Oumihachiman, Japan

Koji Deno



Average Co-Inventor Count = 1.7

ph-index = 4

Forward Citations = 33(Granted Patents)


Location History:

  • Shiga, JP (1985)
  • Ohmihachimanshi, JP (1985)
  • Omihachiman, JP (1999)
  • Oumihachiman, JP (1989 - 2003)

Company Filing History:


Years Active: 1985-2003

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7 patents (USPTO):Explore Patents

Title: Koji Deno: Innovator in Fiber Spinning Technology

Introduction

Koji Deno is a prominent inventor based in Oumihachiman, Japan. He has made significant contributions to the field of fiber spinning technology, holding a total of 7 patents. His innovative designs and methods have advanced the efficiency and effectiveness of spinning apparatuses.

Latest Patents

Deno's latest patents include a spinning apparatus and method, as well as a hollow guide shaft member for spinning. One notable invention is a fiber spinning apparatus that features a nozzle applying a rotating air current to fibers. This design incorporates a hollow spindle and a fiber introduction member with a fiber guide surface that has a torsion angle of 100 degrees or more. This unique configuration allows for easier bundling of fibers without the need for a needle-shaped guide member, effectively reducing yarn breakage and enhancing spinning capability.

Career Highlights

Throughout his career, Koji Deno has been associated with Murata Kikai Kabushiki Kaisha, where he has played a vital role in developing innovative spinning technologies. His work has not only improved the performance of spinning apparatuses but has also contributed to the overall advancement of the textile industry.

Collaborations

Deno has collaborated with notable coworkers, including Isamu Matsui and Tomoaki Takahashi. Their combined expertise has fostered a creative environment that has led to groundbreaking advancements in fiber spinning technology.

Conclusion

Koji Deno's contributions to fiber spinning technology through his patents and collaborations have established him as a key figure in the industry. His innovative approaches continue to influence the future of textile manufacturing.

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