Material removal in laser chemical processing with modulated laser power

Yasmine Bouraoui, L. Rathmann, Claudia Niehaves, M. Mikulewitsch, A. Fischer, T. Radel
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Abstract

Laser chemical machining (LCM) is a method of laser processing based on gentle material removal by means of thermal induced chemical dissolution. Since LCM depends predominantly on the surface temperature of the workpiece, the process window is restricted by the appearance of gas bubbles at higher laser powers and their associated shielding effect. In order to extend the process understanding, the influence of the laser power modulation on the removal behavior is investigated in the present work. The experiments were conducted on titanium grade 1 and with phosphoric acid. Based on the response time in experiments with a single step function of the laser power, a spatial frequency threshold was determined above which a constant removal depth could be expected. Afterward, the laser power was modulated rectangularly in time, resulting in combination with the process velocity in different spatial modulation frequencies varying from 1 to 20 mm−1. The investigations showed that the removal cavity exhibited sinusoidal oscillation in depth along the machining direction with a spatial frequency corresponding to the spatial frequency of the laser power. When the spatial frequency exceeds the determined threshold frequency, the cavity depth is constant. This established the basis for generating complex removal profiles by varying the power in the range below the threshold frequency.
利用调制激光功率在激光化学加工中去除材料
激光化学加工(LCM)是一种通过热诱导化学溶解作用温和去除材料的激光加工方法。由于 LCM 主要取决于工件的表面温度,因此加工窗口受到较高激光功率下气泡的出现及其相关屏蔽效应的限制。为了扩展对工艺的理解,本研究调查了激光功率调制对去除行为的影响。实验在 1 级钛和磷酸上进行。根据激光功率单步函数实验中的响应时间,确定了一个空间频率阈值,在该阈值之上,可以预期会有一个恒定的去除深度。随后,对激光功率进行矩形时间调制,结果与加工速度相结合,产生了 1 至 20 mm-1 的不同空间调制频率。研究表明,去除腔沿加工方向的深度呈现正弦波振荡,其空间频率与激光功率的空间频率相对应。当空间频率超过确定的阈值频率时,空腔深度保持不变。这为在阈值频率以下的范围内改变功率生成复杂的去除曲线奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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