Hyogo, Japan

Masayuki Shibata


Average Co-Inventor Count = 3.3

ph-index = 1

Forward Citations = 15(Granted Patents)


Location History:

  • Kakogawa, JP (2017)
  • Hyogo, JP (2018)

Company Filing History:


Years Active: 2017-2018

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2 patents (USPTO):Explore Patents

Title: Masayuki Shibata: Innovator in Utility Vehicle Design

Introduction

Masayuki Shibata is a notable inventor based in Hyogo, Japan. He has made significant contributions to the field of utility vehicle design, holding two patents that showcase his innovative approach to vehicle safety and functionality.

Latest Patents

Shibata's latest patents include a utility vehicle that features a unique chassis and a Roll-Over Protection Structure (ROPS). This ROPS surrounds the cabin space of the vehicle and is designed with a curved outline, allowing it to roll easily on the ground surface in the event of a rollover. The vehicle's center of gravity is strategically positioned at one-third or lower of its height, enhancing its stability and making it easier to right itself after a rollover incident. Another patent focuses on the front wall structure of a utility vehicle, which includes a main frame that defines a cabin and a cabin front wall that separates the cabin from the bonnet chamber. This design also incorporates a cabin guard that covers the outer surface of the cabin front wall body, further improving safety.

Career Highlights

Masayuki Shibata is associated with Kawasaki Jukogyo Kabushiki Kaisha, a company renowned for its engineering and manufacturing excellence. His work at Kawasaki has allowed him to develop innovative solutions that enhance the safety and performance of utility vehicles.

Collaborations

Shibata has collaborated with notable coworkers, including Hideyoshi Kosuge and Kazumasa Hisada. Their combined expertise has contributed to the advancement of utility vehicle technology.

Conclusion

Masayuki Shibata's contributions to utility vehicle design reflect his commitment to innovation and safety. His patents demonstrate a forward-thinking approach that addresses critical aspects of vehicle performance and user safety.

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