Lecture image placeholder

Premium content

Access to this content requires a subscription. You must be a premium user to view this content.

Monthly subscription - $9.99Pay per view - $4.99Access through your institutionLogin with Underline account
Need help?
Contact us
Lecture placeholder background

poster

ICALEO 2023

October 16, 2023

Chicago, United States

Surface Morphology and Ablation Threshold of Titanium in Air and Water Irradiated by Nd:YAG Laser

keywords:

melting threshold

ablation threshold

surface morphology

nd:yag laser

titanium

Experiments were carried out to investigate the surface morphology and ablation threshold of titanium in air and in water irradiated with Nd:YAG laser. In the experiment, a Nd:YAG laser (wavelength of 532 nm, a pulse width of 10 ns, and a repetition rate of 10 Hz) was focused to a diameter of 33 μm (FWe-1M) by a convex lens with a focal length of 200 mm, and was irradiated to titanium surface at a incident angle of 0 degree in the atmosphere or water. Titanium surface was mechanically polished and to be obtain an optical grade.Laser energy was controlled by a polarizing prism and a half wave plate in the range of  1μJ to 40μJ (corresponding laser fluence of 0.11J/cm2 to 4.61J/cm2). The melting threshold was estimated from the crater diameter depended on laser fluence.The melting threshold was 0.30 J/cm2 in air. On the other hand, the melting threshold was 0.43J/cm2  in water. The higher melting threshold in water might be suggested due to the cooling effect of water. The cooling effect in water was also confirmed in the melting threshold calculation using the one-dimensional thermal diffusion model. In addition, as comparing the surface morphology of the crater produced by laser in air and in water, it was confirmed by observation with FE-SEM that the formed shapes were different.

Downloads

Paper

Next from ICALEO 2023

Antibacterial Effect of Periodic Structure Formed on SUS430 by Using Nanosecond Pulsed Laser
poster

Antibacterial Effect of Periodic Structure Formed on SUS430 by Using Nanosecond Pulsed Laser

ICALEO 2023

+2
Mikuru Okazaki and 4 other authors

16 October 2023