Nanjing, China

Laishui Zhou


Average Co-Inventor Count = 8.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):

Title: Laishui Zhou: Innovator in Micro-Nano Surface Treatment Methods

Introduction

Laishui Zhou is a prominent inventor based in Nanjing, China. He has made significant contributions to the field of mechanical surface treatment, particularly through his innovative patent. His work focuses on enhancing the performance and quality of surface materials, which is crucial in various engineering applications.

Latest Patents

Laishui Zhou holds a patent for a micro-nano incremental mechanical surface treatment method. This method involves several steps, including using a modification tool with a designable end to contact the surface of a substrate material. The tool is rotated in a local region while compressing the material surface. Processing parameters are preset using 3D modeling software. After processing the entire surface, the tool moves downwards to the previously indented surface. This process continues until the surface material reaches a predefined thickness, achieving grain refinement and improved surface performance. The method is particularly advantageous for workpieces with complex shapes, offering high bonding strength, low pollution, and cost-effectiveness.

Career Highlights

Laishui Zhou is affiliated with Nanjing University of Aeronautics and Astronautics, where he contributes to research and development in mechanical engineering. His innovative approach to surface treatment has garnered attention in academic and industrial circles.

Collaborations

Laishui Zhou has collaborated with notable colleagues, including Hongyu Wei and Huiliang Zhang. Their combined expertise enhances the research and development efforts in their field.

Conclusion

Laishui Zhou's contributions to micro-nano surface treatment methods exemplify the importance of innovation in engineering. His patent reflects a significant advancement in the field, showcasing his dedication to improving material performance.

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