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EOS PH1 Precipitation Hardening Stainless Steel Sintered on EOSINT M 270
Categories: Metal; 3D Printing/Additive Manufacturing Metal; Ferrous Metal; Stainless Steel; Precipitation Hardening Stainless

Material Notes: Stainless steel powder processed by DMLS. This stainless steel prototyping material is tough and resistant to heat and oxidization. It is used in medical and aerospace applications and for complex applications such as tooling inserts with conformal cooling channels. PH1 can be tempered for improved finished part properties.

EOS®, EOSINT®, DirectPart®, and DMLS® are registered trademarks of EOS GmbH. Information provided by Axis Prototyping.

Key Words: DIN 1.4540 and UNS S15500
Vendors:
Proto3000 provides design tools, 3D printers, additive manufacturing processes, metrology technologies, high-performance materials, and part-finishing automation. Our ISO 9001:2015 additive manufacturing production facility offers 3D printing services, rapid prototyping services, and end-part production with HP MultiJet Fusion (MJF), FDM, SLA, SLS, Polyjet, DLP, metal binder jetting, BMD, and DMLS.


Axis Proto Inc. Innovative leaders in producing high quality Rapid Prototyping and Rapid Manufacturing solutions using all major 3D printing systems including Stereolithography technology. Free online quotes at www.axisproto.com

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Physical PropertiesOriginal ValueComments
Density 7.8 g/cc
Porosity 0.0 %with standard parameters
 
Mechanical PropertiesOriginal ValueComments
Hardness, Rockwell C 30 - 35as built
 >= 40after modified H900 heat treatment
Tensile Strength, Ultimate 1000 - 1100 MPaas built, Z direction
 1100 - 1200 MPaas built, XY direction
 1350 - 1550 MPaafter modified H900 heat treatment, XY direction
 1350 - 1550 MPaafter modified H900 heat treatment, Z direction
Tensile Strength, Yield 950 - 1050 MPa
@Strain 0.2 %
as built, Z direction
 1000 - 1100 MPa
@Strain 0.2 %
as built, XY direction
 1200 - 1400 MPa
@Strain 0.2 %
after modified H900 heat treatment, XY direction
 1200 - 1400 MPa
@Strain 0.2 %
after modified H900 heat treatment, Z direction
Elongation at Break 10 - 14 %after modified H900 heat treatment, Z direction
 10 - 14 %after modified H900 heat treatment, XY direction
 12 - 20 %as built, XY direction
 13 - 21 %as built, Z direction
Modulus of Elasticity 160 - 200 GPa
 
Thermal PropertiesOriginal ValueComments
Specific Heat Capacity 0.440 - 0.480 J/g-°Cas built
 0.450 - 0.490 J/g-°Cafter modified H900 heat treatment
Thermal Conductivity 12.9 - 14.5 W/m-KZ (vertical) direction, as manufactured
 13.0 - 14.6 W/m-Kas built, XY direction
 14.9 - 16.5 W/m-Kafter modified H900 heat treatment, XY direction
 15.0 - 16.6 W/m-KZ (vertical) direction, after mod H900 heat treat
Maximum Service Temperature, Air 400 °C
 
Component Elements PropertiesOriginal ValueComments
Carbon, C <= 0.07 %
Chromium, Cr 14 - 15.5 %
Copper, Cu 2.5 - 4.5 %
Iron, Fe 71.48 - 79.85 %as balance
Manganese, Mn <= 1 %
Molybdenum, Mo <= 0.5 %
Nickel, Ni 3.5 - 5.5 %
Niobium, Nb (Columbium, Cb) 0.15 - 0.45 %
Silicon, Si <= 1 %

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NEOS991 / 138560

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