Qingdao, China

Xiaoyang Zhou

USPTO Granted Patents = 1 

Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Innovations by Xiaoyang Zhou in Sensor Technology

Introduction

Xiaoyang Zhou is a notable inventor based in Qingdao, China. He has made significant contributions to the field of sensor technology, particularly through his innovative methods for developing advanced sensors. His work focuses on enhancing the capabilities of microcrack propagation sensors, which are essential in various applications.

Latest Patents

Xiaoyang Zhou holds a patent for a "Method for preparing static/dynamic 3D microcrack propagation sensor, sensor and equipment." This invention involves a comprehensive method for creating a three-dimensional (3D) microcrack propagation sensor. The process includes preparing a piezoresistive/piezoelectric sensing functional component, coating it onto a fiber cloth substrate, and performing several treatments to achieve a functional sensor. This innovative approach enhances the sensitivity and applicability of sensors in detecting microcracks.

Career Highlights

Xiaoyang Zhou is affiliated with Qingdao University of Technology, where he contributes to research and development in sensor technology. His work has garnered attention for its practical applications and potential to advance the field. With a focus on piezoresistive and piezoelectric materials, Zhou's inventions are paving the way for more efficient and effective sensing solutions.

Collaborations

Xiaoyang Zhou collaborates with esteemed colleagues such as Jianlin Luo and Huarong Nie. Their combined expertise fosters an environment of innovation and research excellence, further enhancing the impact of their work in sensor technology.

Conclusion

Xiaoyang Zhou's contributions to sensor technology exemplify the importance of innovation in developing advanced sensing solutions. His patented methods and collaborative efforts are set to influence the future of sensor applications significantly.

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