Company Filing History:
Years Active: 2019
Title: The Innovative Journey of Inventor Andy Rohe
Introduction
Andy Rohe, an accomplished inventor based in Dinslaken, Germany, has made significant contributions to the field of metal processing. With a focus on continuous casting methods, her innovations have led to advancements that enhance efficiency and productivity in the industry.
Latest Patents
One of her notable patents is a "Method and Device for Thin-Slab Strand Casting." This invention describes a continuous casting process for thin slabs, which involves several key steps. Firstly, molten metal is introduced into a mold where it begins to solidify into a thin-slab strand. An innovative aspect of her method includes the use of an electromagnetic brake to control the flow rate of the molten metal in the strand. Additionally, the design incorporates an electromagnetic stirrer positioned beneath the mold to stir unsolidified parts of the strand, thereby improving overall quality. The electromagnetic stirrer generates a traveling electromagnetic field at various distances from the mold, optimizing the casting process.
Career Highlights
Throughout her career, Andy has worked with prominent companies, including Thyssenkrupp Steel Europe and Thyssen Krupp AG. These experiences have not only enriched her understanding of the metal industry but have also facilitated her groundbreaking innovations.
Collaborations
Andy has collaborated with esteemed colleagues such as Eberhard Sowka and Frank Spelleken. Their combined expertise has contributed to the successful development and implementation of her inventions, furthering advancements in metal casting technologies.
Conclusion
Andy Rohe stands out as a significant inventor in the realm of continuous casting. Her patent for the method and device for thin-slab strand casting highlights her innovative approach and dedication to improving industrial processes. As advancements in technology continue to shape the future, inventors like Andy Rohe play a crucial role in driving progress.