentation of Materials] Construction Method for Fluororesin Sheet Lining - Basic Knowledge -

I will explain the construction procedure for fluororesin lining.

【Fluororesin Sheet Lining Processing Procedure】 ■ Acceptance The base material (cylinder body) is checked against the order form, drawings, specifications, etc., to confirm whether it has a suitable shape for lining. ■ Sandblasting The lining surface is sandblasted to remove rust, dirt, etc., and is roughened to a texture suitable for lining. ■ Sheet Cutting The lining sheet material is cut based on the welding development drawing. ■ Attachment Adhesive is applied to the lining area of the base material (cylinder body) and the back side of the lining material, and they are adhered together. ■ Edge Preparation The welding joint areas, left and right, and depth are evenly prepared, and excess adhesive in the gaps is removed. ■ Welding Butt welding Tape welding ■ Process Inspection A pinhole test is conducted after butt welding. A pinhole test is conducted after tape welding. *You can download materials summarizing the details of the lining. Please make use of them.

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Processing procedure for fluororesin baked lining - Lining explanation materials available.

This explains the construction procedure for fluororesin lining using the baking paint method.

【Fluororesin Lining Processing Steps】 1. Acceptance We will inspect the substrate. If there are any issues that may affect the thick film processing, we may request corrections. 2. Degreasing Treatment [Preheating] The substrate is heated in a furnace to thermally decompose oils and dirt at a temperature higher than the firing temperature. 3. Surface Preparation [Blasting] The processing surface is blasted to remove rust, dirt, etc., and to create a rough surface. 4. Primer Coating A primer is applied to enhance the adhesion between the substrate and the fluororesin. 5. Firing The primer is cured in the furnace. 6. Coating [Powder Coating] Fluororesin powder is applied using electrostatic or special coating equipment. 7. Firing The fluororesin is heated to melt the resin and form a coating. *The size of the substrate that can be processed is determined by the size of the furnace. 8. Repetition Steps (6) to (7) are repeated to increase the coating thickness until the desired functionality is achieved. 9. Inspection We will inspect whether the processing meets the specifications and agreements. *The process is almost the same as fluororesin coating. *Please download the document summarizing the details of the lining for your reference.

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Urethane Coating 'CD9200 Ultra High Hardness Custom Production Grade'

Wear-resistant and noise-reducing! Can be processed at room temperature. All coatings are room temperature curing types and can be processed on chemical wood and plastic as well.

The "Urethane Coating CD9200" is a room temperature curing type coating that excels in abrasion resistance and soundproofing, and can be processed onto any material except for liquids and gases. ■ Specifications Usable temperature ... -30℃ to 100℃ Hardness ... approximately 64D Friction coefficient ... 0.33μ (measured value) ■ Applications Higher hardness than CD9100. A urethane coating with hardness comparable to engineering plastics. * Made to order only. Additionally, if you require a specific color, please feel free to consult with us. 【Features】 ■ Excellent abrasion resistance and soundproofing ■ Can be applied in various locations ■ Protects materials and equipment with coating ■ Cures at room temperature, making it suitable for various materials * For more details, please refer to the PDF document or feel free to contact us.

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Thin Film Coating: "Nano Process with Excellent Non-Stick Properties for Adhesive Materials"

A thin film coating with excellent non-stick properties that prevents adhesion. It helps to prevent sticking of blades.

The "Nano Process TLS Series" is a thin film coating that excels in non-adhesiveness, preventing sticky substances like adhesive tape from sticking. A film thickness of about 1μm is achievable, allowing for minimal dimensional changes while maintaining optical properties. This makes it possible to process "precision parts" and in fields that require high dimensional and surface accuracy, where fluororesin coatings have been difficult to apply. <Examples of Applications> - Non-adhesiveness for products with high adhesive strength, like adhesive tape - Prevention of adhesion for electronic component sealing materials - Prevention of adhesion for hot melt adhesives - Prevention of adhesion for silicone adhesives, etc. Additionally, Nano Process has been renewed with three other new functions, each with different features and applications. 【Series Features】 ■ TC-10S Excellent precision, visible light transmittance, water repellency, and oil repellency ■ NCFPC Series Excellent liquid slip properties for water and oil ■ HP Series Excellent hydrophilicity We are currently offering a technical document summarizing the details of the series. If you are interested in more details or are facing challenges with surface treatment in precision fields, please download the document or contact us directly.

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Surface Treatment Case Studies: "Robot Transport on Automated Lines"

Solving the challenges of robot transportation! Enabling smooth transportation of labels. Utilizing surface treatment can resolve various production challenges and troubles.

In the production line, it is impossible to predict when troubles like the following will occur: ■ 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 avoid emergencies. By imparting "release properties and slip properties" through surface treatment, we are currently offering free "Coating Sample Books" and "Process Improvement Case Collections" that have actually improved production processes. ■ The adhesive side of the label does not stick to the base, allowing for suction and transport by robots. For more details on the case studies, please download the "Process Improvement Case Collection" and check it out. You can apply for a free trial set of surface treatment samples from the "Related Links." Please take this opportunity to apply.

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Surface Treatment Case Study Collection: "Reducing Clogging in Conveyance Guides"

Solve transportation issues of products that stick due to moisture! Utilizing surface treatment can resolve various production challenges and troubles. Sample and case study collection available.

In the 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, while prompt response and investigation of the causes are important, learning preventive measures in advance can help avert emergencies. By imparting "release properties and slip properties" through surface treatment, we are currently offering free 'Coating Sample Books' and 'Process Improvement Case Studies' that have actually improved production processes. ■ Creating a gap between transported items to reduce incidents of sticking due to moisture. For more details on the cases, please download the 'Process Improvement Case Studies' and check them out. You can apply for a free trial set of surface treatment samples from the "Related Links." We encourage you to take this opportunity to apply.

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Collection of Surface Treatment Examples: "Enabling Continuous Operation with Continuous Cutting of Tool Blades"

Preventing blade adhesion is now a reality. Continuous operation of equipment is possible! Utilizing surface treatment can solve various production challenges and troubles. Samples are currently available.

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, while prompt response and investigation of the causes are important, learning preventive measures in advance can help avert emergencies. By imparting "release properties and slip properties" through surface treatment, we are currently offering free "Coating Sample Books" and "Process Improvement Case Collections" that have actually improved production processes. ■ Achieved continuous cutting of products with adhesive packaging. Passed durability tests of the equipment, enabling continuous operation. For more details on the case studies, please download the "Process Improvement Case Collection" and check it out. You can apply for a free trial set of surface treatment samples from the "Related Links." We encourage you to apply during this opportunity.

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Collection of Surface Treatment Examples: "Selection of Release Surface Treatment According to Types of Adhesives"

Solve mass production challenges by selecting surface treatments according to the type of adhesive, such as acrylic-based or silicone-based! Samples and case studies are available.

In the production line, troubles such as the following can occur at any time: ■ Line stoppage ■ Delay in takt time ■ Increase in defects ■ etc... When such issues arise, while prompt response and investigation of the causes are important, learning preventive measures in advance can help avert emergencies. By imparting "release properties and slip properties" through surface treatment, we are currently offering free "Coating Sample Books" and "Process Improvement Case Studies" that have actually improved production processes. ■ Solving the problem of adhesive adhesion without compromising the sharpness of cutting tools. For details on the cases, please download the "Process Improvement Case Studies" and check them out. You can apply for a free trial set of surface treatment samples from the "Related Links." We encourage you to apply during this opportunity.

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Case Study Collection on Surface Treatment: "Preventing Adhesion of Sealers on Packaging Films"

Eliminate resin adhesion to the sealer and reduce the risk of film peeling. Surface treatment can solve various production challenges. Samples and case studies are available.

In the production line, we cannot predict when the following troubles will occur: ■ Line stoppage ■ Delay in takt time ■ Increase in defects etc… When such problems arise, while prompt response and investigation of the causes are important, learning preventive measures in advance can help avoid emergencies. By imparting "release properties and slip properties" through surface treatment, we are currently offering a free "trial set" of surface treatments that have actually improved production processes, as well as a "case study collection for process improvement." For more details on the cases, please download the "case study collection for process improvement" and check it out. You can apply for a free trial set of surface treatment samples from the "related links." We encourage you to take this opportunity to apply.

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Collection of Surface Treatment Examples: "Troubleshooting for PTP Films for Tablets"

Prevention of scratches caused by friction between packaging film and transport guides. Utilizing surface treatment can solve various production challenges. Samples and case studies are currently available.

In the production line, troubles such as the following can occur at any time: ■ Line stoppage ■ Delay in takt time ■ Increase in defects etc... While prompt response and investigation of 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 "trial sets" of surface treatments that have actually improved production processes, as well as a "case study collection on process improvement." For more details on the cases, please download and check the "case study collection on process improvement." You can apply for a free trial set of surface treatment samples from the "related links." We encourage you to apply for this opportunity.

  • Other surface treatment equipment
  • Coating

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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
  • Coating

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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
  • Coating

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Ceramic Coating: "Achieving both high-temperature release and high-temperature durability in the thermal welding process."

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 combines the non-stick properties of conventional fluoropolymer coatings with high film hardness at elevated temperatures. ■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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Ceramic Coating: "The release effect of the heat fusion plate lasts three times longer."

It is a coating technology that maximizes "non-stick and release properties" through the combination of ceramics and fluororesin.

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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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.

  • 0217VD.png
  • Secondary Cells/Batteries
  • Coating

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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.

  • 0217VD.png
  • Secondary Cells/Batteries
  • Coating

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Surface treatment example: Precision non-stick coating applicable to polyester.

We would like to introduce a case where a highly precise non-stick coating suitable for processing with a jig made of polyester mesh has been adopted.

This is a case of surface treatment to prevent adhesive from sticking to the jig used in an automatic machine for laminating films. ■Consultation When laminating films with adhesive, a polyester mesh for screen printing is fixed to a metal frame and used as a positioning jig. The consultation was to solve the issue of adhesive that overflows from the film sticking to the polyester mesh, which contaminates the product's film. ■Conditions for Choosing Treatment The surface treatment requires low-temperature processability that can be applied to polyester and precision that does not crush the mesh openings. 【Issues to be Resolved】 - Non-adhesiveness to prevent adhesive from sticking - Precision that does not crush the mesh openings - Low-temperature processability ■Adopted Coating 'NanoProcess(R)' ■Achieved Effects We proposed 'NanoProcess,' which has high non-adhesiveness that prevents adhesive from sticking, including tape adhesive, and can be processed at low temperatures without affecting the polyester mesh. With the adoption of this surface treatment, products that pass quality inspection can now be produced, and it has been officially adopted. *For more details on NanoProcess, please download the PDF or contact us.

  • Surface treatment contract service
  • Coating

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