by Dmitriy Nikitin | Aug 8, 2016 | Applications
The part was laser marked with a 20 watt q-switched ytterbium fiber laser with a 160 mm focal length lens. This sample was annealed, or surface marked, to create bright contrast between the material and the mark. This process used the laser at a setting of 16 Watts,...
by Dmitriy Nikitin | Aug 8, 2016 | Applications
The parts were marked using a 20 watt q-switched ytterbium fiber laser with 160 mm focal length lens. The samples were etched to create brightly contrasting marks. Material: Anodized Aluminum Power: 10 watts Method used: Etching Frequency: 20kHz Depth: Surface...
by Dmitriy Nikitin | Aug 8, 2016 | Applications
The parts were marked using a 10 watt q-switched ytterbium fiber laser with 160 mm focal length lens. The parts were surface etched, to create contrasting marks. Various speeds and frequencies were used to create different sized marks of various depths.
by Dmitriy Nikitin | Aug 8, 2016 | Applications
This part was marked using a 20 watt q-switched ytterbium fiber laser with 160 mm focal length lens. The 160mm focal length lens has a working distance of 176mm from lens to part. The part was surface annealed to create sharply contrasting marks. 16 watts of power...
by Dmitriy Nikitin | Aug 8, 2016 | Applications
The scissor was marked using the 20-watt q-switched ytterbium fiber laser, along with a 160 mm focal length lens. The scissor was marked with an annealed surface mark. The cycle time for the mark was 7.65 seconds.
by Dmitriy Nikitin | Aug 8, 2016 | Applications
This aluminum tool was marked using a 20Watt Fiber Laser Marking System