Shimane, Japan

Shigeo Fushitani

USPTO Granted Patents = 1 

Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2010

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1 patent (USPTO):Explore Patents

Title: Innovator Shigeo Fushitani: Pioneering Flameproof Rayon Fiber

Introduction: Shigeo Fushitani, an accomplished inventor based in Shimane, Japan, is renowned for his groundbreaking contributions to the textile industry. His notable invention revolves around the development of flameproof rayon fiber, a significant advancement that emphasizes safety and sustainability in fabric manufacturing.

Latest Patents: Fushitani holds a patent for his innovative flameproof rayon fiber and its manufacturing method. This fiber distinguishes itself by not relying on halide-based flame retardants, phosphorous flame retardants, or organic solvents. It is characterized by its excellent flameproofness, launderability, and biodegradability when buried in soil. The invention incorporates components of silicon and magnesium in an amorphous state, ensuring both environmental and user safety.

Career Highlights: Throughout his career, Shigeo Fushitani has made a significant impact on the textile industry, particularly during his tenure with leading companies such as Daiwabo Holdings Co., Ltd. and Daiwabo Rayon Co., Ltd. His work has been influential in promoting innovations that align with modern sustainability practices.

Collaborations: Fushitani has collaborated closely with his colleague, Masaru Nakano, contributing to the advancement of their shared goals in developing safer and more environmentally friendly textile products. Their combined expertise has led to substantial innovations in yarn manufacturing.

Conclusion: Shigeo Fushitani stands out as a key figure in the innovations of textile materials. His flameproof rayon fiber is a testament to his commitment to safety, sustainability, and advanced manufacturing techniques. As the industry continues to evolve, Fushitani's contributions will undoubtedly influence future advancements in fabric technology.

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