This inventor holds 2 USPTO granted patents and 1 EPO patent. Top assignee: Other. Active years: 2004-2013.
Location History:
- 52068 Aachen, DE (2004)
- Aachen, DE (2013)
Company Filing History:
Years Active: 2004-2013
Title: Rainer Telle: Innovator in Ceramic Technology
Introduction
Rainer Telle is a notable inventor based in Aachen, Germany. He has made significant contributions to the field of ceramic technology, holding 2 patents that showcase his innovative approaches to producing advanced materials.
Latest Patents
One of Rainer Telle's latest patents is titled "Process and apparatus for producing three-dimensional shaped ceramic bodies." This invention describes a method for creating three-dimensional ceramic shapes through layerwise printing using an inkjet printer. The process involves a suspension containing 50 to 80% by weight of ceramic particles, which is printed onto a support material, followed by drying and hardening. The invention also includes an apparatus designed to facilitate this process.
Another significant patent is for "Bioactive implants and method for the production thereof." This invention focuses on implants intended for human or animal bodies, which are partially made from ceramic, glass, or glass-ceramic materials. The implants feature hydroxide compounds on their surfaces, formed from the oxide compounds of the materials used. The production of these implants can be achieved through a lye treatment, enhancing their bioactivity.
Career Highlights
Throughout his career, Rainer Telle has worked with various companies, contributing his expertise in ceramic technology. Notably, he has collaborated with Horst Fischer, furthering advancements in the field.
Collaborations
Rainer Telle's collaboration with Horst Fischer has been instrumental in his career, allowing for the exchange of ideas and innovations in ceramic technology.
Conclusion
Rainer Telle is a distinguished inventor whose work in ceramic technology has led to valuable patents and advancements in the field. His innovative processes and materials continue to influence the development of bioactive implants and three-dimensional ceramic structures.