Beijing, China

Yaru Liang

This inventor holds 1 USPTO granted patent. Top assignee: Beijing University of Technology. Active years: 2018.


% Patents Active = 100.0

Average Co-Inventor Count = 12.0

ph-index = 1


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: **Innovative Contributions of Yaru Liang in Composite Substrate Technology**

Introduction

Yaru Liang is a notable inventor based in Beijing, China, recognized for his significant contribution to the field of high-temperature coated superconductor substrate preparation. His innovative approach has led to advancements in the method for preparing element diffusion-type composite substrates, showcasing his expertise and dedication to the field of materials engineering.

Latest Patents

Yaru Liang holds a patent for a "Method for preparing element diffusion-type composite substrate." This inventive method involves the preparation of a rolled composite nickel-tungsten alloy substrate, which is treated through a combination of heat application and electric pulse technology. The patent emphasizes achieving high performance in the composite substrate while maintaining its structural integrity and reducing energy consumption during the manufacturing process.

Career Highlights

Yaru Liang is affiliated with Beijing University of Technology, where he has engaged in extensive research and development within the materials engineering department. His pioneering work in composite substrate preparation has been critical in advancing the capabilities of high-temperature superconductors, positioning his research as a valuable asset in the industry.

Collaborations

Throughout his career, Yaru Liang has collaborated with esteemed colleagues, including Hongli Suo and Yichen Meng. These collaborations have fostered a productive research environment, allowing for the exploration of innovative ideas and techniques within the realm of composite materials.

Conclusion

Yaru Liang's innovative methods in the preparation of element diffusion-type composite substrates not only contribute to the advancement of high-temperature superconductor technologies but also demonstrate the importance of collaboration and continuous research in achieving breakthroughs in material science. His work is a testament to the potential of innovative thinking to drive progress and efficiency in industrial applications.

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