Frankfurt-am-Main, Germany

Thomas Schmidt-Hansberg


Average Co-Inventor Count = 5.0

ph-index = 2

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 1985-1986

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3 patents (USPTO):Explore Patents

Title: Innovations of Thomas Schmidt-Hansberg

Introduction

Thomas Schmidt-Hansberg is a notable inventor based in Frankfurt-am-Main, Germany. He has made significant contributions to the field of high-temperature resistant materials, holding a total of three patents. His work focuses on processes that enhance the durability and safety of ceramic molded articles.

Latest Patents

One of his latest patents is a process for the production of high-temperature resistant, high-density ceramic molded articles. This innovative process operates at temperatures above 1300°C and utilizes high pressure in a mold. The method involves heating the blank outside the mold and transferring it quickly into the cold mold, where it is compressed and ejected. The residence time in the mold is crucial, as it must be less than 3 milliseconds to ensure that the temperature drop between the nucleus and the surface of the blank does not exceed 150°C. Another significant patent involves molded bodies designed for embedding radioactive waste. These molded bodies feature a matrix of graphite and an inorganic binding agent, such as nickel sulfide, which enhances their resistance to leaching.

Career Highlights

Thomas Schmidt-Hansberg is currently employed at Nukem Limited, where he continues to develop innovative solutions for material science. His expertise in high-temperature processes has positioned him as a key figure in the industry.

Collaborations

He has collaborated with notable colleagues, including Milan F Hrovat and Hans Huschka, contributing to various projects that advance the field of material engineering.

Conclusion

Thomas Schmidt-Hansberg's work exemplifies the intersection of innovation and practical application in material science. His patents reflect a commitment to enhancing safety and performance in high-temperature applications.

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