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【Features】 ■ OS-Z is the world's first mass-produced acid-nitrided aluminum-chromium multilayer coating, created by adding oxygen to our product OS-VII, which is a nitride aluminum-chromium multilayer coating. ■ By using an acid-nitrided coating, it enhances heat resistance while maintaining versatility, demonstrating effectiveness in high-temperature and harsh conditions compared to OS-VII. 【Examples of Applications】 ■ High-speed machining tools ■ Iron-based machining punches ■ General steel material tools ■ Dry/MQL machining of difficult-to-cut materials (such as Inconel), etc. * For detailed specifications, please refer to the catalog or the product information on the official website.
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Free membership registrationSmArc OS-K is an improved coating of aluminum chromium nitride specifically designed for the machining of difficult-to-process copper and copper alloys. (This coating is applied under specialized conditions targeting 0.5 microns on our test pieces.) —————————————————————— 【Features】 ■ Effective for machining Koleson copper alloy (C7025) containing nickel/silicon, commonly used for component terminals. ■ Characterized by less adhesion to the cutting edge compared to DLC coatings. ■ High release properties for rubber. 【Examples of Use】 ■ Small diameter punches for Koleson copper machining ■ Carbide tips, etc.
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Free membership registrationSmArc OS-VII is an improved ceramic coating with a thin film of aluminum chromium nitride coating (OS-VII). (This coating is applied under specific conditions targeting a thickness of 0.5 microns on our test pieces.) —————————————————————— 【Features】 ■ Compared to the standard film thickness (2μm) of OS-VII, the film quality has improved. ■ Coating can be applied without compromising the shape of the base material for small diameter tools and molds, which are affected by film thickness. ■ There are proven results with small diameter reamers used in stainless steel precision machining and small diameter punches for copper processing. 【Examples of Applications】 ■ Tools and molds with strict dimensional tolerances ■ Small diameter tools ■ Small diameter reamers ■ Small diameter end mills ■ Small diameter punches for copper processing, etc. *For detailed specifications, please refer to the catalog or the official product information on the website.
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Free membership registrationSmArc OS-T is an improved ceramic coating with a titanium silicon nitride coating (OS-T) applied as a thin film. (This coating is done under specific conditions targeting 0.5 microns on our test pieces.) —————————————————————— 【Features】 ■ Compared to the standard film thickness (2μm) of OS-T, the film quality has been enhanced. 【Examples of Applications】 ■ Tools and molds with strict dimensional tolerances ■ Small diameter tools ■ Small diameter reamers ■ Small diameter end mills ■ Hardened steel machining, etc. *For detailed specifications, please refer to the catalog or the product information on the official website.
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Free membership registrationOS-R is an improved coating of aluminum chromium nitride. ————————————————————— 【Features】 ■ With a film thickness of 6 to 10 μm, it has high wear resistance and is particularly effective in preventing melting during aluminum die casting processing. 【Examples of Applications】 ■ Aluminum die casting molds ■ Press molds ■ Bending punches (high-tensile materials) ■ Punches for cutting (thick plates), etc. *For detailed specifications, please refer to the catalog or the product information on the official website.
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Free membership registrationOS-VII (7 seven) is a super multilayer film with aluminum chromium nitride coating. ————————————————————— 【Features】 ■ By using multilayering, it exhibits higher crater wear resistance (adhesion diffusion wear resistance) and chipping resistance. ■ Even after exceeding a cutting length of 500m, the wear amount of OS-VII (7 seven) is less than 5μm. ■ Highly versatile, it is widely used from molds to tools. 【Examples of Applications】 ■ Tools for high-speed cutting ■ Molds such as punches and dies for iron-based and copper-based processing ■ Tools for cutting general steel materials, etc. *For detailed figures, please refer to the catalog or the official website product information.
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Free membership registrationOS-A is an improved ceramic coating that adds silicon to aluminum chromium nitride coating. —————————————————————— 【Features】 ■ Compared to titanium aluminum nitride coating (TiAlN), it offers higher heat resistance and hardness, making it particularly effective in preventing crater wear (adhesion diffusion wear) when machining iron-based materials. ■ It is also ideal for mold components that require heat resistance and high hardness. [Made to order] 【Examples of Applications】 ■ Tools for dry machining (HSS tools) ■ Dry cutting tools for general steel (S50, S45C, FC, SMC, etc.) ■ Gear cutting tools ■ Heat-resistant molds, etc. *For detailed specifications, please refer to the catalog or the official website product information.
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Free membership registrationOS-C2 (officially referred to as CII) is an improved ceramic coating created by adding silicon to chromium nitride (CrN). —————————————————————— 【Features】 ■ Excellent resistance to adhesion and wear, making it ideal for cutting Ni and Cu alloys, as well as for low-speed machining tools and general machining of iron-based raw materials with low-speed and large cuts. ■ Suitable for both wet machining and high-speed dry machining. 【Examples of Applications】 ■ Tools for dry machining (low hardness materials) ■ Low-speed cutting of low hardness materials with HRC 40 or lower ■ Heat-resistant molds, etc. *For detailed specifications, please refer to the catalog or the product information on the official website.
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Free membership registrationOS-T is an improved film with added silicon to titanium nitride (TiN). —————————————————————— 【Features】 ■ Compared to titanium aluminum nitride (TiAlN), it offers higher heat resistance and hardness, making it ideal for high-speed dry cutting with carbide tools and dry cutting of high-hardness materials with a hardness of HRC40 or higher. 【Examples of Use】 ■ High-speed cutting ■ Tools for dry machining (high-hardness materials) ■ Cutting of silica-containing resins ■ Dry cutting of high-hardness materials with HRC40 or higher, etc.
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Free membership registrationTiAlN is our standard coating of titanium aluminum nitride, which is a nitride of an alloy of titanium and aluminum. —————————————————————— 【Features】 ■ Compared to titanium nitride coating (TiN), it has higher heat resistance and film hardness, making it widely used in drills and end mills where scratching wear occurs. ■ It is also optimal for drilling operations that tend to trap heat and for high-speed machining with high cutting temperatures. 【Examples of Applications】 ■ Tools for high-speed machining (drills, end mills, etc.) ■ Resin molding molds, etc. ■ Aluminum die-casting molds ■ Molds for release purposes *For detailed specifications, please refer to the catalog or the product information on the official website.
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Free membership registrationES-CrN is a composite specification with a ceramic coating that has undergone shot peening on a chromium nitride coating (CrN) base. —————————————————————— 【Features】 ■ By applying a chromium coating with controlled hardness on the workpiece surface that has been work-hardened, it achieves high adhesion and mild wear with reduced film chipping. ■ Recommended when chipping occurs with CrN. 【Examples of Applications】 ■ Copper processing tools ■ Rubber and resin molding molds ■ Powder molding molds, etc. *For detailed values, please refer to the catalog or the product information on the official website.
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Free membership registrationCrN is our standard coating for chromium nitride. It has developed as an alternative to chrome plating. —————————————————————— 【Features】 ■ Characterized by the sliding properties of chromium and resistance to adhesion with copper, it is widely used in moving parts, sliding parts, and in punches and molds. ■ High toughness and excellent adhesion to iron-based substrates. ■ High release properties for rubber and resin molding molds. ■ Improved sliding properties. ■ Enhanced wear resistance. 【Examples of Applications】 ■ Copper processing tools ■ Rubber and resin molding molds ■ Powder molding molds, etc. *For detailed specifications, please refer to the catalog or the product information on the official website.
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Free membership registrationTiN and TiN Usumaku have been our standard titanium nitride coatings for over 30 years since our founding. —————————————————————— 【Features】 ■ Excellent balance of hardness, adhesion, and oxidation temperature, widely used as a versatile coating for tools, molds, and machine parts. ■ The thin film version 'TiN Usumaku' offers good surface roughness for finishing and is ideal for fine punches and small-diameter tools. (Coating under specialized conditions targeting 1 micron on our test pieces) ■ Compared to other companies' ceramic coatings, it has a finer texture and is well-regarded for its beautiful film quality. 【Examples of Applications】 ■ General steel processing tools ■ PPS resin molds ■ Cutting tools ■ Various molds ■ Machine parts, etc. *For detailed specifications, please refer to the catalog or the product information on our official website.
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Free membership registrationDP-DLC is a composite specification DLC coating that has been dimpled on the surface of the substrate of the "a-C:H" DLC standard film (DLC-EX). —————————————————————— 【Features】 ■ Effective in improving the durability of sliding parts used in oil and high-friction punches ■ Matte coating is possible ■ Low-temperature film formation minimizes distortion and deformation of the substrate due to heat, resulting in a smooth and hard film quality that is well-regarded. ■ Dimpling through shot peening creates countless indentations on the substrate surface, enhancing the oil film retention performance of lubricants and release agents. 【Examples of Applications】 ■ Sliding wear parts ■ Punches, etc.
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Free membership registrationCFC-H is a water-repellent DLC coating that adds fluorine to the "a-C:H" DLC standard film (DLC-EX). —————————————————————— 【Features】 ■ It forms a film at low temperatures, resulting in minimal distortion or deformation of the base material due to heat, and is well-regarded for its smooth and hard film quality. ■ It has excellent water-repellent properties, making it ideal for DLC coatings on molds that require release properties and mechanical parts that require liquid release. ■ It has high non-stick properties, preventing the deterioration of cutting performance of blades due to the adhesion of sticky substances. ■ Due to its soft nature and low film hardness, it is not suitable for tools or parts that require wear resistance. 【Examples of Use】 ■ Molds and jigs for water-repellent purposes ■ Sharp blades requiring non-stick properties ■ Blades for rubber adhesion, etc. *For detailed specifications, please refer to the catalog or the product information on the official website.
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Free membership registrationXPC is a heat-resistant DLC coating that adds silicon to the "a-C:H" type DLC standard film (DLC-EX). —————————————————————— 【Features】 ■ It has a reputation for producing a smooth and hard film quality with minimal distortion or deformation of the base material due to low-temperature film formation. ■ It excels in oxidation resistance, making it ideal for DLC coatings on sliding parts and mechanical components that require heat resistance and are subjected to impact. ■ While the film hardness is lower than that of DLC-EX, it is effective when you want to reduce hardness and increase toughness. [Made to order] 【Examples of Applications】 ■ Heat-resistant sliding parts ■ Impact-resistant components, etc. *For detailed specifications, please refer to the catalog or the product information on the official website.
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Free membership registrationDLC Prism is a thin film version of the "a-C:H" DLC standard film <DLC-EX> with a film thickness of less than 0.5 microns. —————————————————————— 【Features】 ■ The low-temperature film formation results in minimal distortion and deformation of the substrate due to heat, and it is well-regarded for its smooth and hard film quality. ■ Ideal for DLC coating of small-diameter tools and small machine parts, where film thickness is a critical factor for aluminum cutting. ■ The thin film coating does not compromise the sharpness of the cutting edge, reduces tool slippage, and prevents a decrease in cutting performance. 【Examples of Applications】 ■ Small-diameter tools for aluminum processing ■ Small-diameter cutters ■ Aluminum foil cutting blades, etc. *For detailed specifications, please refer to the catalog or the product information on the official website.
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Free membership registrationDLC-EX is our standard film for "a-C:H type" DLC coating, which has been in continuous operation for over 30 years since its founding. —————————————————————— 【Features】 ■ It forms at low temperatures, resulting in minimal distortion or deformation of the base material due to heat, and is well-known for its smooth and hard film quality. ■ Widely used for machine parts where wear and galling are concerns. ■ Also extensively adopted for tools and molds used in the processing of aluminum and copper, where adhesion is an issue. 【Examples of Applications】 ■ Aluminum cutting tools ■ Aluminum film cutting molds ■ Carbide powder molding molds ■ Tools for preventing plating adhesion ■ Rubber trimming ■ Conveyance rails, etc. *For detailed specifications, please refer to the catalog or the product information on our official website.
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Free membership registrationAC-X is a special specification of hydrogen-free DLC of the "ta-C" type, optimized for the balance of "film thickness" and "hardness" of <AC-X>. —————————————————————— 【Features】 ■ By reducing the film hardness compared to the thick film specification <AC-X・W>, chipping due to thickening is suppressed. ■ Ideal for ultra-hard sliding parts and wear-resistant components. (For ensuring adhesion, ultra-hard materials are recommended for the substrate.) ■ Graphite is instantaneously arc-evaporated and ionized, allowing for the extraction of high-purity carbon, resulting in a smooth and hard film quality. 【Examples of Applications】 ■ Wear-resistant components ■ Stainless steel thin plate pressing (0.05t), etc. *For detailed values, please refer to the catalog or the official website product information.
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Free membership registrationAC-X・W is a thick film specification of the hydrogen-free DLC coating "ta-C" type <AC-X>. —————————————————————— 【Features】 ■ Effective for preventing adhesion in aluminum and copper processing. ■ Not suitable for processing that involves impacts where chipping is likely to occur. ■ To ensure adhesion, we recommend using cemented carbide as the base material. ■ By instantaneously arc-evaporating graphite and extracting ionized carbon at high purity, we achieve a smooth and hard film quality. 【Examples of Applications】 ■ (Before sintering) Alloy cutting tools ■ Aluminum die-casting cutting cemented carbide tools ■ Non-ferrous processing cemented carbide tools, etc. *For detailed specifications, please refer to the catalog or the official website product information.
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Free membership registrationAC-X is our standard film of hydrogen-free "ta-C" type, which possesses 90% of the SP3 structure of carbon with a diamond structure. —————————————————————— 【Features】 ■ Superior hardness, heat resistance, and anti-adhesion compared to DLC-EX (a-C:H). ■ Ideal for high-speed machining of non-ferrous metals such as aluminum and copper. ■ For ensuring adhesion, carbide substrates are recommended. 【Examples of Applications】 ■ Carbide tools for cutting non-ferrous metals (aluminum, copper, silver, tin, etc.) ■ Carbide punches ■ Molds, etc. *For detailed specifications, please refer to the catalog or the product information on our official website.
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Free membership registrationDLC film formation utilizes technologies such as PVD (Physical Vapor Deposition) and CVD (Chemical Vapor Deposition). Ion source deposition is a type of PVD where a filament is heated to ionize hydrocarbon gas using thermal electrons, which then collide with the substrate under a potential difference to create a coating. PCVD (Plasma Chemical Vapor Deposition) involves ionizing hydrocarbon gas in a plasma region and colliding it with the substrate under a potential difference to form a coating. FAD (Filtered Arc Deposition) uses a magnetic field filter to draw only ionized carbon into the substrate for film formation. [Film formation methods we employ] ■ Ion source deposition ■ PCVD (Plasma Chemical Vapor Deposition) ■ FAD (Filtered Arc Deposition) *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationDLC is a substance known as an amorphous structure (non-crystalline structure) that contains a mixture of diamond bonds (sp3) and graphite bonds (sp2). By adding "hydrogen," the properties of the film can be altered, and the types can be broadly categorized into four based on the ratio of diamond to graphite and the presence or absence of hydrogen (H). In recent years, due to its beautiful appearance and high durability, applications have expanded to everyday items such as wristwatches, lures, bicycle parts, and golf clubs. 【Types】 ■ ta-C (Tetrahedral Amorphous Carbon) ■ a-C (Amorphous Carbon) ■ ta-C:H (Hydrogenated Tetrahedral Amorphous Carbon) ■ a-C:H (Hydrogenated Amorphous Carbon) *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationHere is an example of "DLC coating" in the medical industry. This technology has high biocompatibility and is being applied to medical instruments, surgical tools, medical materials, implants, stents, and more. Not only does it facilitate smooth insertion into the body, but its high chemical resistance and antibacterial properties can also reduce the burden on patients. Please feel free to contact us if you have any inquiries. 【Examples of Coatings】 ■Tweezers ■Scalpel ■Injection needle ■Artificial joint ■Implant ■Stent, etc. *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationHere are examples of "DLC coating" in mechanical components. In mechanical parts such as gears, pulleys, shafts, and bearings, it is adopted to improve sliding properties and durability. It is also used in electronic components like hard disks, where smoothness is required, and to prevent scratches and dirt on enclosures. Additionally, due to the low dust generation from wear, it is suitable for use in semiconductor manufacturing equipment and clean rooms. 【Examples of Coating】 ■ Mechanical element parts ■ Transmission parts ■ Bearing parts ■ Electronic parts ■ Semiconductor manufacturing equipment parts, etc. *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationHere is an example of "DLC coating" in automotive parts. In automotive components, it is primarily adopted to improve wear resistance by utilizing sliding characteristics. Even in the harsh environment inside the engine case, it provides high durability and low aggressiveness towards counterpart materials, preventing component damage and contributing to enhanced safety. Additionally, it reduces friction resistance, which can decrease energy loss, leading to improved fuel efficiency and reduced CO2 emissions. [Examples of Coatings] - Engine parts - Transmission parts - Gears - Drive components - Exterior and interior parts, etc. *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationHere are examples of "DLC coating" in molds. In molds, it is mainly adopted for wear prevention and longevity. Compared to other coatings, it forms a thin film at low temperatures, making it less likely to affect the precision of the mold. It is also used to improve the release properties of molten glass. Please feel free to contact us if you have any inquiries. 【Examples of Coatings】 ■ Press molds ■ Lens molds *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationHere are some examples of "DLC coating" in cutting tools. In cutting tools, it is primarily adopted for wear prevention and extending tool life. It is also used in cutting tools for aluminum processing and dry machining, utilizing its anti-adhesion properties. Additionally, it can suppress cutting heat caused by friction, allowing the machine tool to demonstrate its inherent high processing accuracy. 【Examples of Coatings】 ■ End mills ■ Milling tools ■ Drills ■ Inserts ■ Reamers *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationThe features of DLC coating are "a film thickness of a few microns," "a variety of hardness (1000 to 7000 Hv)," and "excellent sliding properties." It has various characteristics such as gas barrier properties (gas blocking), optical properties (infrared transmission and ultraviolet blocking), water repellency, chemical resistance, and antibacterial properties. Please feel free to contact us if you have any requests. 【Main Features】 ■ High hardness of 7000 Hv (AC-X) can be achieved by the way carbon is bonded ■ The entire structure is amorphous (like glass), providing excellent sliding and smoothness ■ Because it is primarily composed of carbon, it has excellent non-compatibility with non-ferrous metals, making it less likely to cause adhesion, welding, or seizing ■ Low hardness DLC tends to produce fewer scratches and wear on the opposing material during friction *For more details, please refer to the related links or feel free to contact us.
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Free membership registration"DLC" stands for "Diamond Like Carbon," which is a surface treatment technology that involves coating a thin film primarily composed of carbon onto surfaces such as metals. It is widely adopted across various industries as a coating that supports manufacturing, including cutting tools, molds, automotive parts, machine components, and medical parts. DLC, which features a mixture of structures like diamond and graphite, is harder and has better lubricity compared to common ceramic coatings such as titanium-based or chromium-based coatings, and it excels in properties like "wear resistance" and "adhesion resistance to non-ferrous metals." 【Features】 ■ Film thickness of a few microns ■ Available in a range of hardness (1000–7000 Hv) ■ Excellent lubricity *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationOur company has manufactured the T-shaped Filtered Arc (T-FAD) device developed by a professor at Toyohashi University of Technology, and has developed ta-C (our product name: AC-X) as a product for commissioned film deposition, significantly reducing the contamination of droplets in the film. This document provides detailed explanations specifically regarding the cutting of the aluminum alloy "AC2A" used for castings. We invite you to read it. [Contents (partial)] ■1. Introduction ■2. T-FAD ・2.1 Device Overview ・2.2 Film Deposition Conditions ■3. Characteristics of ta-C Film *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationIn recent years, the material of the workpiece has increasingly included AC-type materials with added Si and copper, which are die-cast alloys among aluminum alloys. This document explains the practical application of ta-C film (AC-X) as a protective film for aluminum cutting tools, which has significantly reduced droplet contamination in the film using the T-type Filtered Arc Deposition method (T-FAD), currently under development. We encourage you to read it. 【Contents (partial)】 ■1. Introduction ■2. T-FAD ・2.1 Equipment Overview ・2.2 Film Formation Conditions ・2.3 Droplet Comparison Evaluation ■3. Properties of ta-C Film *For more details, please refer to the PDF document or feel free to contact us.
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