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【先进制造前沿讲座第10期】【bat365在线平台官方博导论坛】Hongtao Ding:Laser-Based High-Throughput Surface Nanostructuring for Functional Surface Patterning on Metal Alloys

发布时间:2023-06-24

时间:2023062616:00  

地点:工程训练中心303(待定)

讲座主题Laser-Based High-Throughput Surface Nanostructuring for Functional Surface Patterning on Metal Alloys

讲座内容:

Prof. Hongtao Ding will present their latest research on a fast and efficient method for creating functional surface patterns on metal alloys using nanosecond laser-based high-throughput surface nanostructuring (nHSN). their nHSN method employs nanosecond laser pulses to treat large surface areas in just a few seconds, significantly reducing processing time from hundreds of minutes per square inch. In contrast to conventional understanding of surface silanization, they have discovered that the nHSN chemical treatment step induces not only silanization effects but also, more prominently, chemical etching of metal surfaces. By engineering random nanoscale structures on these surfaces, their method creates superhydrophobic surfaces with water repellent, anti-icing, self-cleaning, antiviral, and light-absorbing characteristics. Through careful selection of silane reagents and laser operation parameters, they have developed a powerful engineering method to tune surface wettability between superhydrophilicity and superhydrophobicity. their findings could lead to new and exciting opportunities for various surface engineering applications.

主讲人简介

Hongtao Ding is an associate professor of mechanical engineering at the University of Iowa, where he heads the Laser Materials Processing Laboratory and serves as the director of the Advanced Manufacturing & Materials Division at the Iowa Technology Institute. His research interests include high-throughput nanostructuring for superhydrophobic or superwicking surfaces, tunable THz metamaterials, metal additive manufacturing, joining, and machining via lasers, ultrasonics & friction stir processes, and data-driven modeling and simulations of materials processing & microstructures. With over 60 published technical articles in leading archival journals and four pending US patents, Dr. Ding is highly regarded for his expertise in advanced manufacturing & materials. His research has been supported by the National Science Foundation, the Department of Defense, the Department of Energy, and industry sponsors. Dr. Ding earned his bachelors degree from Shanghai Jiao Tong University, China, a masters degree from the University of Michigan, and a doctorate from Purdue University, all in mechanical engineering. In recognition of his work, Dr. Ding received the SME Outstanding Young Manufacturing Engineer Award. He also serves as an associate editor of the Journal of Manufacturing Processes and Manufacturing Letters. 
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