INVESTIGATION OF LASER MARKING AND TEXTURING OF TITANIUM GR 2 WITH FIBER LASER

Jēkabs Lapa, I. Adijāns, E. Hristov Yankov, L. Lazov, Ritvars Rēvalds
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Abstract

Titanium Gr 2 is widely used in engineering and medicine due to its excellent mechanical and corrosion-resistant properties. Laser marking is a crucial process for many applications that require high-contrast, durable markings. In this study, we used a Rofin PowerLine F 20 Varia fiber laser to mark titanium Gr 2 with a 6x6 matrix of 5x5 mm squares. We varied the speed (100-1100 mm/s), power (8-18 W), and frequency (100 and 500 kHz) of the laser marking process to investigate their effects on the surface roughness and contrast of the markings. We analyzed the markings using a laser scanning microscope and Adobe Photoshop software. Our results show that the contrast and roughness of the markings were influenced by the frequency, scanning speed, and power. High marking speeds produced lighter markings, while low marking speeds produced darker markings. We also found that the surface roughness increased with higher frequency and powers. Our findings provide valuable insights into the optimal laser marking parameters for titanium Gr 2, which can enhance its performance and durability in various applications.
光纤激光打标和织构钛的研究
钛Gr 2因其优异的机械性能和耐腐蚀性能而广泛应用于工程和医药领域。对于许多需要高对比度、耐用标记的应用来说,激光打标是一个至关重要的过程。在本研究中,我们使用Rofin PowerLine F 20 Varia光纤激光器用5x5 mm正方形的6x6矩阵标记钛Gr 2。我们改变了激光打标过程的速度(100-1100 mm/s)、功率(8-18 W)和频率(100和500 kHz),以研究它们对标记表面粗糙度和对比度的影响。我们使用激光扫描显微镜和Adobe Photoshop软件分析标记。结果表明,扫描频率、扫描速度和功率对标记的对比度和粗糙度都有影响。高标记速度产生较浅的标记,而低标记速度产生较深的标记。我们还发现,表面粗糙度随频率和功率的增加而增加。我们的研究结果为钛Gr 2的最佳激光打标参数提供了有价值的见解,可以提高其在各种应用中的性能和耐用性。
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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