Research Progress in Laser Surface Strengthening and Micro-Nano Manufacturing Technology

Although the development of laser surface strengthening and surface micro-nano structure manufacturing technologies in China began relatively late, it has progressed rapidly in recent years.Significant advancements have been made in areas such as the fundamental theories of laser-material transient...

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Bibliographic Details
Main Author: ZHU Lihua, YU Wenhui, QI Dongfeng, WANG Zhiwen, WANG Zongshen, YANG Bing, LIU Mingming, ZHU Jian, WU Yongling, ZHENG Hongyu
Format: Article
Language:zho
Published: Editorial Department of Materials Protection 2024-08-01
Series:Cailiao Baohu
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Online Access:http://www.mat-pro.com/fileup/1001-1560/PDF/20240816.pdf
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Summary:Although the development of laser surface strengthening and surface micro-nano structure manufacturing technologies in China began relatively late, it has progressed rapidly in recent years.Significant advancements have been made in areas such as the fundamental theories of laser-material transient interactions, laser shock peening , laser surface melting, laser surface cladding, laser direct writing and laser-induced surface microstructures.However, compared to countries with earlier research in laser technology, China still faces challenges such as a lack of pioneering process technologies and weak fundamental research in laser-material transient interactions.Additionally,there are gaps in industrial technology applications and equipment development.In this paper, the research progress in laser surface strengthening and micro-nano manufacturing technology was reviewed.With the continuous advancement of micro-nano structure manufacturing industry, the increasing application demand for new alloys and new materials,and heightened environmental requirements,laser surface strengthening and laser surface micro-nano structure manufacturing technologies are expected to continue progressing towards higher efficiency,precision and performance,with further developments in practical applications.
ISSN:1001-1560