Beijing, China

Xianbin Wang


Average Co-Inventor Count = 17.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):

Title: The Innovative Contributions of Xianbin Wang

Introduction

Xianbin Wang is a notable inventor based in Beijing, China. He has made significant contributions to the field of materials science, particularly in the development of low-background cement. His innovative approach addresses the need for materials with reduced radioactivity, which is crucial for various construction applications.

Latest Patents

Xianbin Wang holds a patent for a method of preparing low-background cement. This method involves uniformly mixing a seed crystal of cement, CAF whiskers, and high-magnesium raw material to create a first mixture. The first mixture is then calcined at temperatures between 1400-1500° C. to yield a low-background clinker. The specific composition includes 1.0-5.0 wt. % of the seed crystal of cement, 1.0-5.0 wt. % of the CAF whiskers, and the remainder being high-magnesium raw material. The resulting low-background cement is ground from a second mixture of the low-background clinker and gypsum. This innovative cement has a specific activity of Ra-226 radioactive nuclides within 50 Bq/kg, making it suitable for sensitive applications.

Career Highlights

Xianbin Wang is associated with the China Building Materials Academy Co., Ltd., where he continues to advance research in construction materials. His work has been instrumental in developing safer and more efficient building materials that meet modern standards.

Collaborations

Xianbin Wang collaborates with esteemed colleagues such as Wen Ji Huang and Yang Yu. Their combined expertise enhances the research and development efforts at their institution.

Conclusion

Xianbin Wang's contributions to the field of materials science, particularly through his patent for low-background cement, demonstrate his commitment to innovation and safety in construction. His work is paving the way for advancements in building materials that prioritize both performance and environmental considerations.

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