Reutte, Austria

Johann Kanz


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 1995

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1 patent (USPTO):Explore Patents

Title: Inventor Johann Kanz: A Pioneer in Diamond Coating Technology

Introduction: Johann Kanz, an innovative inventor based in Reutte, Austria, has made significant contributions to the field of materials science. His sole patent focuses on enhancing the adhesion between cemented carbide substrates and diamond layers, a crucial advancement for various industrial applications.

Latest Patents: Johann Kanz holds a patent for a "Cemented carbide substrate having a diamond layer of high adhesive." This invention introduces an improved process to strengthen the bond between the cemented carbide substrate and diamond coating. The novel process involves removing the binder phase from the substrate's surface before applying the diamond layer. By manipulating conventional Chemical Vapor Deposition (CVD) methods, Kanz's approach employs reaction heat from hydrogen gas recombination at the substrate surface, thereby effectively evaporating the binder metal from a precise boundary zone.

Career Highlights: Throughout his career, Johann has demonstrated a commitment to advancing coating technologies. His innovative solutions have not only improved the performance of cutting tools and wear-resistant components but have also paved the way for the application of diamond coatings in diverse industrial sectors.

Collaborations: Kanz's work at Schwartzkopf Technologies Corporation involves collaboration with esteemed colleagues, including Stefan Feistritzer and Wilfried Schintlmeister. Together, they strive to push the boundaries of technology and innovation in the application of diamond coatings.

Conclusion: Johann Kanz's contributions to diamond coating technology reflect his innovative spirit and dedication to improving industrial processes. His patent stands as a testament to the importance of research and development in enhancing material performance, ultimately benefiting numerous industries worldwide.

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