Guangdong, China

Zhili Ren


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: **Zhili Ren: Innovator in Cementitious Material Assessment**

Introduction

Zhili Ren is a notable inventor based in Guangdong, China, recognized for his contributions to the field of material determination and analysis. With a focus on improving methods for assessing the drying depth of cementitious materials, his innovative approach aims to enhance accuracy in construction material evaluation.

Latest Patents

Zhili Ren holds a patent for a groundbreaking invention titled "Method of assessing drying depth of cementitious material." This invention presents a systematic approach that includes preparing a range of cementitious material specimens, drying them, and performing electrochemical impedance spectrum measurements on each. By developing a model for analyzing the drying depth, this method accounts for resistivity changes, thereby increasing precision while reducing labor, time, and costs associated with testing.

Career Highlights

Currently, Zhili Ren is affiliated with Shenzhen University, where he contributes to the advancement of research in materials engineering. His dedication to innovation is reflected in his impactful work, which not only simplifies testing procedures but also elevates the standard for material assessments in the construction industry.

Collaborations

Zhili Ren collaborates closely with esteemed colleagues such as Hongfang Sun and Feng Xing. Together, they foster a research environment that encourages the exploration of novel techniques and methodologies in material science, further enhancing their contributions to the field.

Conclusion

Zhili Ren's innovative spirit and dedication to advancing the assessment methods of cementitious materials illustrate the potential of scientific inquiry to transform industry practices. His patent stands as a testament to his commitment to precision and efficiency, paving the way for future advancements in material analysis.

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