Serifontaine, France

Fleur Chaignon-lesetre

USPTO Granted Patents = 3 

 

Average Co-Inventor Count = 4.3

ph-index = 1


Company Filing History:


Years Active: 2025

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3 patents (USPTO):Explore Patents

Title: Innovator Profile: Fleur Chaignon-Lesetre and Her Breakthrough in 3D Printing

Introduction: Fleur Chaignon-Lesetre, an inventive mind hailing from Serifontaine, France, has made significant contributions to the field of 3D printing with her innovative methods for applying two-component polyurethane compositions. With one patent to her name, she represents the fusion of creativity and technology in the modern manufacturing landscape.

Latest Patents: Fleur's patent, titled "Method for the 3D printing of two-component polyurethane compositions," describes a novel technique involving the application of a two-component polyurethane composition via 3D printing. This method includes multiple steps that utilize a pumpable first component A containing polyols and diols, and a second component B that consists of polyisocyanates. The unique aspect of her patent also involves a metal catalyst that facilitates the reaction between hydroxyl groups and isocyanate groups, creating thio complexes. This method has broadened the potential applications for 3D printing in various industries.

Career Highlights: Fleur works at Sika Technology AG, a company renowned for its advanced materials and innovative solutions. Her role at Sika emphasizes her dedication to enhancing 3D printing technologies, particularly through the development of novel polyurethane applications.

Collaborations: Throughout her career, Fleur has had the opportunity to collaborate with skilled individuals like Didier Lootens and Maxime Liard. These collaborations have not only enriched her research but have also advanced the collective knowledge within their team.

Conclusion: Fleur Chaignon-Lesetre stands at the forefront of innovation in 3D printing, demonstrating how inventive spirit and technological advancement can combine to revolutionize manufacturing processes. Her patent offers a glimpse into the future of material science, illustrating her as a significant contributor to the field.

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