Essen, Germany

Thomas Hueber


 

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: Innovation in Friction Linings: The Contributions of Thomas Hueber

Introduction: Thomas Hueber, an inventive mind based in Essen, Germany, has made a significant mark in the field of thermal treatment for friction linings. With a patent to his name, Hueber has demonstrated his commitment to innovation and the advancement of technology in his industry.

Latest Patents: Hueber's notable patent, titled "Method and device for the thermal treatment of friction linings," focuses on utilizing infrared (IR) radiation for the thermal treatment process. The invention highlights the use of IR radiators or heating fields as the source of infrared radiation, specifically generating IR radiation within the wavelength range of 2260 nm to 3000 nm. This innovative approach is designed to improve the efficiency and effectiveness of treating friction linings.

Career Highlights: Currently working with TMD Friction Services GmbH, Thomas Hueber has become an essential contributor to the company's technological advancements. His expertise and inventive spirit have led to the development of more effective methods in friction material treatment, ensuring higher performance and reliability in automotive applications.

Collaborations: Throughout his career, Hueber has collaborated with notable colleagues including Kai Goldbach and Richard Lewis. Their joint efforts in research and development have fostered an environment of creativity, leading to groundbreaking innovations in the field of friction linings.

Conclusion: Thomas Hueber exemplifies the drive for innovation within the realm of thermal treatment of friction linings. With his patent and collaborative efforts, he continues to influence advancements in this essential aspect of automotive technology. As the industry evolves, Hueber's contributions will undoubtedly play a crucial role in shaping the future of friction material performance.

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