Anhui, China

Xiongyi Huang


Average Co-Inventor Count = 5.8

ph-index = 1


Company Filing History:


Years Active: 2020-2021

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2 patents (USPTO):Explore Patents

Title: Xiongyi Huang: Innovator in Superconducting Technology

Introduction

Xiongyi Huang is a prominent inventor based in Anhui, China. He has made significant contributions to the field of superconducting technology, holding a total of 2 patents. His work focuses on improving the efficiency and performance of superconducting systems.

Latest Patents

One of his latest patents is titled "Cylindrical joint for connecting sub-cables of superconducting busbar." This invention features a cylindrical joint that includes a stainless steel shell, stainless steel pressure plates, first and second sub-cables, copper saddles, a stainless steel support, indium coatings, and stainless steel tapers. The design ensures that the first and second sub-cables are supported effectively, resulting in low resistance, reduced AC loss, and enhanced cooling performance.

Another notable patent is the "Connector assembly of two low temperature superconducting cable terminals and manufacturing method thereof." This connector assembly comprises a copper layer that connects two low temperature superconducting cables, along with welding material layers and a clip mechanism. The compact structure of this assembly allows for efficient welding with the superconducting terminals.

Career Highlights

Xiongyi Huang has worked with esteemed institutions such as the Chinese Academy of Sciences and the Hefei Institutes of Physical Science. His experience in these organizations has contributed to his expertise in superconducting technologies.

Collaborations

He has collaborated with notable coworkers, including Yuntao Song and Kun Lu, further enhancing his research and development efforts in the field.

Conclusion

Xiongyi Huang's innovative work in superconducting technology has led to significant advancements in the field. His patents reflect a commitment to improving the efficiency and performance of superconducting systems.

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