Recklinghausen, Germany

Julia Kraemer Geb Rosenberg


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2022

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1 patent (USPTO):Explore Patents

Title: Julia Kraemer Geb Rosenberg: Innovator in Nickel-Based Alloys

Introduction

Julia Kraemer Geb Rosenberg is a notable inventor based in Recklinghausen, Germany. She has made significant contributions to the field of materials science, particularly in the development of nickel-based alloys. Her innovative methods have the potential to enhance the production of semi-finished products used in various industrial applications.

Latest Patents

Julia holds a patent for a method of producing semi-finished products from a nickel-based alloy. The alloy composition includes nickel (Ni) greater than 50-55%, chromium (Cr) greater than 17-21%, niobium (Nb) greater than 4.8-5.2%, molybdenum (Mo) greater than 2.8-3.3%, titanium (Ti) greater than 0.8-1.15%, aluminum (Al) greater than 0.4-0.6%, and other elements in specified maximum amounts. The method involves melting or remelting the alloy to create preliminary products, which then undergo a hot-forming process followed by a multi-stage annealing and aging treatment. This process includes a solution heat treatment at temperatures between 1000 and 1100°C for 1-3 hours, followed by cooling and a precipitation hardening process.

Career Highlights

Julia is currently employed at VDM Metals International GmbH, where she applies her expertise in materials science. Her work focuses on advancing the production techniques for high-performance alloys. With her innovative approach, she has contributed to the development of materials that meet the demanding requirements of various industries.

Collaborations

Julia collaborates with talented professionals in her field, including Jutta Kloewer and Ali Aghajani. These collaborations enhance her research and development efforts, leading to innovative solutions in alloy production.

Conclusion

Julia Kraemer Geb Rosenberg is a pioneering inventor whose work in nickel-based alloys is shaping the future of materials science. Her patented methods and collaborations with industry professionals highlight her commitment to innovation and excellence in her field.

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