Formation and effect of rough surface in pulsed laser removal of thick paint layer on 2024 aluminum

Ming Zhu, Hao Zhang, Kun Shi, Xiaofei Hou, Yu Shi, Ding Fan, Wenzhu Zhang
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Abstract

When using pulsed laser to remove a thick paint layer from a 2024 aluminum alloy substrate, the paint layer should be removed layer by layer, and the substrate should remain intact after the paint layer is completely removed. In this process, the formation of a rough surface on the paint increases laser absorption, changing the removal mechanism, which becomes an unstable factor for nondestructive paint removal. This study investigated the laser paint removal mechanism of fluorocarbon paint and found that when the laser fluence was 0.91 J/cm2, the main removal mechanisms were thermal stress and combustion-decomposition removal, while at 94.36 J/cm2, the main mechanism was sputtering removal. The study also investigated the relationship between surface roughness and the number of laser scans, which showed a positive linear correlation. Additionally, an equivalent model of a rough surface was established to analyze the changes in absorption, though this model has yet to be verified and further research and validation is required to confirm our findings.
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脉冲激光去除 2024 铝材上厚漆层时粗糙表面的形成和影响
在使用脉冲激光去除 2024 铝合金基材上的厚漆层时,应逐层去除漆层,并在漆层完全去除后保持基材完好无损。在此过程中,油漆表面形成的粗糙面会增加激光吸收,改变去除机理,成为无损去除油漆的不稳定因素。本研究对氟碳漆的激光除漆机理进行了研究,发现当激光通量为 0.91 J/cm2 时,主要的除漆机理是热应力除漆和燃烧分解除漆,而当激光通量为 94.36 J/cm2 时,主要的除漆机理是溅射除漆。研究还调查了表面粗糙度与激光扫描次数之间的关系,结果显示两者呈正线性关系。此外,还建立了粗糙表面的等效模型来分析吸收的变化,不过该模型还有待验证,需要进一步的研究和验证来证实我们的发现。
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