Numerical and experimental analysis for morphology evolution of 6061 aluminum alloy during nanosecond pulsed laser cleaning

Author(s):  
Lingyu Guo ◽  
Yuqiang Li ◽  
Shaoning Geng ◽  
Chunming Wang ◽  
Ping Jiang
2020 ◽  
Vol 59 (23) ◽  
pp. 7053
Author(s):  
H. C. Zhao ◽  
Y. L. Qiao ◽  
Q. Zhang ◽  
X. Du ◽  
Y. Zang ◽  
...  

2019 ◽  
Vol 6 (4) ◽  
pp. 046526
Author(s):  
Liang Guo ◽  
Peng Cai ◽  
Hao Wang ◽  
Yao Chen ◽  
Qingmao Zhang ◽  
...  

2021 ◽  
Vol 291 ◽  
pp. 129549
Author(s):  
Pengyu Wei ◽  
Zihang Chen ◽  
Dan Wang ◽  
Ruonan Zhang ◽  
Xinyan Li ◽  
...  

2021 ◽  
Vol 91 (8) ◽  
pp. 1293
Author(s):  
А.Г. Домантовский ◽  
А.М. Емельяненко ◽  
К.А. Емельяненко ◽  
Л.Б. Бойнович

It is shown that the use of nanosecond pulsed laser processing of an aluminum alloy makes it possible to obtain a coating with a multimodal roughness. The coating consists mainly of micro- and nanoparticles of aluminum oxide. Subsequent vapor deposition of the hydrophobic agent provides a coating with superhydrophobic properties. Infrared (IR) reflectance spectroscopy has been used to study the effect of ozone on the properties of a superhydrophobic coating fabricated on the surface of an aluminum alloy. At times of exposure to ozone (with a concentration of 50 mg/m3) not exceeding 250 min, the effect of degradation of the coating was practically indetectable, which is associated with self-recovery of the coating performance during the ozonation process. At longer times, exposure to ozone leads to irreversible degradation of the superhydrophobic coating, which is mainly due to the desorption of the hydrophobic part of the fluorooxysilane molecule upon rupture of bonds of the Si-C type, as well as the adsorption of ozone on the textured surface.


2008 ◽  
Author(s):  
Takeji Arai ◽  
Noritaka Asano ◽  
Akihiko Minami ◽  
Hideaki Kusano

2021 ◽  
Vol 139 ◽  
pp. 106998
Author(s):  
Zhichao Li ◽  
Donghe Zhang ◽  
Xuan Su ◽  
Shirui Yang ◽  
Jie Xu ◽  
...  

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