Shenzhen, China

Feiyang Yi


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: **Feiyang Yi: Innovator in Compression Cast Fiber-Reinforced Concrete**

Introduction

Feiyang Yi is a notable inventor based in Shenzhen, China, recognized for his contributions to the field of construction materials. With a focused expertise in composite materials, Yi has developed patentable technology that enhances the performance and application of fiber-reinforced concrete.

Latest Patents

Feiyang Yi holds a patent titled "Method for determining optimal content and slenderness ratio of fiber in compression cast fiber-reinforced concrete." This innovative method provides a systematic approach for determining the optimal fiber content and slenderness ratio necessary for maximizing the mechanical properties of compression-cast fiber-reinforced concrete (CCFRC). The patent outlines four critical steps: identifying an optimal pressure range for CCFRC, applying compressive stress, adjusting fiber content, and modifying the slenderness ratio to evaluate mechanical properties.

Career Highlights

Feiyang Yi is affiliated with Shenzhen University, where he has contributed to advancing research in civil engineering and construction materials. His work emphasizes the practical applications of innovative materials in building sustainable and durable structures.

Collaborations

In his professional journey, Feiyang Yi collaborates closely with notable colleagues including Biao Hu and Yu Weng. Together, they contribute to research that addresses industry challenges and promotes the use of advanced composite materials in construction.

Conclusion

Feiyang Yi stands out as an influential inventor whose work is paving the way for advancements in concrete technology. His method for optimizing fiber content in concrete not only showcases his innovative spirit but also has the potential to significantly impact the construction industry, thereby improving the performance and longevity of building materials.

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