Harbin, China

Tianyi Li

USPTO Granted Patents = 1 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Innovations of Tianyi Li in Vibrational Excitation Platforms.

Introduction

Tianyi Li is a notable inventor based in Harbin, China. He has made significant contributions to the field of engineering, particularly in the design of support structures for large-scale vibrational excitation platforms. His innovative approach combines structural integrity with practical assembly methods.

Latest Patents

Tianyi Li holds a patent for a "Method for support structure of large-scale vibrational excitation platform." This invention provides a comprehensive design method that ensures the support structure matches the dimensions of the vibrational excitation platform. The design process includes selecting appropriate materials to guarantee structural stiffness, performing finite element simulations to verify natural frequency and stress deformation, and optimizing structural parameters to enhance stability and stiffness. The resulting support structure is characterized by strong stability, a simple design, high natural frequency, and ease of assembly. It is constructed using welding and threaded connections, reinforced with plates at critical points to ensure strength and stiffness.

Career Highlights

Tianyi Li is affiliated with the Harbin Institute of Technology, where he has been involved in various research projects. His work focuses on advancing engineering solutions that address complex challenges in vibrational systems. His innovative designs have garnered attention in academic and industrial circles.

Collaborations

Tianyi Li has collaborated with notable colleagues, including Chenglong Yu and Bin Li. Their combined expertise has contributed to the development of advanced engineering solutions in their field.

Conclusion

Tianyi Li's contributions to the design of support structures for vibrational excitation platforms exemplify the intersection of innovation and practical engineering. His work not only enhances structural performance but also simplifies assembly processes, making significant strides in the field.

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