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Removal mechanisms of micro-scale particles by surface wave in laser cleaning

机译:激光清洗中通过表面波去除微米级颗粒的机理

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This paper is to investigate the mechanisms of micro-scale particle removal by surface wave, which was induced by a short pulse laser in a cleaning process. The authors analyzed the adhesive forces of particles on substrate surface and the clearance force produced by surface wave in laser cleaning. The physical model of particle removal by laser-induced surface wave was established to predict the removal area and the processing conditions of laser cleaning. In this research, a KrF excimer laser was applied to irradiate 304 stainless steel specimen distributed with copper particles (< 45 mu m) to generate surface wave for copper particle removal. Considering that a time-varying and uniformly distributed heat source irradiates on material surface with thermao-elastic behavior, the displacement and acceleration of substrate induced by a pulsed laser were solved by an uncoupled thermal-mechanical analysis based on the finite element method. The processing parameters such as laser energy, laser spot size are discussed, respectively. A series of laser cleaning experiments were designed to compare with computation results. The results show that the removal area by surface wave beyond the laser spot increases with the laser energy and that, the surface acceleration decreases with the increase of the laser spot size. (c) 2005 Elsevier Ltd. All rights reserved.
机译:本文旨在研究由短波激光在清洁过程中引起的表面波去除微尺度颗粒的机理。作者分析了颗粒在基材表面的粘附力以及激光清洗中由表面波产生的清除力。建立了由激光诱导的表面波去除颗粒的物理模型,以预测去除面积和激光清洗的加工条件。在这项研究中,使用KrF准分子激光器照射分布有铜颗粒(<45μm)的304不锈钢试样,以产生去除铜颗粒的表面波。考虑到时变且均匀分布的热源以热弹性行为辐射到材料表面,通过基于有限元方法的热力学耦合分析,解决了脉冲激光诱导的基体位移和加速度问题。分别讨论了诸如激光能量,激光光斑尺寸等加工参数。设计了一系列激光清洁实验,以与计算结果进行比较。结果表明,随着激光能量的增加,表面波对激光点的去除面积随着激光能量的增加而增加,表面加速度随着激光点尺寸的增加而减小。 (c)2005 Elsevier Ltd.保留所有权利。

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