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coating Product List and Ranking from 574 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jun 10, 2026~Jul 07, 2026
This ranking is based on the number of page views on our site.

coating Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jun 10, 2026~Jul 07, 2026
This ranking is based on the number of page views on our site.

  1. 吉田SKT Aichi//Manufacturing and processing contract
  2. フロロテクノロジー Aichi//Chemical
  3. トシコ Saitama//Manufacturing and processing contract
  4. 4 日建塗装工業 Tokyo//Manufacturing and processing contract
  5. 5 トーカロ Hyogo//Manufacturing and processing contract

coating Product ranking

Last Updated: Aggregation Period:Jun 10, 2026~Jul 07, 2026
This ranking is based on the number of page views on our site.

  1. Causes of Teflon coating peeling and how to address them. 吉田SKT
  2. Advantages and disadvantages of re-coating a non-stick frying pan. 吉田SKT
  3. Tosical S Coating <PFAS Free> トシコ
  4. 4 Exhibition participation! Outstanding non-stick properties 'Ognas' and wear resistance 'Solnas X' 大阪ガスケミカル株式会社 奈良表面加工センター
  5. 5 Water-repellent, non-stick, anti-adhesion coating "tt-kote series" トーカロ

coating Product List

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Improving adhesion and achieving excellent durability! 【Fine Coating】

The ultra-hard ceramic coating fine coating can be deposited at lower temperatures than conventional CVD, allowing for the formation of a dense carbide coating without cracks.

In recent years, surface treatment technologies that dramatically enhance the durability and wear resistance of precision parts and molds have become essential for improving productivity. Fine coating with ultra-hard ceramic films can form dense carbide coatings without cracks, as it allows for film formation at lower temperatures than conventional CVD. Furthermore, by using a unique vacuum diffusion method, it improves adhesion and achieves excellent durability. *For more details, please download the materials or contact us.*

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Celtes N-S Coating for Plastic Lens Molding Dies

The popular Celtes now features a water-repellent and oil-repellent grade! Improved release properties of molded plastic lenses and prevention of mold contamination.

The Celtes N-S coating is a multi-layered hydrophobic and oleophobic grade Celtes coating that combines a hydrophobic treatment with a hard ceramic thin film of nitride produced by an advanced Plasma Booster Sputtering (PBS) process.

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Brochure giveaway! "Choosing Coatings Without Failure" Volume 1!

Download a booklet that allows you to understand the basics of hard thin film coating just by reading it! For extending the lifespan of molds and sliding parts.

You can download the booklet "Choosing Coatings Without Failure," which allows you to learn the basics of hard thin film coatings just by reading it, for free. It clearly and concisely covers the fundamentals, starting with "What is coating?", introducing coating materials, and explaining actual coating methods. This handbook helps you understand how to choose coating methods that extend the lifespan of molds and sliding parts, contributing to cost reduction. If you would like the booklet, please request it through the "Contact Us" section. [Contents] ■ What is coating? ■ What materials are used for coatings? ■ How are coatings made? *For more details, please contact us or download the PDF to view it.

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Celtic coating for plastic molding dies

It is a hard thin film produced by an advanced plasma booster sputtering process.

The Celtes coating for plastic molding dies is a hard thin film of 2 to 8 μm produced by an advanced Plasma Booster Sputtering (PBS) process. It reduces abrasive wear caused by hard additives such as glass fibers in injection molding, while also preventing roughness of the steel substrate due to gas burning and corrosion. By selecting a film type suitable for the plastic material, it improves release properties, reduces the frequency of mold maintenance, and significantly enhances productivity. For molding glass fiber-reinforced PPS resin parts such as connector components, the CrN-TiAlN composite multilayer film Celtes T demonstrates excellent corrosion resistance, wear resistance, and release properties. For more details, please download the catalog.

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Celtis T Multi-layer Coating

Improving the load-bearing capacity and impact resistance of cold forging molds and punching molds!

The "Sertes T Multi-layer Coating" is a coating process with high adhesion even at low temperatures. It features a multi-layer structure that suppresses the progression of cracks with a Cr-based underlayer that has strong adhesion to steel, improving load-bearing capacity and impact resistance, and it does not peel off even under high surface pressure and repeated impacts. It is suitable for cold forging punches for steel processing and plastic molding dies. 【Features】 ■ High adhesion even at low temperatures ■ Excellent impact resistance due to the multi-layer structure ■ Applicable fields: - Cold forging punches for steel processing - Punches and dies for steel processing - Plastic molding dies ■ Applicable base materials: tool steel, cast iron, cemented carbide, etc. *For more details, please refer to the PDF document or feel free to contact us.

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Electromagnetic Wave Shielding PVD Coating "PROCEM"

Selectable from three types of conductive metals: silver, copper, and aluminum! Contributes to lightweight design with good dimensional stability.

"PROCEM" is a high-performance electromagnetic wave shielding PVD coating that surpasses conventional electromagnetic wave shielding paints. It is directly deposited onto resin housings, clearing electromagnetic wave shielding specifications and solving EMC issues. Additionally, a DLC coating can be applied as a protective layer over the PROCEM film. Please feel free to contact us if you have any requests. 【Features】 ■ Directly deposited with good adhesion to resin housings ■ Environmentally friendly dry coating ■ Contributes to lightweight design with high precision and dimensional stability due to its thin film *For more details, please refer to the PDF materials or feel free to contact us.

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Fluororesin convex surface coating [Reduced contact area even on flat surfaces]

A fluorine coating with excellent release properties that hardly sticks to duct tape! It solves problems in food transport lines and resin film manufacturing lines.

The "Super TP" release coating system improves the "release ease" of adhered materials through a technology that roughens the coating surface to a convex shape, thereby reducing the contact area. This achieves a level of non-stickiness that cannot be obtained with conventional Teflon or fluoropolymer coatings. It demonstrates remarkable release properties (anti-adhesion) even with highly adhesive substances such as unvulcanized rubber, adhesive tape, and hot melt adhesives. If you have been struggling with transportation issues or molding defects caused by adhesive materials, or if you need to reduce maintenance on molds, transport chutes, or rolls, please feel free to consult us. ■ Features - Non-stickiness and release properties that surpass fluoropolymer coatings - Anti-adhesion to adhesive materials like molten resins and adhesive tapes - Slip and lubrication properties through a special technology that roughens the coating surface - Compatible with silicone-free requirements (TP series, Super TP series) - Smooth release - Slippery (lubrication) (TP series) *For more details, please refer to the catalog or contact us directly.

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Permeation-resistant PFA fluororesin lining | Yoshida SKT

Fluoropolymer PFA lining with excellent chemical resistance that is difficult for chemicals and gases to penetrate.

"MY Lining" is a corrosion-resistant lining that significantly improves permeability compared to conventional PFA. It is expected to have a lifespan several dozen times longer than traditional products, making it ideal for environments where it could not be used before or where the previous lifespan was unsatisfactory. *For more details, please refer to the catalog or contact us directly.*

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Ceramic Coating "SGN Coating"

Composite material heat-resistant coating combining ceramics and super engineering plastics!

The "SGN Coating" is a composite material coating that uses various ceramics as the base material, combined with super engineering plastics. It has high heat resistance up to about 600°C and can be used as a heat-resistant, lubricating non-stick coating to prevent the adhesion of welding spatter, available in "Standard Heat-Resistant Type" and "Heat-Resistant + Functional Type." Additionally, there is a non-stick coating with far-infrared effect made from "Ceramics + Functional Materials Coating." 【Features】 <Heat-Resistant, Lubricating Non-Stick Coating> ■ Ceramic-based coating ■ High heat resistance up to about 600°C <Non-Stick Coating with Far-Infrared Effect> ■ Uniformly heats and bakes items like sugar-added omelets due to the far-infrared effect, making them less likely to stick and easier to release. *For more details, please refer to the PDF materials or feel free to contact us.

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Teflon Coating "Certified Processing Manufacturer of Teflon Coating"

A manufacturer of Teflon coating materials processed in the optimal way. We excel in non-stick properties, water repellency, and sliding properties, and our Teflon coatings also have high heat resistance.

The "Teflon coating," which excels in non-stick properties, water repellency, and slip characteristics, and also has high heat resistance, is active in various fields of industry. Yoshida SKT signed a licensing agreement with DuPont in the United States in 1968. As a Licensed Industrial Applicator of Teflon coating, we have pursued processing technology. Teflon coating excels in non-stick properties, low friction (slip), water repellency, oil repellency, chemical resistance, heat resistance, and cold resistance, as well as electrical properties. It is required in various industrial fields such as automotive, semiconductors, chemical industry, medical, pharmaceuticals, food industry, and aerospace. At Yoshida SKT, we provide coatings that maximize the properties of Teflon resin tailored to our customers' objectives, suitable for their purposes, usage environments, and applications. *For more details, please refer to the PDF materials or feel free to contact us.

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Fluororesin coating adopted in the chemical and semiconductor industries for its corrosion resistance and purity.

Thick film fluoropolymer coatings are suitable for applications that require excellent corrosion resistance and purity. A coating that protects metals and prevents the leaching of metal ions!

■ Thick Film Fluororesin Coating (Film Thickness 300–2000 μm) 【Excellent Chemical Resistance of Fluororesin】 Fluororesin is chemically stable, so it is not affected by most acids, alkalis, and other chemical substances, nor do its molecules dissolve and leak out. 【Fluororesin Thick Film Pinhole-Free Coating】 By applying a pinhole-free thick film coating to can bodies and substrates where lining and molding are not possible, it is possible to protect against corrosive liquids and gases such as acids and alkalis, as well as to prevent the leaching of metal ions. *For more detailed information, please see the link below.

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Fluororesin coating tailored to conditions: "What functions are necessary in industrial fields?"

Selecting the appropriate fluororesin coating tailored to specific conditions is essential for improving the productivity of production equipment. Introducing the functions of fluororesin coatings for each field!

Thanks to our accumulated know-how, we propose fluoropolymer coatings tailored to the base materials, usage environments, and conditions. Depending on the conditions, fluoropolymer coatings can be applied not only to metals but also to rubber, ceramics, and resins. ■ We have a proven track record in many industrial sectors. (Some of the adopted fields) - Automotive parts - Semiconductor industry - Aerospace industry - Chemical industry - Medical and pharmaceutical fields - General industrial sector - Food industry ■ Automotive parts ● Required functions of fluoropolymer coatings 【Non-stick / Slip / Electrical insulation】 ■ Semiconductor industry ● Required functions of fluoropolymer coatings 【Non-stick / Arc / Purity】 ■ Medical and pharmaceutical fields ● Required functions of fluoropolymer coatings 【Non-stick / Slip / Corrosion resistance / Purity】 ■ Chemical industry ● Required functions of fluoropolymer coatings 【Non-stick / Corrosion resistance / Insulation】 ■ Food industry ● Required functions of fluoropolymer coatings 【Non-stick / Slip / Water repellency】 ■ General industrial sector ● Required functions of fluoropolymer coatings 【Non-stick / Slip / Release】 *For more details, please download the PDF or contact us.

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Surface Treatment of Yoshida SKT Co., Ltd. - "Business Introduction"

Yoshida SKT helps create new value through surface treatment technology.

Yoshida SKT is a company that has been leading innovations in fluoropolymer processing technology for over half a century. Starting with the licensing agreement with DuPont in the United States in 1968, we have focused on the introduction and development of fluoropolymer coating technologies, including Teflon(TM). Our technological capabilities extend beyond Teflon fluoropolymer coatings and have led to the development of a variety of coating technologies. 【Key Surface Treatment Technologies】 Teflon Fluoropolymer Coating Features non-stick properties, chemical resistance, heat resistance, and cold resistance, making it suitable for a wide range of applications. MY Lining(R) A permeation-resistant PFA lining, ideal for handling chemical substances. SafeLON(R) A fluoropolymer coating with anti-static properties that enhances safety. Non-Stick Coating Series A series of coatings specifically designed to address sticky substances. BICOAT(R) An organic-inorganic composite coating system boasting ultra-durability. NanoProcess(R) A precision thin-film coating process that meets cutting-edge technological demands. From extensive material selection to the provision of test pieces, Yoshida SKT offers meticulous support tailored to the specific needs of each customer.

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滑り・耐摩耗を実現!フッ素系有機コーティング解決事例 進呈中

フッ素樹脂コーティングの代替に!今まで諦めていた滑りと耐摩耗を両立させたコーティング解決事例

樹脂部品の成形直後の樹脂キャップは粘着性があり、 フッ素樹脂でコーティングして滑り性を持たせていました。 しかし、フッ素樹脂は摩耗しやすく、すり減ると異物混入になってしまいます。 摩耗せず、『滑り性』を高めるためにどうしたらよいか、 という解決ストーリーが記載されております。 詳細は大手飲料メーカー向けみりんキャップの事例をご紹介! ※詳しくはお問い合わせ、またはカタログをご覧ください。

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[Coating Success Case] Eliminate Line Troubles with Durable Surface Treatment!

Introducing examples of process improvements in surface treatment (coating)! Successful increase in production by shortening molding time! What is the secret behind it!?

【Revealing Some Secrets of Our Successful Increased Production!】 ◆Concerns and Requests◆ In the molding process of a certain automotive part, there was a request to shorten the molding time to accommodate increased production. When attempting to demold the resin from the mold in a shorter time than usual, a problem occurred where the resin had not sufficiently hardened, causing the ejector pins to get stuck. However, this mold required strict dimensional control, with no allowance for even slight dimensional changes such as thermal distortion. The conventional Teflon coating had a high processing temperature of 400°C and did not provide sufficient dimensional accuracy, making it an unsuitable option. The surface treatment that solved this issue was 'Bicoat®'. ◆Background and Effects of Adoption◆ Among Bicoat®, "NYK-52-T" has a low processing temperature of around 200°C and excellent release properties, allowing for smooth demolding even with soft resin without sticking. It also offers good dimensional accuracy, with a coating tolerance of plus or minus 5μm. A major feature is that it can be applied to precision molds with strict dimensional requirements without worry! For further progress, please contact us. *For more details, please download the catalog or contact us directly.

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For preventing the scattering of glassware and scientific instruments: "Non-Skecoat"

Visible light transmittance of 95%!! This is an advanced coating that prevents the scattering of hazardous chemicals and expensive pharmaceutical raw materials inside.

By applying a unique fluororesin coating to glassware such as beakers and flasks, as well as scientific instruments, we prevent glass shattering in the event of falls or accidents, ensuring safety on-site. Additionally, the amount of hazardous chemicals or expensive pharmaceutical raw materials that may scatter is reduced, thereby minimizing the risk of serious accidents or losses. The transparency is higher than that of standard fluororesin coatings, so visibility and measurement of the contents remain unaffected! ■ Features - Excellent adhesion prevents glass scattering - Minimizes exposure and loss of contents - Allows for normal operations with overwhelming transparency ■ Main Applications - Medical institutions, welfare facilities, testing organizations, universities, research institutions, etc. *For more details, please refer to the PDF materials or feel free to contact us.

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Ultra-thin film coating "Nano Process®" [New product information available]

Film thickness of less than 1μm. A coating process for forming a nanometer-level thin film on a substrate.

The ultra-thin film surface treatment "Nano Process" coats surfaces with a thin film ranging from the nano level to about 1μm, enhancing water repellency, oil repellency, non-stick properties, and liquid sliding properties. 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 fluororesin coatings have been difficult until now. <Examples of industries that require high surface accuracy> Semiconductors, Automotive, Batteries, Electronic Components, Medical Devices, etc. Additionally, the Nano Process has been renewed with four new functions, each with different features and applications. We are currently distributing technical materials summarizing the characteristics and functions of the entire series. If you are interested in more details or are facing challenges with surface treatment in precision fields, please download the materials or contact us directly.

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Outstanding strength! Surface treatment with alloy coating 'Super Alloy Coating'

A surface treatment that imparts non-stick properties to the surfaces of resins and metals! It can also maintain the flexibility of the processed materials and is a groundbreaking surface treatment that can be applied to rubber and curved surfaces.

◆What is Super Alloy Coating◆ Super Alloy Coating is a coating system that covers soft substrates such as plastics and rubber, as well as the surfaces of lightweight metals like aluminum and thin sheets, with an alloy that has a hardness of Hv 600 or higher, while also possessing flexibility. It effectively prevents dirt on various manufacturing equipment and components, reduces maintenance tasks such as the peeling of adhesive materials, and demonstrates excellent mechanical strength and durability. The surface of the coating has rounded protrusions, which minimizes scratches on contact objects. Additionally, despite being a metal coating, it has the ability to conform to slight bends and can accommodate curved surfaces. It allows for excellent release properties from adhesive materials and strength while maintaining the flexibility of the processed material. 【Features】 ■ Non-stick convex surface formation ■ Alloy coating with Hv hardness of 600 ■ Excellent mechanical strength and durability ■ Minimization of scratches on contact objects ■ Usable on various materials *For more details, please refer to the PDF document or feel free to contact us.

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【資料進呈】摺動性・滑り性に優れたコーティングとは? 

滑り性、摺動性に優れ、耐摩耗性にも優れるコーティング。用途環境に適したコーティングを選択できます。

製造設備では、ふたつのものが接触して動く箇所の滑り性(潤滑性)を 良くすることで、稼働をスムーズにしたり、少ない力でものを動かしたり という効果が求められます。 〇フッ素樹脂、特にテフロンフッ素樹脂の代表格でもあるPTFEは  摩擦係数が低く、静摩擦係数は動摩擦係数よりも小さいため、  スティックスリップ現象を起こさず滑らかに滑ります。 〇バイコート(R)は高い硬度を備えた無機材料とフッ素樹脂を組み合わせ、  滑り性に優れる、超耐久性ふっ素系有機コーティングシステムです。 〇スーパーTPコーティングは、フラットな基材でも  オールフッ素の独自の凸面コーティングが可能。  接触面積のコントロールによるすべり性に優れたコーティングです。 【選ばれているコーティング】 ■摺動・低摩擦性  ・テフロン(TM)フッ素樹脂コーティング ■潤滑・耐摩耗性・高硬度  ・バイコート(R) ■接触面積コントロールによる 滑り性(フッ素樹脂系)  ・スーパーTP  ・スーパーTP半球グラフィック ※詳しくはPDF資料をご覧いただくか、お気軽にお問い合わせ下さい。

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What is a coating with excellent abrasion resistance? *Product information available.

We will introduce surface treatments suitable for "rough wear" and "thrust wear" among various types of wear.

Wear refers to the phenomenon where one or both of two objects in contact and moving against each other become abraded. There are two main types of wear that can occur in manufacturing environments. One type is "rough wear," which occurs when surfaces are abraded and eroded due to contact with rough surfaces or particulate matter. The other type is "thrust wear," which happens when surfaces adhere due to frictional heat and are worn away by the opposing material. The appropriate surface treatment varies depending on the type of wear. [Selected Coatings] ■ Wear Resistance (Rough Wear) - Urethane Coating ■ Wear Resistance (Thrust Wear) - Bi-Coat *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study on Problem Solving through Surface Treatment] Prevention of Adhesive Adhesion on Cutter Blades

Improving the poor cost-effectiveness of applying release agents! We will introduce a case of switching to silicone-based coatings.

We would like to introduce a coating that can solve the problems caused by adhesive from packaging films adhering to cutter blades. In one packaging machine, packaging films with adhesive frequently adhered to the cutter blades, resulting in poor cutting performance and film sticking to the blades, causing misalignment and necessitating line stoppages. This issue prevented us from achieving the production quantities calculated from the takt time. Initially, a release agent was applied, but its effects did not last, requiring repeated applications. Therefore, we adopted the silicone-based coating "MRS Coating." The coating eliminated adhesive adhesion, and since the processing temperature is below 250°C, there were no concerns about blade dulling. Additionally, the 1-micron thin film maintained the sharpness of the blade edge. [Key Points of the Case] - Purpose of Surface Treatment: Quality improvement, operational stability, speed enhancement, compliance with safety and environmental requirements - Required Functions: Non-stick, release properties, long lifespan - Treatment Adopted: MRS Coating (Mold Release Silicone) ▼ Free samples of improvement cases for the cutting process and trial sets are currently available on the site below! ▼

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[Case Study] Preventing Roll Wrapping During Transport with Anti-Sticking Coating

Prevented the entanglement of transport rolls during the conveyance of products coated with hot melt adhesive.

We would like to introduce a case of surface treatment that solved troubles in the application process of hot melt adhesive. A certain customer's product is manufactured by bonding a surface material (film) with insulation material using hot melt adhesive. Since the product with applied adhesive could stick to the conveyor rollers during transport and cause entanglement, a petroleum-based release agent was previously applied to the rollers as a countermeasure. However, complaints arose in the market due to the residual release agent on the product. There was a need for a countermeasure to prevent roller entanglement that could replace the application of the release agent. Therefore, we adopted our 'Super Alloy Coating'. After approximately two years of use, there have been no troubles such as roller entanglement, and of course, complaints regarding the adhesion of the release agent in the market have also disappeared. [Key Points] - Purpose of surface treatment: Quality and operational stability - Required functions: Non-stick, release properties, wear resistance - Treatment adopted: Super Alloy Coating *For more details, please refer to the PDF document or feel free to contact us.

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[Food Industry Case Study] Preventing Product Jamming with Conveying Guides for Automatic Packaging Machines

Case study of solving issues with automatic packaging machines for frozen foods. The adhesion caused by moisture to the transport guide has been reduced, improving the sliding performance.

We would like to introduce a case where product jams were prevented in the conveying guide of a frozen food automatic packaging machine. During the 20-hour daily operation of frozen food packaging, a phenomenon occurred where the side guide became a resistance to product conveyance, causing the line to jam. This resulted in the equipment stopping and the line halting, which was a significant issue. Additionally, there was a problem where the products were being scraped due to friction with the guide. By adopting the "Super TP Hemisphere HL," a large convex surface created a gap between the product and the guide, reducing sticking due to moisture and improving sliding. The situation where products jammed and the equipment stopped has been improved. [Key Points] - Purpose of surface treatment: Reduce work loss, stabilize quality and operation - Required functions: Non-stick and release properties, sliding and gliding, wear resistance - Adopted treatment: "Super TP Hemisphere HL" *For more details, please refer to the PDF materials or feel free to contact us.

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[Case Study in the Hygiene Products Industry] Improved Cleanability of Adhesive on Rolls!

Shortening cleaning time! A case study on solving coating challenges that improved productivity.

We would like to introduce a case study on surface treatment in the lamination process using hot melt adhesives for diapers and sanitary products. In the lamination process, if the applied adhesive adheres to the transport rolls, there is a risk of it transferring to the product or contaminating it, resulting in defective products. Therefore, it was necessary to regularly remove the adhesive. We adopted our "Super CTT" for this purpose. Thanks to its release effect, the semi-cured hot melt adhesive is transported without adhering, which reduces the frequency of cleaning, shortens cleaning time, and ultimately improves productivity. 【Key Points】 ■ Purpose of surface treatment: Speeding up, stabilizing quality and operation, reducing work loss ■ Required functions: Non-stick, release properties, wear resistance ■ Treatment adopted: Super CTT *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study] Non-stick Coating to Prevent Resin Adhesion on Heating Plates

Non-stick coating on the hot plate prevents sticking! Reducing work loss by speeding up the fusion process. Case study on surface treatment in the thermal welding process of resin.

We would like to introduce a case study that addresses the challenges faced by customers struggling with resin adhesion to hot melt plates. ■Problem In the process of bonding resin parts such as ASA, ABS, and PC for automotive component manufacturing through hot melting, the target resin is melted at approximately 180-210°C using a hot plate fixture (heat plate) for hot melting, and then bonded with another part. You were looking for a coating to prevent the phenomenon of the hot plate sticking to the resin or the melted resin stretching like threads during the hot melting process. ■Adopted Coating - FSR Coating ■Effects of Adoption Compared to conventional PFA coatings, an improvement in the durability of the release effect when used at temperatures above 200°C and an increase in lifespan were observed. ■Case Summary - Purpose of Surface Treatment: Quality and operational stability, speed-up, reduction of work loss - Required Functions: Non-stick and release properties, heat and cold resistance, wear resistance - Adopted Treatment: FSR Coating (Fluoro Super Release) *For more details on the coating, please refer to the external link or feel free to contact us.

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[Case Study] Coating to Eliminate Sheet Adhesion to Molds

Almost zero adhesion! Case study of coating used during decorative sheet transfer.

We will introduce a case that resolved the sticking of decorative sheets to molds during transfer. ■Background Decorative sheets with adhesive are set onto parts using molds and are transferred via vacuum. During this process, it was observed that excess sheets, other than those on the parts, would stick to certain parts of the mold. To prevent the sticking caused by the adhesive on the decorative sheets, surface treatment of the molds was being explored. ■Adoption of Coating and Effects By adopting our "Bicoat," significant improvements in preventing sticking were achieved. The sticking of decorative sheets was reduced to almost zero, resulting in a level of satisfaction from our customers. 【Key Points of the Case】 ■Purpose of Surface Treatment: Quality and operational stability, realization of development needs, reduction of replacement and material costs ■Required Functions: Non-stick and release properties, long lifespan ■Adopted Treatment: Bicoat *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study on Problem Solving through Surface Treatment] Prevention of Adhesion to Conveying Rolls of Uncured Rubber

The effect of preventing sticking lasts a long time! It has become possible to reduce costs and working time.

■Concern The manufacturing process of weatherstrips involved transporting extruded rubber on rolls while heating and drying it in a furnace. Due to changes in the rubber material formulation for environmental measures and durability, it became necessary to process the rubber at higher temperatures than before, resulting in the rubber becoming sticky immediately after entering the furnace. ■Issues It was confirmed that when a common fluoropolymer coating was applied to the transport rolls, the rubber would stick to them like a suction cup. ■Effect of Surface Treatment By adopting our "Super TP Coating," we significantly reduced the rubber's stickiness and achieved a relatively soft contact surface. 【Key Points】 ■Purpose of Surface Treatment: Quality and operational stability, reduction of work loss, compliance with safety and environmental requirements ■Required Functions: Non-stick and release properties, long lifespan ■Adopted Treatment: Super TP Coating *For more details, please refer to the PDF document or feel free to contact us.

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Electrostatic Prevention Fluororesin Coating 'Safron(R) AP+'

Thick film processing that can be used for applications requiring corrosion resistance is possible. It also accommodates cases where static electricity is a concern and fluororesin coatings cannot be used.

■What is SafeLon(R) AP+? SafeLon(R) AP+ is an anti-static fluoropolymer coating that further enhances the functions of Yoshida SKT's anti-static fluoropolymer coating, "SafeLon(R)." ■Features of SafeLon AP+ By enhancing three functions: "release performance," "anti-static performance," and "blister resistance," improvements in corrosion resistance, non-stick properties, and coating lifespan can be expected. 【Upgraded Functions from SafeLon】 - Release Performance Improved release performance by creating a smoother surface. - Anti-Static Performance Achieves a leakage resistance value of 10^4-5Ω by directly dissipating generated charges to the substrate (metal). - Blister Resistance Reduces blister formation to about half that of conventional fluoropolymer coatings. *For more details, please refer to the PDF document or feel free to contact us.

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[Coating Example] Non-stick Performance Scissors

The special coated blade repels sticky substances!

The scissors coated by Yoshida SKT do not attract adhesive materials. The film thickness is 1 to 3 microns. The precision of the blade tip is maintained even after coating. Since the coating extends to the blade tip, it has a high level of non-stickiness all the way to the tip of the blade. They can be used for cutting various adhesive materials such as vinyl tape, double-sided tape, and cloth tape. Our company is capable of applying a coating that prevents adhesive materials from sticking to scissors. As a specialized manufacturer of surface treatment and industrial Teflon fluororesin coating, we provide problem-solving solutions that enhance customer satisfaction. 【Features】 ■ Film thickness: 1 to 3 microns ■ Maintains blade tip precision even after coating ■ High non-stickiness all the way to the tip of the blade *For more details, please refer to the PDF document or feel free to contact us.

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Presentation of materials: A coating that surpasses fluorine and silicone in anti-adhesion properties.

For applications that cannot be satisfied with Teflon or silicone coatings! You can experience excellent release properties.

To prevent sticking of adhesive materials, fluororesin coatings (Teflon™ coatings) and silicone coatings are commonly used, but the following challenges may arise: [Challenge 1] Even with surface treatments claiming to prevent sticking, there was not much change. [Challenge 2] It started sticking unexpectedly quickly during use. [Challenge 3] Silicone coating transfers and causes defects in the bonding process (fluororesin did not provide sufficient effectiveness, leading to the choice of silicone). Recently, there has been an increase in customers needing solutions for more adhesive materials, such as wanting to release molten resins that do not fully solidify to shorten process time. Yoshida SKT has coatings that can improve such situations. In general fluororesin coatings, adhesive materials can stick due to various factors. In contrast, treatments that create a rough surface to reduce the contact area with adhesive materials are known. Our company has a unique technology to create convex surfaces using fluororesin and other materials, and we are now offering a kit to experience its effectiveness for free! ▼ You can apply from the "Yoshida SKT Official Site" below.

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