Huntsville, AL, United States of America

Alexander Smirnov


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: **Innovator Spotlight: Alexander Smirnov and His Breakthrough in Zirconium Coating**

Introduction

Alexander Smirnov, an accomplished inventor based in Huntsville, Alabama, has made significant contributions to the field of materials science through his innovative work on zirconium coatings. With a focus on improving electrodeposition processes, his inventions hold the potential to advance various industrial applications.

Latest Patents

Alexander Smirnov holds a notable patent related to the **Zirconium coating of a substrate**. This invention addresses the challenges posed by traditional electrochemical processes, which often hinder the formation of dense, uniform zirconium coatings. By utilizing an electrolyte salt comprised of lithium fluoride and other selected salts, Smirnov's process allows for a highly pure zirconium coating that achieves a density of at least 98%.

Career Highlights

Throughout his career, Alexander has demonstrated expertise in electrodeposition techniques and materials engineering. His role at Plasma Processes, LLC, showcases his commitment to advancing technological innovations in substrate coatings. His work not only contributes to improved manufacturing processes but also enhances material performance in various applications.

Collaborations

In his endeavors, Alexander has collaborated with esteemed colleagues, including Scott O'Dell and Anatoliy Shchetkovskiy. Their combined efforts within Plasma Processes, LLC highlight the importance of teamwork in achieving significant advancements in materials science and engineering.

Conclusion

Alexander Smirnov's contributions to the development of zirconium coatings exemplify the impact of innovative thinking in the field of materials science. With his patents and collaborative efforts, he continues to push the boundaries of what is possible, paving the way for advancements that could lead to more efficient and durable substrate applications in various industries.

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