L'Hay les Roses, France

Claude Boyer


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 1996

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1 patent (USPTO):Explore Patents

Title: Claude Boyer: Innovator of Expansion Joint Technology

Introduction

Claude Boyer, an innovative inventor based in L'Hay les Roses, France, has made significant contributions to the field of pipe engineering. With one patent to his name, Boyer has developed a solution that addresses the challenges associated with conveying hot fluids through pipes.

Latest Patents

Boyer's notable patent is focused on an expansion joint for hot pipes. This invention provides a crucial connection between the ends of two pipes, specifically designed to transport hot fluid. The patent details an expansion joint that incorporates a sleeve fastened at its edges to a cold flange connected to a nesting device. A coupling arrangement connects the end flange of the pipe with the corresponding cold flange. The design includes at least two members: one being a corrugated sheet metal sleeve with undulations parallel to the longitudinal axis of the pipe, and the other being flexible and capable of deformation in the same direction.

Career Highlights

Claude Boyer is currently associated with Gec Alsthom Stein Industrie, where he contributes his expertise in mechanical engineering and innovation. Throughout his career, Boyer has focused on improving industrial processes and ensuring the efficacy and safety of conveying systems.

Collaborations

In his professional journey, Claude has worked closely with his coworker, Dominique Nolleau. Their collaboration highlights the importance of teamwork in the development and refinement of engineering projects.

Conclusion

Claude Boyer’s inventive work, particularly in the area of expansion joints for hot pipes, showcases the impact of innovation in industrial applications. His contributions to mechanical engineering demonstrate how targeted inventions can resolve specific challenges, ensuring safer and more efficient fluid transport systems.

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