Ultrasint® PA6 LM
Special PA6 Powder for High Processability on any PBF Equipment
Ultrasint® PA6 LM is a special powder material designed to maximize production accessibility to any Powder Bed Fusion user.

Material Details
Description
Thanks to its lower melting temperature, compared to the other members of the Ultrasint® PA6 family, it allows printing on any PBF equipment due to lower processing temperatures. Its balanced property profile combines superior mechanical performance with outstanding thermal resistance. This advanced material can replace injection moulded PA6 parts without compromise. Ultrasint® PA6 LM enables real-world injection moulding PA6 performance and is easily processable on any Powder Bed Fusion equipment. The high versatility of Ultrasint® PA6 LM enables a wide range of applications from prototyping to industrial serial production parts.
Benefits at a Glance
- Easy processing on standard PBF equipment
- Processing temperature ~180 °C
- Exceptionally high impact strength
- In-particle filler technology
- Color: Black
Example Applications
- Functional prototypes for different industries, i.e. automotive
- High performance spare parts
- Multi-purpose industrial goods
- Durable and rigid jigs and fixtures
Material Properties
- Tensile strength: 44 MPa
- Young’s modulus: 1500 MPa
- Elongation at break: 17 %
- Charpy impact unnotched: 52 kJ/m²
- HDT B (0.45 MPa, dry): 183 °C
Next Steps
Reference Links and Documents
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More Ultrasint® PA6 Product Range materials
Ultrasint® PA6 FR
Halogen-Free Flame-Retardant PA6 Powder for Advanced Applications
Material Properties
- Free of halogens
- Passes UL94 V-2 and FST tests
Ultrasint® PA6 MF
Mineral Reinforced PA6 for Exceptionally Strong Parts with In-Particle Reinforcement Technology
Material Properties
- Superior strength and stiffness
- Properties similar to those of injection molding materials
Ultrasint® PA6
The Best Material Solution for Durable Parts with Outstanding High Temperature Performance
Material Properties
- High heat-aging resistance
- As-printed gas tightness