Moscow, Russia

Alexey Vladimirovich Glebov




Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2015-2025

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5 patents (USPTO):Explore Patents

Title: Innovations of Alexey Vladimirovich Glebov: Pioneering Advances in Silicon Carbide Technologies

Introduction

Alexey Vladimirovich Glebov, an accomplished inventor based in Moscow, Russia, has made significant contributions to the field of materials science, notably in the development of advanced silicon carbide technologies. He holds a total of four patents that reflect his commitment to innovation and excellence in his field.

Latest Patents

Glebov's recent work includes two notable patents that highlight his expertise and ingenuity.

1. **Method for producing a ceramic multilayered tube used as cladding for fuel elements in nuclear power plants**: This innovative method involves several stages, beginning with the formation of an inner monolithic layer from beta phase stoichiometric silicon carbide crystals on a carbon substrate. By utilizing chemical methylsilane vapor deposition in a sealed tubular hot-wall CVD reactor, Glebov establishes a robust structural foundation. He then creates a central composite layer using beta phase stoichiometric silicon carbide fibers and a braiding technique, followed by the deposition of pyrocarbon and protective outer layers, culminating in the removal of the carbon substrate from the semi-finished product.

2. **Method for producing non-core beta silicon carbide fibers**: This patent outlines a four-step process for creating non-core beta silicon carbide fibers, enhancing their mechanical properties and thermal resistance. The procedure starts with the spinning of multifilament polymeric fibers, followed by thermooxidative cross-linking, carbonization, and finishing. The resulting fibers demonstrate improved strength and stability, with no foreign impurities.

Career Highlights

Throughout his career, Glebov has collaborated with prominent organizations such as Giamag Technologies AS and Bochvar High-tech Research Institute for Inorganic Materials. His work in these institutions has facilitated the advancement of innovative materials and technologies tailored for industrial applications.

Collaborations

Alexey Glebov has worked alongside notable colleagues, including Leonid Aleksandrovich Karpyuk and Vladislav Konstantinovich Orlov. Their collaboration exemplifies the synergy between experienced professionals, driving forward the boundaries of research and development in their field.

Conclusion

Alexey Vladimirovich Glebov stands out as a leading inventor whose patents contribute significantly to the technology landscape, particularly in the realm of silicon carbide materials. His innovative approaches not only enhance material performance but also pave the way for future advancements in nuclear energy applications.

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