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Femtosecond Laser-Induced Periodic Surface Structures on Different Tilted Metal Surfaces

机译:Femtosecond激光诱导的不同倾斜金属表面上的周期性表面结构

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摘要

Laser-induced periodic surface structures (LIPSS) are used for the precision surface treatment of 3D components. However, with LIPSS, the non-normal incident angle between the irradiated laser beam and the specimen surface occurs. This study investigated LIPSS on four different metals (SUS 304, Ti, Al, and Cu), processed on a tilted surface by an s-polarized femtosecond fiber laser. A rotated low spatial frequency LIPSS (LSFL) was obtained on SUS 304 and Ti materials by the line scanning process. However, LSFL on Cu and Al materials was still perpendicular to the laser polarization. The reason for the rotated and un-rotated LSFL on tilted metal surfaces was presented. The electron-phonon coupling factor and thermal conductivity properties might induce rotational LSFL on tilted SUS 304 and Ti surfaces. When fabricating LSFL on an inclined plane, a calibration model between the LSFL orientation and inclined plane angle must be established. Hence, the laser polarization direction must be controlled to obtain suitable LSFL characteristics on a 3D surface.
机译:激光诱导的周期性表面结构(嘴唇)用于3D部件的精密表面处理。然而,用唇缘,发生辐照激光束和样品表面之间的非正常入射角。该研究通过S偏振的飞秒光纤激光器在倾斜表面上处理了四种不同的金属(SUS 304,Ti,Al和Cu)上的唇缘。通过线扫描过程在SUS 304和Ti材料上获得旋转的低空间频率嘴唇(LSFL)。然而,在Cu和Al材料上的LSFL仍然垂直于激光偏振。提出了旋转和未旋转的LSFL上的原因倾斜金属表面。电子 - 声子耦合因子和导热性能可能导致旋转LSFL倾斜的SUS 304和Ti表面。在在倾斜平面上制造LSFL时,必须建立LSFL取向和倾斜平面角之间的校准模型。因此,必须控制激光偏振方向以在3D表面上获得合适的LSFL特性。

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