Hechingen, Germany

Joachim Lutterbeck


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 24(Granted Patents)


Company Filing History:


Years Active: 1991

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1 patent (USPTO):Explore Patents

Title: **Joachim Lutterbeck: Pioneering Resilient Sealing Technology**

Introduction

Joachim Lutterbeck is an innovative inventor based in Hechingen, Germany. He is known for his significant contribution to sealing technology, particularly through his patent for a resilient sealing ring. This invention has improved the functionality and efficiency of devices that require firm sealing.

Latest Patents

Lutterbeck holds a patent for a resilient sealing ring, which uniquely features an annular design made of resilient materials. The sealing ring's cross-sectional configuration allows it to maintain an extended range of deformation, providing a better compression force between parallel sealing surfaces compared to conventional O-rings. This innovation is particularly beneficial in filtration and diffusion devices, which utilize bundles of hollow fibers within a housing, ensuring effective fluid flow.

Career Highlights

Joachim Lutterbeck is employed by Gambro Dialystoren GmbH & Co. KG, a company that focuses on advanced medical technologies and products. His work has contributed to the ongoing improvements in medical device functionality, particularly in the area of enhancing patient care through better sealing solutions.

Collaborations

Throughout his career, Lutterbeck has collaborated with notable colleagues such as Kurt Spranger and Roland Antoni. These professional relationships have fostered a productive environment for innovation and the advancement of sealing technologies in practical applications.

Conclusion

Joachim Lutterbeck's inventive work on resilient sealing rings showcases his ability to enhance existing technologies, providing significant advantages in medical and technological applications. His contributions not only advance the field of sealing technology but also improve overall product efficiency in critical devices.

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