Niederzier, Germany

Detlev Stöver

USPTO Granted Patents = 10 

 

Average Co-Inventor Count = 4.1

ph-index = 5

Forward Citations = 115(Granted Patents)


Location History:

  • Nierderzier, DE (2009)
  • Niederzier, DE (1991 - 2015)

Company Filing History:


Years Active: 1991-2015

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10 patents (USPTO):Explore Patents

Detlev Stöver: Innovator in Thermal Barrier Coating and Gas Separation Systems

Introduction:

Detlev Stöver is a highly accomplished innovator based in Niederzier, Germany. With an impressive track record of 8 patents, his work primarily focuses on advancements in thermal barrier coating and gas separation systems. Stöver's contributions in these areas have significantly impacted various industries by improving performance, efficiency, and durability of critical components. In this article, we will delve into his latest patents, career highlights, collaborations, and the impact of his innovations.

Latest Patents:

One of Detlev Stöver's recent patents is the method of applying a thermal barrier coating using plasma spray physical vapor deposition (PS-PVD) technology. This method involves generating a plasma jet using a plasma torch, directing it onto a substrate surface, and injecting ceramic coating material as a powder into the plasma jet. By controlling the feed rate of the powder, Stöver's innovation enables the formation of an anisotropic microstructure of elongate columns perpendicular to the substrate. This unique microstructure enhances the thermal barrier coating's performance and durability.

Another notable patent by Stöver is the device for gas separation and the corresponding production method. This system utilizes a mechanically stable metallic substrate layer with open pores, along with functional layers composed of TiO2 or ZrO2 laminated on each face. With an average pore diameter of less than 1 nm, these functional layers effectively separate gases based on their molecular sizes, facilitating various industrial applications.

Career Highlights:

Detlev Stöver's career has been marked by his association with renowned organizations at the forefront of innovation. He has made significant contributions during his tenure at Forschungszentrum Jülich GmbH, where he developed groundbreaking technologies in the field of thermal barrier coatings. Stöver's research and inventions have greatly advanced the understanding and application of these coatings in high-temperature environments, such as gas turbines and aerospace components.

Stöver also played a pivotal role in driving innovation at Oerlikon Metco AG. His expertise and ingenuity contributed to the development of cutting-edge gas separation systems, revolutionizing industries that heavily rely on efficient gas purification processes. His work has opened new possibilities for applications in fields including energy production, chemical manufacturing, and environmental protection.

Collaborations:

Throughout his career, Detlev Stöver has collaborated with esteemed professionals in the field. Notably, he has worked closely with Hans Peter Buchkremer, a renowned scientist and expert in energy materials. Their combined efforts have resulted in several pioneering initiatives, furthering the advancement of thermal barrier coating technologies and their diverse applications.

Stöver has also collaborated with Robert Vassen, an industry expert specializing in material science and plasma technologies. Together, they have pushed the boundaries of gas separation systems, introducing novel concepts and optimizing the efficiency and selectivity of these systems.

Conclusion:

Detlev Stöver's contributions to the fields of thermal barrier coatings and gas separation systems have undeniably shaped industries worldwide. Through his innovative patents and collaborative efforts, Stöver has transformed the landscape of high-temperature coatings and gas separation technologies. His inventions have paved the way for enhanced performance, reliability, and sustainability in various industrial sectors. Detlev Stöver's relentless pursuit of innovation continues to inspire and drive advancements in these domains.

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