Dortmund, Germany

Ralph-Ulrich Ballhorn


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 12(Granted Patents)


Company Filing History:


Years Active: 2001

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1 patent (USPTO):Explore Patents

Title: Ralph-Ulrich Ballhorn: Innovator in Microstructured Bodies

Introduction

Ralph-Ulrich Ballhorn is a notable inventor based in Dortmund, Germany. He has made significant contributions to the field of microstructured materials, particularly through his innovative patent. His work focuses on enhancing manufacturing processes that utilize advanced materials.

Latest Patents

One of Ralph-Ulrich Ballhorn's key patents is titled "Process for manufacturing microstructured bodies." This patent describes a method for creating microstructured bodies by irradiating a material with a pattern of X-rays. The process involves selectively dissolving irradiated or non-irradiated regions of the material, which consists of a light-hardening and/or UV-hardening epoxy coating. Notably, these epoxy coatings require shorter irradiation times compared to conventional plastics. The resulting microstructures exhibit high aspect ratios and can be produced with greater structural depths, free of defects and faults. The structural precision achieved is in the submicron range, showcasing the advanced capabilities of this manufacturing method.

Career Highlights

Ralph-Ulrich Ballhorn is associated with Microparts Gesellschaft, where he applies his expertise in microstructured materials. His innovative approach has positioned him as a key figure in the development of advanced manufacturing techniques.

Collaborations

Ralph-Ulrich Ballhorn has collaborated with notable colleagues, including Holger Reinecke and Norbert Kapitza. Their combined efforts contribute to the advancement of technology in the field of microstructured materials.

Conclusion

Ralph-Ulrich Ballhorn's contributions to the field of microstructured bodies through his innovative patent demonstrate his commitment to advancing manufacturing processes. His work continues to influence the development of high-precision materials in various applications.

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