研究目的
Investigating the formation of ripples and conical microstructures on D16T (AA2024-T4) alloy under scanning with femtosecond laser pulses to understand the control and modification of surface properties.
研究成果
Femtosecond laser treatment of D16T alloy leads to the formation of LIPSS and conical microstructures, which significantly modify the surface properties. The study provides insights into the mechanisms of structure formation and the effects of laser parameters on surface modification.
研究不足
The study is limited to the specific conditions of femtosecond laser treatment on D16T alloy and may not be directly applicable to other materials or laser treatment conditions.
1:Experimental Design and Method Selection:
Laser treatment was performed using 250 fs pulses of a 1033 nm Yb:YAG laser with fluence varying from 5 to 33 J/cm
2:Scanning was repeated from 1 to 5 times for different areas of the sample. Sample Selection and Data Sources:
A mechanically polished cylinder of D16T alloy was used.
3:List of Experimental Equipment and Materials:
MLP1-2106 device, Yb:YAG laser, F-theta lens, SEM, AFM, confocal laser profilometer, FIB-SEM, EDX spectroscopy.
4:Experimental Procedures and Operational Workflow:
Laser treatment was performed with varying fluence and scan repetitions. Treated areas were evaluated using SEM, AFM, confocal laser profilometry, and FIB-SEM.
5:Data Analysis Methods:
The period of LIPSS and the average spacing of conical microstructures were deduced from SEM images by FFT.
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Yb:YAG laser
TETA-10
Avesta
Laser source for treatment
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FIB-SEM
Helios G4 PFIB-SEM UXe DualBeam
ThermoFischer
Ion milling and lamella preparation
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MLP1-2106
Lasers & Apparatus Ltd.
Laser treatment device
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F-theta lens
Focusing the laser beam
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SEM
Tescan VEGA 3 LMU
Tescan
Imaging treated areas
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AFM
SMENA
NT-MDT
Profilometry of treated areas
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Confocal laser profilometer
CCS Optima+
STIL SAS
Profilometry of treated areas
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EDX
Octave Elite Super
EDAX Inc.
Elemental analysis
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