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Elmet Technologies

EOS Titanium Ti64 Grade 23 DMSL on EOS M 290; 40 µm Layer Thickness
Categories: Metal; 3D Printing/Additive Manufacturing Metal; Nonferrous Metal; Titanium Alloy

Material Notes: EOS Titanium Ti64 Grade 23 is a Ti6Al4V alloy with lower amount of oxygen and iron compared to the standard Ti64 alloy. The material is well-known for having excellent mechanical properties: low density with high strength and excellent corrosion resistance. Compared to Ti64, Ti64ELI has better elongation and toughness, but lower strength. Generally, Ti64ELI alloys are considered to be biocompatible and have low specific weight compared to CoCr alloys. Parts built with EOS Titanium Ti64 Grade 23 powder can be machined, shot peened and polished in as manufactured and heat treated states. Due to the layerwise building method, the parts have a certain anisotropy. Heat treatment is recommended to reduce internal stresses and increase ductility. EOS Titanium Ti64 Grade 23 powder can be used on the EOS M 290 with a 40 µm and 80 µm process and on the EOS M 400-4 with an 80 µm process.

Main Characteristics:

  • Low weight combined with high strength
  • Excellent corrosion resistance
  • High fatigue resistance compared to other lightweight alloys
  • The parts fulfill chemical requirements for Grade 23 alloy
Typical Applications:
  • Medical components
  • Implants
  • Other industrial applications where low weight in combination with high strength are required

Information provided by EOS GmbH (Electro Optical Systems).

Vendors: No vendors are listed for this material. Please click here if you are a supplier and would like information on how to add your listing to this material.
 
Physical PropertiesMetricEnglishComments
Density >= 4.40 g/cc>= 0.159 lb/in³ISO 3369
Particle Size 20 - 80 µm20 - 80 µm
Thickness 40.0 microns1.57 mil
 
Mechanical PropertiesMetricEnglishComments
Tensile Strength  1050 MPa
@Treatment Temp. 800 °C,
Time 7200 sec
152000 psi
@Treatment Temp. 1470 °F,
Time 2.00 hour
Horizontal, Heat Treated; ISO 6892-1
 1050 MPa
@Treatment Temp. 800 °C,
Time 7200 sec
152000 psi
@Treatment Temp. 1470 °F,
Time 2.00 hour
Vertical, Heat Treated; ISO 6892-1
Tensile Strength, Yield  940 MPa
@Treatment Temp. 800 °C,
Time 7200 sec
136000 psi
@Treatment Temp. 1470 °F,
Time 2.00 hour
Horizontal, Heat Treated; ISO 6892-1
 980 MPa
@Treatment Temp. 800 °C,
Time 7200 sec
142000 psi
@Treatment Temp. 1470 °F,
Time 2.00 hour
Vertical, Heat Treated; ISO 6892-1
Elongation at Break  14 %
@Treatment Temp. 800 °C,
Time 7200 sec
14 %
@Treatment Temp. 1470 °F,
Time 2.00 hour
Horizontal, Heat Treated; ISO 6892-1
 15 %
@Treatment Temp. 800 °C,
Time 7200 sec
15 %
@Treatment Temp. 1470 °F,
Time 2.00 hour
Vertical, Heat Treated; ISO 6892-1
Reduction of Area  >= 25 %
@Treatment Temp. 800 °C,
Time 7200 sec
>= 25 %
@Treatment Temp. 1470 °F,
Time 2.00 hour
Horizontal, Heat Treated; ISO 6892-1
 >= 25 %
@Treatment Temp. 800 °C,
Time 7200 sec
>= 25 %
@Treatment Temp. 1470 °F,
Time 2.00 hour
Vertical, Heat Treated; ISO 6892-1
Fatigue Strength 589 MPa
@# of Cycles 1.00e+7
85400 psi
@# of Cycles 1.00e+7
ASTM E466
 
Component Elements PropertiesMetricEnglishComments
Aluminum, Al 5.5 - 6.5 %5.5 - 6.5 %
Carbon, C <= 0.080 %<= 0.080 %
Hydrogen, H <= 0.012 %<= 0.012 %
Iron, Fe <= 0.25 %<= 0.25 %
Nitrogen, N <= 0.050 %<= 0.050 %
Other, each <= 0.10 %<= 0.10 %
Other, total <= 0.40 %<= 0.40 %
Oxygen, O <= 0.13 %<= 0.13 %
Titanium, Ti 87.973 - 91 %87.973 - 91 %Balance
Vanadium, V 3.5 - 4.5 %3.5 - 4.5 %
Yttrium, Y <= 0.0050 %<= 0.0050 %
 
Descriptive Properties
Surface roughness9 µmRa, Vertical
Volume rate6.2 mm³/s

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NEOS962 / 280622

Ensinger PEI

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