3D Printed part in HP MJF

MultiJet Fusion   
(MJF)

High-resolution industrial grade parts with excellent durability and performance

A high-tech manufacturing setup showcasing Direct Energy Deposition (DED) technology, where a laser precisely melts and deposits metal powder to create complex parts

V-Fuse

(DED)

Near-net-shape metal parts with exceptional strength and functionality

A 3D printer in action, using Fused Deposition Modelling (FDM) technology to build up a detailed plastic part layer by layer

Smart One

 (FFF)

User-friendly and affordable option for quick prototyping and design iteration

MJF 3D Printing Materials

MaterialTensile StrengthElongation at BreakHeat Deflection Temperature
PA 12 (Nylon PA 12)48 MPa9-17 %95°C-175°C 
PA 12 White49 MPa15-20 %95°C-175°C
PA 11 (Nylon PA 11)52 MPa35-50 %54°C-185°C
BASF ULTRASINT TPU 
9 MPa120-220 %50°C-65°C

Material Support

Ni Based Alloys, Fe Based Alloys, Ti Based Alloys, Cu Based Alloys, Ni Based Alloys, Colmonoy, Graphite

Materials
  • STD Polymers
  • ENGG Polymers
  • Support Polymers
  • Ceramic
  • Metal
PLA, ABS, PETG, WoodFill, TPU, TPE, PC, Nylon
ASA, Carbon Fibre Infused, Glass Fibre Infused,
HIPS, PVA, Aquateck PVA, Thermax HTS High Temp
White Zirconia, Black Zirconia, Alumina
SS-17-4, SS-316-L, Copper, Bronze, Inconel 718, H13
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