Hyogo, Japan

Yukihisa Komiya


Average Co-Inventor Count = 10.0

ph-index = 1


Company Filing History:


Years Active: 2005

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1 patent (USPTO):Explore Patents

**Title: Innovations by Yukihisa Komiya in Photocurable Resin Technology**

Introduction

Yukihisa Komiya is a notable inventor based in Hyogo, Japan, recognized for his contributions to photocurable resin technology. His innovative approach addresses the need for advanced materials in industrial applications, making significant strides in the field of material science.

Latest Patents

Komiya holds one patent titled “Photo-setting Resin Composition, Metal Laminates Having Layers Made from the Composition, Metal Members Made from the Laminates and Having High-Hardness Protecting Layers and Process for Production Thereof.” This invention revolves around a photocurable resin composition, which includes a photocurable component that forms a resin layer with specific viscosity parameters at controlled conditions. The technology allows for the lamination of a photocurable resin layer onto a metal sheet, which can then be processed into metal parts featuring high-hardness protective coatings after being treated with light or electron beams.

Career Highlights

Yukihisa Komiya is an integral part of Kobe Steel, Ltd., a leading company in steel and materials manufacturing. His research efforts have contributed to enhancing the properties of metal components, thereby optimizing their performance in various applications.

Collaborations

Throughout his career, Komiya has worked alongside notable colleagues, including Takeshi Watase and Yasuo Hirano. His collaborations have led to advancements in the development and application of new materials, showcasing the importance of teamwork in innovative endeavors.

Conclusion

Yukihisa Komiya’s work in the field of photocurable resin technology exemplifies the impact of inventors on industrial advancements. With a patent that addresses the evolving needs of metalworking and protective coatings, he continues to inspire innovation within his field and represents the potential of modern materials science.

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