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Alumamark laser settings.
Alumamark is a specialised aluminium designed to be laser marked using lower power settings it is ideal for the production of plaques awards signs and nameplates.
Use these settings as your starting point then adjust one variable at a time until you achieve the result you desire.
Alumamark is specialized aluminum that may be imaged or marked using a co 2 laser.
Durablack is resistant to sunlight uv radiation abrasion high temperatures and chemical exposure.
In side by side tests durablack outperforms black anodized aluminum and laser markable acrylic tape in select applications.
Unique among laserable substrates alumamark allows one to create black positive marks on silver gold bronze brass or colored backgrounds.
Alumamark is real aluminium which can be imaged or marked using a co2 laser.
Alas there is one product alumamark that has overcome these challenges and has made marking aluminium possible using a co 2 laser.
How to determine alumamark settings alumamark does take some to hone in on the ideal settings for a laser.
It is designed so that it may be marked by using low power settings on co2 lasers.
Unlike other laser markable products alumamark is not etched or engraved but is actually imaged by the heat of the co2 laser.
Marking through thermal reaction enables half tone impressions it is therefore highly.
Durablack is co2 laser markable aluminum for durable on demand marking for harsh operating environments.
Material settings fusion series suggested material settings co2 these are only suggestions.
Introduction even though alumamark comes in 12 di erent nishes the settings used can be divided into two distinct groups.
Alumamark is specialized aluminum that can be marked with any co2 laser.
Unique among laserable substrates alumamark allows one to create black positive marks on silver gold bronze brass or coloured backgrounds.
Laser processing tips for alumamark anyone who has tried to mark aluminium with a co 2 laser then you have most likely experienced the reflectivity challenge of the co 2 laser beam and metals.
Every type of material will react differently with the laser even from one plastic to the next.
No two lasers are the same so some experimentation is required to determine the ideal settings.
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