Xi'an, China

Zhongkai Zhang

USPTO Granted Patents = 3 



Average Co-Inventor Count = 7.1

ph-index = 1


Location History:

  • Shaanxi, CN (2021)
  • Xi'an, CN (2023)

Company Filing History:


Years Active: 2021-2025

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3 patents (USPTO):Explore Patents

Title: Innovations of Zhongkai Zhang

Introduction

Zhongkai Zhang is a prominent inventor based in Xi'an, China. He has made significant contributions to the field of sensor technology, particularly through his innovative patents. With a total of 3 patents, Zhang continues to push the boundaries of engineering and technology.

Latest Patents

One of his latest inventions is the "Alginate hydrogel-based thin-film heat flux sensor for billet crystallizer." This sensor features an alginate hydrogel substrate designed in a U-shaped planar structure, which includes a first side that is longer than the second side. The inner surface of the substrate is equipped with two film thermocouples that are crosslinked for enhanced functionality.

Another notable patent is the "Tungsten-rhenium composite thin film thermocouple based on surface micropillar array with gas holes." This invention involves a tungsten-rhenium thin film thermocouple arranged on a flat alumina ceramic substrate. The design incorporates a micropillar array filled with air to create gas holes, forming a three-layered laminated structure that improves thermal sensing capabilities.

Career Highlights

Zhongkai Zhang is affiliated with Xi'an Jiaotong University, where he engages in cutting-edge research and development. His work has garnered attention for its practical applications in various industries, particularly in materials science and engineering.

Collaborations

Zhang collaborates with esteemed colleagues such as Bian Tian and Libo Zhao, contributing to a dynamic research environment that fosters innovation and discovery.

Conclusion

Zhongkai Zhang's contributions to sensor technology exemplify the spirit of innovation. His patents reflect a commitment to advancing engineering solutions that address real-world challenges.

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