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LASER MARKING AND COLORATION OF TI-6AL-4V WITH ULTRA-SHORT PULSES: Paper # Micro 303

机译:带有超短脉冲的Ti-6Al-4V的激光标记和着色:纸#Micro 303

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摘要

A routine for color marking using oxide layers and laser induced periodic surface structures is presented. Titanium and alloys thereof are marked with pixelated graphics at high resolution and tempering colors. A computational approach for the laser path calculation enables a fast-forward marking of complex designs. A color map attained from laser parameter studies enables vivid coloration. The minimal color pixel size is given by the optical setup and laser wavelength at near infrared and green radiation utilized. A pixel size of 35μm and 20μm was used within this study and no cross talk and distinctness between adjacent colors observed. Additionally, ultra-short pulsed laser systems enable the generation of laser induced periodic surface structures. These are dependent on the polarization direction and diffraction gratings with rotated spatial periodicity are generated. This allows forgery-proof marking strategies and both mechanism can be superimposed.
机译:呈现了使用氧化物层和激光诱导的周期性表面结构的颜色标记的例程。钛和合金以高分辨率和回火颜色标记为像素化图形。激光路径计算的计算方法能够快速标记复杂的设计。来自激光参数研究所获得的彩色地图使得鲜艳着色。最小的颜色像素尺寸由近红外和绿色辐射的光学设置和激光波长给出。在该研究中使用了35μm和20μm的像素尺寸,并且观察到相邻颜色之间没有交叉谈话和明显。另外,超短脉冲激光系统能够产生激光诱导的周期性表面结构。这些依赖于偏振方向,产生具有旋转空间周期性的衍射光栅。这允许伪造的标记策略,并且两个机制都可以叠加。

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