Use supports as heat paths
Keep overhangs near or above 45° where possible and provide accessible support zones beneath heavy sections.
SELECTIVE LASER MELTING
Build dense metal parts with complex internal channels, lightweight lattices and production-grade alloys. SLM suits functional prototypes and low-volume metal components that are difficult to machine.

DESIGN GUIDE
SLM parts are built under high thermal load. Orientation, support access and internal-channel geometry directly affect distortion, finish and post-machining.
Keep overhangs near or above 45° where possible and provide accessible support zones beneath heavy sections.
Use teardrop or diamond-shaped channels above 8 mm and provide clear powder-removal access at both ends.
Avoid abrupt thick-to-thin changes and sharp internal corners. Fillets reduce stress concentration and heat buildup.
All SLM projects are quoted with a production lead time starting from 3 days.
SLM MATERIALS

Lightweight housings, brackets and thermal parts

Corrosion-resistant and high-strength parts

High strength-to-weight and medical parts

HOW SLM WORKS
Properly processed alloys provide useful strength for functional and end-use components.
Conformal channels, lattices and integrated features can reduce assemblies and weight.
Engineering changes and low-volume builds can move forward without dies or molds.
Critical datums, threads and sealing faces can be machined after printing.
COMMON APPLICATIONS
Lightweight brackets, ducts and heat-management components.
Titanium implants, instruments and porous structures.
Mold inserts with internal channels that follow the cavity.
Compact manifolds, motorsport parts and functional metal prototypes.