This inventor holds 2 USPTO granted patents. Top assignee: Lanzhou University. Active years: 2013-2023.
Company Filing History:
Years Active: 2013-2023
Title: Innovations of Youhe Zhou in Superconducting Technology
Introduction
Youhe Zhou is a prominent inventor based in Lanzhou, China, known for his significant contributions to the field of superconducting technology. With a total of two patents to his name, Zhou has made strides in enhancing the efficiency and effectiveness of high-temperature superconducting materials.
Latest Patents
Zhou's latest patents include a preparation method for 3D printing-based YBCO superconducting twisted wire. This innovative method involves four key steps: preparing a nano-level superconducting powder precursor, creating a printing paste with suitable viscosity, utilizing CAD 3D modeling for design, and implementing a one-step preparation of strands with low AC loss. This approach simplifies the production of high-temperature superconducting wires, improves their current-carrying capacity, and reduces production costs.
Another notable patent is the magnetic suspension supporter for a direct tension test apparatus. This device features an upper and lower end cap for fixing samples, connected by chains and joints, with a unique magnetic structure that prevents sudden breaking during peak stress. This innovation ensures the accuracy of test data by stabilizing the sample during testing.
Career Highlights
Youhe Zhou is affiliated with Lanzhou University, where he continues to advance research in superconducting materials. His work has garnered attention for its practical applications and contributions to the field.
Collaborations
Zhou collaborates with notable colleagues, including Zhonghu Zhao and Xiaojing Zheng, who contribute to his research endeavors and innovations.
Conclusion
Youhe Zhou's work in superconducting technology exemplifies the potential of innovative methods to enhance material efficiency and production processes. His patents reflect a commitment to advancing technology in meaningful ways.
