Anjo, Japan

Naoyuki Kojima


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2013

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1 patent (USPTO):Explore Patents

Title: Naoyuki Kojima: Innovator in Rotary Blade Technology

Introduction

Naoyuki Kojima is a prominent inventor based in Anjo, Japan. He has made significant contributions to the field of rotary blade technology, particularly through his innovative designs and patents. His work has been instrumental in enhancing the functionality and efficiency of saw blade fixing devices.

Latest Patents

Kojima holds a patent for a fixing device for rotary blades. This device features a screw flange of a screw body that is tightened into a screw hole of a spindle, designed with a truncated cone shape. An operating lever is incorporated, allowing it to pivot between a received position and a use position by reversing the lever between the front and back sides. Notably, the operating lever does not protrude from the truncated cone shape when it is in the received position. This innovative design improves the usability and safety of rotary blades.

Career Highlights

Naoyuki Kojima is currently employed at Makita Corporation, a leading manufacturer of power tools and outdoor equipment. His role at the company has allowed him to apply his inventive skills in developing advanced tools that meet the needs of professionals and consumers alike. His dedication to innovation has contributed to the company's reputation for quality and reliability.

Collaborations

Kojima has worked alongside his coworker, Shinji Hirabayashi, to further enhance the development of rotary blade technologies. Their collaboration has led to improvements in product design and functionality, benefiting users in various industries.

Conclusion

Naoyuki Kojima's contributions to rotary blade technology exemplify the spirit of innovation. His patented designs and collaborative efforts at Makita Corporation continue to influence the industry positively. His work not only enhances tool performance but also ensures user safety and efficiency.

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