Guangdong, China

Xiaoxu Huang

USPTO Granted Patents = 5 

Average Co-Inventor Count = 5.9

ph-index = 1


Company Filing History:


Years Active: 2024-2025

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5 patents (USPTO):Explore Patents

Title: Inventor Xiaoxu Huang: Innovating Structural Engineering in Guangdong

Introduction

Xiaoxu Huang is a notable inventor based in Guangdong, China, recognized for his contributions to structural engineering. With a focus on enhancing the performance of construction materials, Huang has developed innovative methodologies that bridge the gap between traditional and advanced materials in construction practices.

Latest Patents

Huang holds a patent for an "Optimization method and system for hybrid FRP and steel bars." This groundbreaking invention pertains to an optimization approach designed to enhance the performance of structures utilizing a combination of fiber-reinforced polymers (FRP) and steel. His method includes several steps: determining bending bearing capacities, checking compliance with preset conditions, and optimizing steel bar and FRP bar areas. This innovation aims to improve the efficiency and reliability of structural designs in various applications.

Career Highlights

Xiaoxu Huang is affiliated with Shenzhen University, where he is involved in research and development within the field of civil engineering. His academic background and ongoing commitment to innovation position him as a key figure in advancing engineering practices. His patent reflects his dedication to improving durability and safety in construction.

Collaborations

Throughout his career, Huang has collaborated with fellow researchers and institutions, fostering a shared goal of advancing materials science. His work elucidates the benefits of combining traditional steel with modern materials like FRP, paving the way for future innovations in construction and architectural design.

Conclusion

Xiaoxu Huang exemplifies the spirit of innovation within the engineering field. His patent for optimizing hybrid FRP and steel bars showcases the potential of integrating new materials to enhance structural integrity and performance. As he continues to work at Shenzhen University, Huang's contributions will likely inspire further advancements in the industry.

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