Kapfenberg, Austria

Johann Fladischer


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 1990

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1 patent (USPTO):Explore Patents

Title: Innovations in Titanium Alloys: The Contributions of Johann Fladischer

Introduction

Johann Fladischer, an accomplished inventor based in Kapfenberg, Austria, has made significant strides in the field of materials science, particularly with a focus on titanium alloys. With one patent to his name, Fladischer's innovative methods have the potential to impact various industries that rely on the strength and versatility of titanium.

Latest Patents

Fladischer's sole patent, titled "Method of and a spray for manufacturing a titanium alloy," outlines a novel approach to producing titanium alloys. This method involves annealing a melted and possibly preformed part to establish a starting grain structure. A first grain structure transformation occurs through a cooling step, leading to high dislocation densities during a hot forming stage. The process concludes with a heat treatment that incorporates recrystallization, ultimately achieving a fine grain structure. Notably, the initial cooling step utilizes a spray of water or water-air mixtures, demonstrating an innovative application of spraying technology in material manufacturing.

Career Highlights

Fladischer is associated with Böhler Gesellschaft M.b.h., a prominent company in the metallurgy and materials engineering sector. His work here showcases his commitment to advancing titanium alloy production techniques, contributing significantly to the field through practical applications of his patented method. His experiences and contributions have solidified his place as an innovator of note within his industry.

Collaborations

Throughout his career, Johann Fladischer has had the opportunity to collaborate with esteemed colleagues, including Robert I. Jaffee and Herbert H. Puschnik. These collaborations highlight the importance of teamwork in driving innovation forward, as sharing expertise and knowledge can lead to breakthroughs in technology and materials development.

Conclusion

In conclusion, Johann Fladischer's innovative approach to titanium alloy manufacturing through his patented method represents a significant advancement in materials science. His work at Böhler Gesellschaft M.b.h. and collaborations with industry professionals emphasize the collaborative nature of innovation. Fladischer's contributions not only enhance the understanding of titanium alloys but also pave the way for future advancements in the field.

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