Sichuan, China

Fei Li


Average Co-Inventor Count = 6.1

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 2019

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3 patents (USPTO):Explore Patents

Title: Fei Li - Innovator in Seismic Mitigation Technologies

Introduction

Fei Li is a prominent inventor based in Sichuan, China. He has made significant contributions to the field of seismic mitigation technologies, holding a total of 3 patents. His innovative designs focus on enhancing the safety and stability of structures during seismic events.

Latest Patents

Fei Li's latest patents include a "Damping Bearing in Convertible Antiseismic Mode" and a "Damping Bridge Apparatus." The damping bearing features a bearing body that consists of a first, second, and third bearing. It incorporates a damping component with an arc damping member positioned between the first and second bearings. This design allows for relative sliding after the connecting piece is cut off. The hydraulic component connects to both the arc damping member and the second bearing. The sliding groove type friction pendulum high-pier bridge seismic mitigation and isolation bearing includes an upper and lower connecting steel plate, with a frictional sliding component clamped in between. This innovative design utilizes a hyperbolic spheroid and various damping components to enhance its effectiveness.

Career Highlights

Fei Li is affiliated with Sichuan University, where he continues to advance his research and development in seismic technologies. His work has garnered attention for its practical applications in engineering and construction.

Collaborations

Fei Li collaborates with notable colleagues, including Wenqiang Li and Huaibang Han. Their combined expertise contributes to the innovative projects undertaken at Sichuan University.

Conclusion

Fei Li's contributions to seismic mitigation technologies demonstrate his commitment to enhancing structural safety. His innovative patents reflect a deep understanding of engineering principles and a dedication to improving public safety during seismic events.

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