Solve wear, chipping, and corrosion during processing of electrical steel sheets! Everloy super hard alloy.
Mold parts that are resistant to wear and chipping due to adhesion of electrical steel sheets, chipping caused by the impact of press processing, and corrosion from water-cutting wire processing!
Electromagnetic steel sheets are essential for motor cores, but we often hear about issues such as corrosion during processing and chipping or wear during pressing. 【Problems during Electromagnetic Steel Sheet Processing】 - Chipping due to impact during press processing - Wear and chipping caused by adhesion of the main component, iron - Corrosion from prolonged water-cutting wire processing - Damage from electrical discharge machining Everloy's "Super Hard Alloy EW Type and EX Type" are mold parts materials that can solve problems during electromagnetic steel sheet processing. - EW Type <For Punching> Compared to materials of the same hardness, it has a relatively high fracture toughness value, allowing for the prevention or improvement of cracks, chipping, and flaking without reducing hardness. It also has excellent corrosion resistance. - EX Type <For Riveting> A suitable material type for suppressing adhesion wear that occurs during the riveting process of electromagnetic steel sheets. For details on various physical properties, applications/case studies, and wear comparison examples, please download the PDF or contact us. ★ When inquiring, if you could provide details about your current issues or areas you wish to improve, our specialized staff will propose solutions. Please feel free to consult us about anything.
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Everloy possesses a variety of carbide materials suitable for various applications, and provides solutions for challenges such as material supply, precision machining of precision mold parts, and wear, impact, and corrosion resistance tools. Additionally, regarding spray nozzles, we offer a comprehensive solution for analysis, design, development, and manufacturing based on our extensive lineup and performance evaluation technology, while also applying carbide to spray nozzles to propose the development of products with excellent wear resistance and improvements in product performance through fluid analysis.