Zhenjiang, China

Yishu Cao


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):

**Title: Innovator Yishu Cao and His Contribution to Friction and Wear Testing**

Introduction

Yishu Cao is a prominent inventor based in Zhenjiang, China, known for his innovative contributions to the field of materials testing. With one patent to his name, he has made significant strides in enhancing friction and wear testing methodologies, particularly for high-strength steel plates and hot-stamping dies.

Latest Patents

Yishu Cao’s most notable patent is the "Friction and wear test device with pin-on-plate differential temperature distribution and self-adaptive adjustment." This device features a high temperature heating chamber and a cooling pin, allowing for precise experimentation under varying temperature conditions. It includes an electric resistance heating plate situated beneath the friction sample plate, which effectively heats the samples to the desired test temperature. Additionally, the innovative design incorporates a cooling channel within the pin that maintains optimal temperature levels during testing, ensuring accurate data collection through strategically placed thermocouples for real-time temperature measurements.

Career Highlights

Yishu Cao is affiliated with Jiangsu University, where he has established himself as a key figure in research and development, focusing on friction and wear properties of materials. His work, particularly in simulating differential temperature environments, exemplifies his commitment to advancing understanding in this critical area of engineering.

Collaborations

Throughout his career, Yishu has collaborated with fellow researchers Wei Chen and Peng Cao. Their teamwork has fostered an environment of innovation and knowledge sharing, enabling significant advancements in their respective areas of study and contributing to the broader field of material science.

Conclusion

Yishu Cao is a noteworthy inventor whose dedication to developing advanced testing devices is shaping the future of material properties analysis. His patented technology not only showcases his inventive prowess but also provides valuable tools for researchers and industries relying on the performance of high-strength materials in challenging conditions. As a member of the academic community, his contributions continue to inspire future innovations in the field.

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