SLM, selective laser melting
Metal is fused layer by layer in a controlled atmosphere: solid-part density, with no casting and no roughing pass.
Compact, to start out in metal
A desktop machine with the circulation unit separate: 100 crowns or 7 frameworks in two and a half hours, in little more than a third of a square metre.
Materials: Cobalt-chrome, Ti6Al4V titanium, Pure titanium
Applications: crowns, bridges, metal frameworks, removable frameworks, implant bars
Metal is fused layer by layer in a controlled atmosphere: solid-part density, with no casting and no roughing pass.
A fibre source with galvanometer scanning at ≤ 11.200 mm/s.
Automatic job preparation and a parameter database by material.
A desktop format: it takes little more than a third of a square metre, with the circulation unit separate.
What the manufacturer's sheet declares, unembellished.
Ø 100 × 90 mm (con placa incluida)
20 – 60 µm
The MLAB ships with Riton 3D's preparation and control software: it lays out the parts and works out the paths automatically, with a database of validated parameters by material, and logs every print.
The materials the manufacturer declares for the MLAB.
From the single crown to the implant bar.
The printer is one part of the workflow. This is what goes with it in a lab that produces.
Makes the process gas on site, with no dependence on cylinders.
Collects the metal powder with the safety a reactive material demands.
Recovers unfused powder and returns it to the cycle, graded.
Relieves stress and gives the material its final properties.
Key technical data for the Riton 3D MLAB.
Data from the manufacturer's spec sheet. Subject to change without notice.
We will help you size the installation, the process gas and the ancillary equipment before you buy.