Location History:
- Burghausen, DE (2013 - 2015)
- Altötting, DE (2022)
Company Filing History:
Years Active: 2013-2022
Title: Michael Tobias Zarka: Innovator in Polymer Technology
Introduction
Michael Tobias Zarka is a notable inventor based in Burghausen, Germany. He has made significant contributions to the field of polymer technology, particularly in the development of innovative additives for composite materials. With a total of five patents to his name, Zarka's work is characterized by a focus on sustainability and efficiency in material production.
Latest Patents
Zarka's latest patents include the use of vinyl acetate-copolymers as a shrinkage-reducing additive in cold-curing systems. This invention relates to the application of vinyl acetate-copolymers, which consist of 40 to 95 wt % vinyl acetate and 5 to 60 wt % of co-monomers. These co-monomers are selected from a group that includes vinyl esters of carboxylic acids and methacrylic acid esters. Another significant patent involves low-profile additives based on renewable resources. This invention focuses on polymers derived from renewable resources, which can be obtained through the radically initiated polymerization of ethylenically unsaturated monomers in the presence of carbohydrates and natural rubbers.
Career Highlights
Michael Tobias Zarka is currently employed at Wacker Chemie AG, a leading company in the chemical industry. His work at Wacker Chemie AG has allowed him to explore innovative solutions in polymer applications, contributing to advancements in composite materials.
Collaborations
Zarka has collaborated with notable colleagues, including Florian Bauers and Claudius Schwarzwaelder. These collaborations have fostered a creative environment that encourages the development of cutting-edge technologies in the field of polymer science.
Conclusion
Michael Tobias Zarka is a prominent figure in the realm of polymer technology, with a strong focus on sustainable innovations. His contributions through patents and collaborations highlight his commitment to advancing the field and improving material performance.