Aichi, Japan

Yoshimasa Nakagawa


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 14(Granted Patents)


Company Filing History:


Years Active: 1977

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1 patent (USPTO):Explore Patents

Title: Innovator Yoshimasa Nakagawa and His Contributions to Resin Curing Technology

Introduction

Yoshimasa Nakagawa, an inventive mind based in Aichi, Japan, has made noteworthy contributions to the field of materials science. With a strong focus on unsaturated polyester resins, Nakagawa is recognized for his innovative approaches that enhance the efficiency and quality of curing processes.

Latest Patents

Yoshimasa Nakagawa holds a significant patent titled "Process for Curing Unsaturated Resins." This patent outlines a method for curing unsaturated polyester resins in a remarkably short time and at low temperatures. The process utilizes β-amino-α,β-unsaturated ketone and peroxide containing hydroperoxy groups without requiring metallic salts. One of the remarkable aspects of this innovation is that the resulting product remains uncolored, a critical feature for many applications in industry.

Career Highlights

Currently, Nakagawa is associated with Nihon Yushi Co., Ltd., where he continues to push the boundaries of resin technology. His dedication to research and development in this field has positioned him as a prominent figure in the innovation landscape.

Collaborations

Throughout his career, Yoshimasa Nakagawa has collaborated with notable colleagues, including Koji Edamura and Yoshitaka Ikeda. These collaborations have fostered a dynamic environment for creative problem-solving and led to advancements in their shared field of expertise.

Conclusion

Yoshimasa Nakagawa's impactful work and his patent on curing unsaturated resins represent significant advancements in material technology. His contributions are not only essential for industry practices but also set the stage for future innovations in polymer science. As the field continues to evolve, Nakagawa's expertise will undoubtedly remain influential in shaping the trajectory of resin curing techniques.

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