Hubei, China

Xinyuan Chen


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Innovations of Xinyuan Chen in Axial Piston Pump Technology

Introduction

Xinyuan Chen is a notable inventor based in Hubei, China. He has made significant contributions to the field of hydraulic dynamics, particularly in the analysis of axial piston pumps. His innovative approach has led to advancements in understanding the multi-field coupling characteristics of friction pairs in these systems.

Latest Patents

Xinyuan Chen holds a patent titled "Method for analyzing oil film multi-field coupling characteristics of series friction pairs of axial piston pump." This patent presents a method that utilizes an oil film independent analysis model to examine the macro structures, motion states, and service condition heterogeneities of the friction pairs. The method introduces surface microstructures and proposes a solid-liquid-thermal multi-field coupling analysis technique. Ultimately, it achieves a coupling solution for the oil film bearing characteristics of the multi-friction pairs through a multi-scale and multi-degree-of-freedom hydraulic-dynamic global coupling method. He has 1 patent to his name.

Career Highlights

Xinyuan Chen is affiliated with Wuhan University, where he continues to engage in research and development in hydraulic systems. His work has garnered attention for its practical applications in improving the efficiency and reliability of axial piston pumps.

Collaborations

Xinyuan Chen has collaborated with notable colleagues such as Yan Lu and Hao Zhang. Their combined expertise has contributed to the advancement of research in the field of hydraulic dynamics.

Conclusion

Xinyuan Chen's innovative methods in analyzing axial piston pumps demonstrate his commitment to advancing technology in hydraulic systems. His contributions are significant in enhancing the understanding of friction pair dynamics, which is crucial for the development of more efficient hydraulic machinery.

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