by Dmitriy Nikitin | Aug 8, 2016 | Applications
This titanium sample was marked using laser abblation with 16 watts of power resulting in very high quality dark marks at 5.98 (larger logo) and 4.21 (smaller logo) cycle times. Technology: Q-switched Fiber Laser, Wattage: 20 Watt Focal Length Lens: 160mm....
by Dmitriy Nikitin | Aug 8, 2016 | Applications
These ceramic medical parts were laser marked using a 20 Watt Fiber Laser Marking System.
by Dmitriy Nikitin | Aug 8, 2016 | Applications
The aluminum was marked with a 20-watt q-switched ytterbium fiber laser with a 160 mm focal length lens. The part was surface etched, to create a highly contrasting mark. The part was marked at 35 inches per second using approximately 16 watts with a frequency of 35...
by Dmitriy Nikitin | Aug 8, 2016 | Applications
Company: CAT The samples marked extremely well with the 20-watt Fiber Laser Marking System. Dark marks were placed on the steel tappets. The steel tappets had a cycle time of 7.73 seconds. A high frequency was used to get dark marks on steel.
by Dmitriy Nikitin | Aug 8, 2016 | Applications
Glass marking was done with a Synrad 48-2 25 watt CW CO2 laser with a FLA125 focal length lens. The glass was marked using a power of 25 watts at a speed of 25” per second, resulting in a cycle time of 0.52 seconds. The font was a simple stroke. The material provided...
by Dmitriy Nikitin | Aug 8, 2016 | Applications
The parts were marked with a 10-watt q-switched ytterbium fiber laser and a 160 mm focal length lens. The 160mm focal length lens has a working distance of 176mm from lens to part. The parts were surface marked to created contrast on the samples. The titanium piece...