"Proposal for Improvement of Mold Parts Using Super Hard Materials" <Presentation of Case Studies for Problem Solving>
Everloy is capable of providing a consistent production process from hard materials to precision machining and mold parts as a manufacturer of hard materials.
We conduct thorough investigations into the causes and condition analyses of short-life parts, and propose solutions by reviewing the selection of super hard materials, processing methods, and shapes. Currently, we are offering materials that introduce case studies on solving issues related to mold parts. You can view them via "PDF Download." 【Contents of Case Studies】 ■ Improvement proposals for super hard parts We present case studies on solutions for issues such as corrosion, wear, and damage. ■ Wear countermeasures and performance improvement proposals for spray nozzles We introduce case studies on solving issues related to flow rate, patterns, and performance, as well as fluid analysis cases. *If you have any challenges, such as wanting to extend lifespan, please feel free to consult with us.
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Main Recruitment Fields ■ Automotive Parts: Electrical components, Powder molding die components ■ Battery-related: Die components for transfer presses, Powder molding die components ■ Motor-related: Die components for motor cores ■ Rolling-related: Rolling rolls, Side rolls
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If you have any concerns, such as wanting to extend your lifespan, please feel free to consult with us.
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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.