Iwakuni, Japan

Munekazu Okuhara



Average Co-Inventor Count = 15.0

ph-index = 1

Forward Citations = 11(Granted Patents)


Company Filing History:


Years Active: 2006

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1 patent (USPTO):Explore Patents

Title: **Munekazu Okuhara: Innovator in Polyester Production**

Introduction

Munekazu Okuhara, an innovative inventor based in Iwakuni, Japan, has made significant contributions to the field of polymer chemistry. With a focus on developing efficient catalysts for polyester production, his work aims to enhance the quality and sustainability of manufacturing processes.

Latest Patents

Munekazu Okuhara holds a patent for a "Polymerization catalyst for polyester, polyester produced with the same, and process for producing polyester." This catalyst distinguishes itself by omitting germanium and antimony compounds as primary components. Instead, it utilizes aluminum as the core metallic ingredient, which exhibits remarkable catalytic activity. This innovation ensures that the resulting polyester is resistant to thermal degradation during melt molding, thus maintaining high thermal stability, thermal oxidation resistance, and hydrolytic resilience.

Career Highlights

Okuhara's career is marked by his extensive research in polymerization processes. His patented catalyst allows for the production of polyester in various forms, including fibers, films, sheets, and complex moldings. This technology not only improves the performance of polyester products but also enhances their application across different industries.

Collaborations

Throughout his career, Munekazu Okuhara has collaborated with notable colleagues such as Takahiro Nakajima and Kenichi Tsukamoto. Their teamwork has been pivotal in advancing the research and development of innovative materials and processes in polyester production.

Conclusion

Munekazu Okuhara's contributions to the field of polymer chemistry exemplify the vital role of innovation in advancing manufacturing processes. His patented catalyst represents a significant step forward in producing high-quality polyester while minimizing the use of harmful compounds. As he continues to work with Toyo Boseki Kabushiki Kaisha, his future endeavors promise to further enhance the landscape of polymer applications.

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