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alloy Product List and Ranking from 220 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

alloy Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

  1. null/null
  2. 日本青銅 Tokyo//Ferrous/Non-ferrous metals
  3. 大和特殊鋼 本社 Osaka//Machine elements and parts
  4. 4 null/null
  5. 5 オーファ Chiba//Ferrous/Non-ferrous metals

alloy Product ranking

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

  1. Continuous cast products, round bars and pipes, cutting products available, minimum 15L and up. 日本青銅
  2. Plastic mold steel and beryllium copper alloy "COOLMOULD" 日本金型材
  3. High corrosion-resistant nickel alloy "Alloy C22 (UNS N06022)" 大和特殊鋼 本社
  4. 4 Copper tungsten alloy (Cu-W) for electrical discharge machining 'CE08'
  5. 4 Aerospace grade titanium AMS4911 □Available from 10mm オーファ

alloy Product List

76~90 item / All 559 items

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[Production Example] Carbide Round Blade for Cutting Film and Copper Foil Composite Material Sheets

We will introduce a case where even with blade wear, the impact on cutting performance is reduced, allowing for stable cutting even with composite materials!

We would like to introduce a case study in response to the inquiry regarding the high wear rate and frequent blade replacements of existing circular blades when cutting rolls of copper foil film at various stages of processing. We propose a carbide circular blade made from ultra-fine particle alloy, featuring a double-edged design. By altering the cutting angle at the start and the angle at the blade's base, we have reduced the impact on cutting performance even as the blade wears, enabling stable cutting even with composite materials. As a result, we have achieved more than double the lifespan compared to conventional blades, thereby reducing the frequency of replacements. [Case Overview] ■ Issue - Existing circular blades wear out quickly, leading to high replacement frequency. ■ Proposal - A carbide circular blade made from ultra-fine particle alloy with a double-edged design. *For more details, please download the PDF or feel free to contact us.

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[Production Example] Carbide Circular Blade for Cutting Solar Panel Film

We will introduce a case where the sharp edge is maintained even after continuous cutting, allowing for a clean cut surface!

We would like to introduce a case study in response to the request to minimize the irregularities on the cutting surface during the process of cutting thin film used for solar panels into long lengths. We selected a long-lasting, high-hardness carbide circular blade and adjusted the blade angle and thickness to suit the workpiece, allowing for cutting without applying unnecessary stress to the film. Since the sharp edge is maintained even during continuous cutting, the cutting surface can be kept clean. This method can also be applied to other functional films (such as PET and EVA). 【Case Overview】 ■ Challenge - To minimize irregularities on the cutting surface during the process of cutting thin film into long lengths. ■ Processing Details - Selected a long-lasting, high-hardness carbide circular blade. - Adjusted the blade angle and thickness to suit the workpiece, allowing for cutting without applying unnecessary stress to the film. *For more details, please download the PDF or feel free to contact us.

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[Production Example] Catheter Tube Medical Blade

We will introduce a case where the adoption of super hard materials has significantly improved the durability of the blade!

We would like to introduce a case in which we received an inquiry from a medical device manufacturer regarding the desire to "cut a silicone tube with a diameter of less than 1mm, without burrs, and at an angle." The tubes used for catheters are extremely thin and are inserted into narrow internal pathways such as blood vessels, making them critical components that require high safety standards. An angled cut expands the cross-section, so the thickness of the blade and the angle of the cutting edge are directly linked to the quality. In response, we proposed a thin-blade design of a carbide round blade, which achieved an extremely smooth cutting surface while suppressing deformation of the tube. Additionally, the use of carbide material significantly improved the durability of the blade. 【Case Overview】 ■ Challenge: To cut a silicone tube with a diameter of less than 1mm, without burrs, and at an angle ■ Proposal: Thin-blade design of a carbide round blade ■ Processing Details: Achieved an extremely smooth cutting surface while suppressing deformation of the tube ■ Result: The use of carbide material significantly improved the durability of the blade *For more details, please download the PDF or feel free to contact us.

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[Production Example] Food Machinery Large Diameter Round Blade for Processed Meat Slicing

We will introduce a case of selecting materials with excellent corrosion resistance and manufacturing large-diameter round blades for food processing applications!

We would like to introduce a case where we received a request from a food manufacturer to produce and deliver a carbide round blade for slicing processed meat. Due to the food processing application, we previously used stainless steel blades, but we changed the material to carbide to minimize wear on the cutting edge. Since this is for food use, we selected materials that are excellent in corrosion resistance. The outer diameter is 300mm to slice large workpieces all at once. We also accept requests for special materials and large-diameter blades like this case, so please feel free to consult us. 【Case Overview】 ■ Purpose of Use - Slicing processed meat ■ Processing Details - Changed the material to carbide to minimize wear on the cutting edge - Selected materials that are excellent in corrosion resistance for food use - The outer diameter is 300mm to slice large workpieces all at once *For more details, please download the PDF or feel free to contact us.

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New technology: hydrogen storage alloy

Development and manufacturing of energy-saving refrigeration machines using hydrogen.

Hydrogen storage alloys have the property of releasing heat when absorbing hydrogen and absorbing heat when releasing hydrogen, and the alloys themselves can store hydrogen up to 1,000 times their own volume.

  • Refrigerators and freezers

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SCPT alloy

New ultra-fine super hard alloy from Japan's special alloys! It will change the history of super hard alloys from now on.

The "SCPT alloy" is a revolutionary alloy that achieves ultra-fine particle size by uniformly arranging ultra-fine particles of Ti(C,N). This product exhibits high strength and outperforms conventional cemented carbides used for cutting tools and wear-resistant tools. Please feel free to contact us when you need assistance. 【Features】 ■ High strength (high resistance) ■ Performance that surpasses cemented carbides * For more details, please refer to the PDF document or feel free to contact us.

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Tohoku University Technology: Titanium alloy for biomedical application: T19-802

High antibacterial property, biocompatibility and a low Young's modulus close to the cortical bone

A requirement for biocompatible Ti alloy for orthopedic implants is to suppress stress shielding, which occurs because of the large difference between Young’s moduli of the prosthetic stem and the cortical bone (10–30 GPa). Meanwhile, conventional autoclave sterilization before implant exhibits the discoloration and heaviest particulate contamination, and some multiple sterilization regimens for metallic materials may pose serious biological concerns.  The present invention can provide the necessary functions to a Ti implant material without impairing the low Young's modulus of Ti alloy. It possesses high antibacterial properties with a high antibacterial activity value above 2.0 from the antibacterial test (JIS R 1702) and osseointegration fromhydroxyapatite formation on the surface of Ti alloy in simulated body fluid.

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Tohoku University Technology: Mg alloy that generates hydrogen inside neutral aqueous solution: T21-060

Alloy that does not stop reaction during the process and continues to produce only hydrogen

Hydrogen is attracting attention as a sustainable energy source, but all current hydrogen generation methods, such as water electrolysis or steam reforming of fossil fuel, have an important environmental impact. The "hydrolysis" which generates hydrogen by reacting metallic material with water, is attracting attention as a hydrogen generation method with a small environmental impact. The advantage of the hydrolysis is that it does not generate oxygen but only hydrogen, so the oxygen separation process is not necessary and there is no risk of explosion.  Hydrogen generating materials consisting of Mg or Mg alloy have been reported as material for hydrolysis, but the phase which does not react with water such as Mg(OH)2 is formed and the reaction stops in the middle of the reaction process. Therefore, most of the previously reported hydrogen generating materials have a small hydrogen generation per unit weight.  This invention is about the hydrogen generating alloy that does not stop reaction even inside neutral aqueous solution. This alloy generates a large amount of hydrogen per unit weight because it reacts with water until the end without stopping the reaction in the middle. Moreover, the alloy is composed only of Mg and Ca elements, which are present in large quantity on Earth and are not toxic to the ecosystem. There are very few hydrogen generating materials that do not generate heavy metal ions through hydrolysis, and this alloy has potential to use in any location.

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Tohoku University Technology: High-Strength Co-Based Metallic Glass Alloy: T06-003

It is an alloy with high glass-forming ability (capable of φ14mm), high machinability, and high strength (with a compressive strength of over 4000 MPa).

Metallic glass alloys, unlike conventional crystalline metals, mostly do not exhibit plastic elongation in tensile tests. Even in compositions that do show plastic elongation, they only demonstrate about 2-3% elongation, resulting in very little ductility under uniaxial stress. Therefore, plastic processing such as rolling or forging, which is common with conventional crystalline metals, is difficult. Furthermore, metallic glass alloys have higher strength compared to regular metals, with some alloys reaching up to 5000 MPa, and their machinability is not as good as that of steel. However, metallic glass alloys have the characteristic that the viscosity of the material drops sharply above the glass transition temperature, allowing for various processing techniques (viscous flow processing) in the supercooled liquid region. By utilizing viscous flow, they can become materials with excellent machinability. This invention relates to Co-based metallic glass alloys that combine good machinability, high strength, and high glass-forming ability.

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Tohoku University Technology: CoCrMo Alloy and Its Manufacturing Method: T11-101

Achieve high strength, high ductility, and high fatigue strength.

In recent years, with the progress of aging, biomaterials that can replace bodily functions have garnered significant attention. Co-Cr-Mo based alloys used as biomaterials play an important role as materials for artificial joints due to their excellent corrosion resistance and wear resistance compared to other metal materials. Many of these are cast alloys standardized by ASTM F75; however, cast materials generally have coarse microstructures and often contain casting defects, resulting in poor strength and ductility. Therefore, it is necessary to improve mechanical properties through microstructural control using plastic processing and heat treatment. This invention makes it possible to provide a Co-Cr-Mo based alloy with high strength, high ductility, and high fatigue strength as a biomaterial. The alloy contains a specific composition of Co/Cr/Mo/N and is characterized by fine crystalline grain structure and a high density of dislocations. Through skillful composition and microstructural control, it is possible to achieve a combination of high strength, high ductility, and high fatigue strength that surpasses conventional Co-Cr-Mo based alloys.

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Information on the processing of lithium and the manufacturing and processing of lithium alloys.

Argon gas atmosphere processing in the glove box! Leave it to us for anything related to metallic lithium.

At Honjo Metal Co., Ltd., we process lithium and manufacture and process lithium alloys for use in batteries and chemical catalyst applications. By adopting a 24-hour automatic argon gas supply system, we maintain the internal pressure of the airtight box in optimal condition, preventing the intrusion of moisture from the atmosphere. Our lithium foil products are highly regarded by manufacturers both domestically and internationally as battery-grade lithium foil due to their low internal resistance and excellent storage characteristics. 【Products】 ■ Lithium foil ■ Lithium strips ■ Rolled lithium foil ■ Coin-type lithium ■ Lithium laminated products, etc. *For more details, please download the PDF or feel free to contact us.

  • Lithium-ion battery
  • Processing Contract
  • alloy

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Core pin Material: SKH51, carbide, etc.

These are core pins made of SKH51 and carbide! They are used in injection molding molds for shaping resin parts for medical and semiconductor applications.

We would like to introduce the "core pin" handled by Sanwa Creation Co., Ltd. In addition to being used for molding resin parts for medical and semiconductor applications, it is also used for processing the head section of inkjet printers. When used in environments where the resin temperature is high during molding, it can also be manufactured from high heat-resistant zirconia ceramics. 【Specifications (partial)】 ■Material: SKH51, carbide, zirconia ceramics, ■Standards - Custom-made to your desired size, - Capable of handling shapes with multiple steps, elliptical or other irregular shapes, as well as LAP processing. *For more details, please refer to the related links or feel free to contact us.

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  • Other molds
  • Injection Molding Machine
  • Processing Jig

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Welding guide Material: carbide alloy

Used as a guide pin for welding! Made of carbide for long-lasting use.

We would like to introduce the carbide welding guides manufactured by Sanwa Creation Co., Ltd. Due to being made of carbide, they offer long-lasting durability. They are used as guide pins for welding. Please feel free to contact us when you need them. 【Specifications】 ■Material: Carbide *For more details, please refer to the related links or feel free to contact us.

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  • Welding Machine
  • Other metal materials

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Green sheet cutter Material: carbide alloy

This is a green sheet cutter made of ultra-hard alloy! Its high durability improves production efficiency and quality.

We would like to introduce the "Green Sheet Cutter" that adopts our uniquely developed ultra-fine particle ultra-hard alloy "MS Series." The ultra-hard alloy materials can be selected from MS2 as the standard material, MS4 which excels in wear resistance, and MS5 suitable for thicker laminated types. The fine crystal structure suppresses the occurrence of micro chipping. With high durability, it improves production efficiency and quality. 【Features】 ■ The fine crystal structure suppresses the occurrence of micro chipping ■ High durability improves production efficiency and quality *For more details, please refer to the PDF document or feel free to contact us.

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  • サブ4.PNG
  • サブ5.PNG
  • cutter
  • Cutter/Scissors

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