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Detachment of particles from surfaces by thermocapillary flows induced by a moving laser beam

机译:通过移动激光束引起的热量流动从表面脱离粒子

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The thermocapillary flows produced by heating with the moving laser beam in a thin liquid layer on a light-absorbing solid surface have recently been recognized to be effective for the removal of particulate impurities from the surface. We performed the comparative analysis of adhesion and thermocapillary removal forces acting on particles attached to the solid surface. A simplified hydrodynamic model was used to evaluate the velocity field of the thermocapillary flow in the liquid layer covering particles. Hydrodynamic forces such as the drag force, the lifting force induced by the shear flow far away from the receding contact line and the maximal lifting force caused by the transversal velocity in the layer near the receding contact line were identified as the cleaning forces, which are determined by the temperature gradient along the surface. It was found out that the lifting force is not enough to overcome the adhesion force and detach particles from the solid surface. The drag and the maximal lifting forces were shown to be responsible for removal of particles by using the proposed method. A reasonable qualitative agreement between experimental results and the quantitative force analysis was observed.
机译:通过在光吸收固体表面上的薄液体层中加热通过加热产生的热量流量,最近被认识到是从表面去除颗粒状杂质的有效性。我们对作用于固体表面附着的颗粒的粘附和热毛细血管去除力进行了对比分析。简化的流体动力学模型用于评估覆盖颗粒的液体层中热量小流量的速度场。诸如拖曳力的流体动力学力,由剪切流动诱导的剪切流量远离后退接触线和由后退接触线附近的层中的横向速度引起的最大提升力被鉴定为清洁力,即由沿表面的温度梯度确定。发现提升力不足以克服来自固体表面的粘附力和分离颗粒。显示拖动和最大提升力将通过使用所提出的方法负责去除颗粒。观察到实验结果与定量力分析之间的合理定性协议。

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