Norfolk, United Kingdom

Mark Bailey



Average Co-Inventor Count = 2.7

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2018

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2 patents (USPTO):Explore Patents

Title: Innovations in Energy Storage by Mark Bailey

Introduction

Mark Bailey is a notable inventor based in Norfolk, GB, recognized for his contributions to energy storage technology. With a total of two patents to his name, Bailey has made significant strides in the field of kinetic energy storage through innovative flywheel designs.

Latest Patents

Bailey's latest patents focus on flywheels for energy storage and methods of manufacture thereof. One of his inventions provides a flywheel assembly that includes an annular rotor and a rotor support, which couples the rotor to an axial shaft. The rotor is constructed using composite materials, featuring fibers embedded in a matrix material. An intermediate ring made of composite material enhances the assembly's durability and facilitates its fabrication. Another patent details a rotor support that couples an annular flywheel rotor to a shaft for rotation. This support comprises a body with a longitudinal axis, constructed from a stack of composite material sheets, including unidirectional sheets with fibers oriented at different angles. This configuration results in a stiff construction, improving the overall performance of the flywheel.

Career Highlights

Mark Bailey is currently employed at GKN Hybrid Power Limited, where he continues to develop innovative solutions in energy storage. His work has positioned him as a key player in advancing technologies that harness kinetic energy effectively.

Collaborations

Bailey has collaborated with notable colleagues, including Colin David Tarrant and Colin Leslie Martin, contributing to the development of cutting-edge technologies in his field.

Conclusion

Mark Bailey's innovative work in flywheel technology exemplifies the potential of composite materials in energy storage solutions. His patents reflect a commitment to enhancing the efficiency and durability of kinetic energy systems.

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