Title of article
Laser fluence, repetition rate and pulse duration effects on paint ablation
Author/Authors
Franc¸ois Brygo، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
8
From page
2131
To page
2138
Abstract
The efficiency (mm3/(J pulse)) of laser ablation of paint was investigated with nanosecond pulsed Nd:YAG lasers
(l = 532 nm) as a function of the following laser beam parameters: pulse repetition rate (1–10,000 Hz), laser fluence (0.1–
5 J/cm2) and pulse duration (5 ns and 100 ns). In our study, the best ablation efficiency (h ffi 0.3 mm3/J) was obtained with the
highest repetition rate (10 kHz) at the fluence F = 1.5 J/cm2. This ablation efficiency can be associated with heat accumulation at
high repetition rate, which leads to the ablation threshold decrease. Despite the low thermal diffusivity and the low optical
absorption of the paint (thermal confinement regime), the ablation threshold fluence was found to depend on the pulse duration.
At high laser fluence, the ablation efficiency was lower for 5 ns pulse duration than for the one of 100 ns. This difference in
efficiency is probably due to a high absorption of the laser beam by the ejected matter or the plasma at high laser intensity.
Accumulation of particles at high repetition rate laser ablation and surface shielding was studied by high speed imaging
Keywords
Repetition rate , Thermal confinement regime , Pulse Duration , Laser ablation , Paint stripping
Journal title
Applied Surface Science
Serial Year
2006
Journal title
Applied Surface Science
Record number
1001688
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