Shenzhen, China

Yu Weng


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: Yu Weng: Innovating Fiber-Reinforced Concrete Techniques

Introduction

Yu Weng is an accomplished inventor based in Shenzhen, China, known for his significant contributions to the field of construction materials. With a focus on optimizing fiber-reinforced concrete applications, his work has the potential to advance the engineering industry by improving the mechanical properties of construction materials.

Latest Patents

Yu Weng holds one patent titled "Method for determining optimal content and slenderness ratio of fiber in compression cast fiber-reinforced concrete." This innovative method outlines a systematic approach for determining the ideal fiber content and slenderness ratio in compression-cast fiber-reinforced concrete (CCFRC). The steps include: first, establishing an optimal pressure range for CCFRC; second, applying the ideal compressive stress during testing; third, modifying the fiber content to assess mechanical properties; and finally, adjusting the fiber slenderness ratio to explore its impact on performance.

Career Highlights

Currently, Yu Weng is affiliated with Shenzhen University, where he applies his expertise in material science and engineering. His research focuses on enhancing the durability and strength of construction materials, making significant strides in the way fiber-reinforced concrete is utilized in various structural applications.

Collaborations

Yu Weng has collaborated with notable colleagues, including Biao Hu and Feiyang Yi, at Shenzhen University. Together, they contribute to innovative research that seeks to deepen the understanding of material properties and their practical applications in construction.

Conclusion

Yu Weng's pioneering work on fiber-reinforced concrete exemplifies the critical role inventors play in advancing material science. His patented method stands as a testament to innovation in construction technologies, which aims to achieve greater efficiency and performance in engineering solutions. As collaboration continues among researchers and industry professionals, the potential for further advancements in this field remains promising.

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