Robesonia, PA, United States of America

James D Kahl, Deceased


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 1998

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1 patent (USPTO):Explore Patents

Title: **The Innovative Legacy of James D. Kahl**

Introduction

James D. Kahl, a distinguished inventor from Robesonia, Pennsylvania, made a significant contribution to materials science with his patented method for producing vanadium-aluminum-ruthenium master alloys. His innovation focused on creating high-quality alloys that could enhance various industrial applications.

Latest Patents

James D. Kahl's sole patent involves a sophisticated method for producing vanadium-aluminum master alloys that minimize refractory inclusions. The process is conducted through an aluminothermic reduction reaction, utilizing vanadium oxides and excess aluminum. This results in a homogeneous microstructure essential for optimal functionality. The resulting vanadium-aluminum-ruthenium alloy typically contains 59 to 70% vanadium, 29 to 40% aluminum, and 1 to 10% ruthenium. This unique composition leads to the production of titanium base alloys of superior quality, particularly those containing 4% vanadium and 6% aluminum, along with minimal refractory metals.

Career Highlights

James D. Kahl was affiliated with Reading Alloys, Inc., where he applied his expertise in alloy production and innovation. His work contributed significantly to the advancements in titanium base alloys, which are essential for various high-performance applications.

Collaborations

Throughout his career, Kahl collaborated with various professionals, including Brian J. Higgins and his legal representative, James D. Kahl, Jr. These collaborations helped to navigate the complexities associated with patent applications and the legal intricacies involved in protecting innovative ideas.

Conclusion

James D. Kahl left an indelible mark on the field of materials engineering through his inventive approach to alloy production. His patented method continues to influence the development of high-quality titanium base alloys, ensuring that his legacy lives on in the advancements of modern materials science.

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