Aachen, Germany

Markus Daamen


 

Average Co-Inventor Count = 4.4

ph-index = 1


Company Filing History:


Years Active: 2019-2020

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2 patents (USPTO):Explore Patents

Title: Innovations in Steel Production: The Patented Works of Markus Daamen

Introduction: Markus Daamen, an inventive mind located in Aachen, Germany, has made significant contributions to the field of metallurgy. With two patents to his name, Daamen focuses on advancing the methodologies related to steel production, enhancing the properties of flat steel products through innovative techniques.

Latest Patents: Among his most notable patents, Daamen has developed a method for producing a flat steel product characterized by an amorphous, partially amorphous, or fine-crystalline microstructure. This patent emphasizes the creation of a steel strip ranging from 0.8 to 4.5 mm thick, possessing grain sizes between 10 to 10,000 nanometers. Furthermore, the molten steel is cast into a strip and cooled at an accelerated rate, incorporating specific elemental compositions including Silicon (Si), Boron (B), Carbon (C), and Phosphorus (P) to achieve hardness levels between 760 to 900 HV0.5. Additionally, he holds a patent for producing a cast strip of molten metal, wherein the strip's thickness varies along its length, contributing to unique mechanical properties.

Career Highlights: Daamen has gathered invaluable experience working with renowned companies such as Thyssenkrupp Steel Europe AG and Outokumpu Nirosta GmbH. His work in these industry-leading firms has equipped him with the expertise necessary to innovate and refine processes in steel manufacturing.

Collaborations: Throughout his career, Markus has collaborated with talented professionals, including Dorothée Dorner and Christian Höckling. These partnerships have furthered the development of his patented technologies and contributed to the collective knowledge in the field of steel production.

Conclusion: Markus Daamen stands as a prominent figure in the realm of steel innovation. His patented methods not only push the boundaries of traditional steel production but also pave the way for future advancements in material science. Through his work, Daamen exemplifies the essential link between invention and industrial application, highlighting the importance of innovation in modern metallurgy.

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