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DMLS 316L Stainless Steel vs. Plastic PMMA

Compare DMLS 316L Stainless Steel vs. Plastic PMMA strength, stiffness, weight and thermal properties.

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DMLS 316L Stainless Steel3D printed metal (DMLS)
Plastic PMMABulk polymer (molded or machined)
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Mechanical
Yield strength530MPasourcetypical, as manufactured, horizontalnot given (tensile used)
Ultimate tensile strength640MPasourcetypical, as manufactured, horizontal80MPasourcetypical, 23 °C
Compressive strengthnot sourced110MPasourcecompressive yield stress, typical
Flexural strengthnot sourced115MPasourcetypical
Elongation at break40%sourcetypical at break, as manufactured, horizontal5.5%sourcetypical
Young's modulus (stiffness)185GPasourcetypical, as built, horizontal (XY); EOSINT M280-400W / M290-400W, 316L_Surface 1.0, 20 µm (2014 sheet)3.3GPasourcetypical, short-term
Density7,900kg/m³sourcepart density (ISO 3369, not labelled min or typical), EOS M 290, 40 µm FlexLine1,190kg/m³sourcetypical
Strength to weight67.1kN·m/kg67.2kN·m/kg
Stiffness to weight23.4MN·m/kg8.44x higher2.77MN·m/kg
Poisson's ratio0.3sourcebase material: austenitic stainless steels incl. 1.4404 (316L), design value0.37sourcetypical
Shear modulus71.2GPa59.1x stiffer in shear1.2GPa
Bulk modulus154GPa4.23GPa
Speed of sound4,839m/s1,665m/s
Thermal
Thermal conductivity16.2W/m·Ksourcebase material: wrought 316/316L (Cleveland-Cliffs), at 100 °C0.19W/m·Ksourcetypical
Thermal expansion15.7µm/m·Ksourcemean 25-100 °C, ASTM E22870µm/m·Ksource0-50 °C
100 mm part over a 50 °C swing78.6µm growth4.45x less350µm growth
Specific heat500J/kg·Ksourcebase material: wrought 316/316L (Cleveland-Cliffs), 0-100 °C1,470J/kg·Ksourcetypical
Heats up and cools (diffusivity)4.1mm²/s37.8x faster0.109mm²/s
Thermal shock resistance2,067W/m49.9x more resistant41.5W/m
Max service temperaturenot sourced80°Csourcemax. permanent service temperature
Values forEOS StainlessSteel 316L (powder 9011-0032), EOS M 290, ParameterSet 316L 20µm Surface M290/400W, as manufactured, horizontal; ISO 6892-1Röhm PLEXIGLAS GS 0F00 cast acrylic sheet, typical values at 23 °C / 50 % RH (Röhm Technical Information Ref. No. 211-1)

Every value links to the document that states it. "Not sourced" means no citable source states it (or only a specification minimum); figures computed from it are left out too.

DMLS 316L Stainless Steel is 3D printed: its properties depend on build direction and print settings; these are typical values.

Questions

Is DMLS 316L Stainless Steel stronger than Plastic PMMA?

DMLS 316L Stainless Steel is stronger: its yield strength is 530 MPa against tensile strength 80 MPa for Plastic PMMA (6.63x).

Which is lighter, DMLS 316L Stainless Steel or Plastic PMMA?

Plastic PMMA is lighter: 1,190 kg/m³ against 7,900 kg/m³ for DMLS 316L Stainless Steel.

Which is stiffer, DMLS 316L Stainless Steel or Plastic PMMA?

DMLS 316L Stainless Steel is stiffer: Young's modulus 185 GPa against 3.3 GPa for Plastic PMMA, so the same part in DMLS 316L Stainless Steel deflects less under the same load.

Which is lighter for the same job, DMLS 316L Stainless Steel or Plastic PMMA?

For the same stiffness or strength: DMLS 316L Stainless Steel is lighter for a stiff rod or tie (tension), stiff beam (bending); Plastic PMMA is lighter for a stiff panel or plate, strong beam, strong panel or plate.

Part that must beDMLS 316L Stainless SteelPlastic PMMA
Stiff rod or tie (tension)lighter8.44x heavier
Stiff beam (bending)lighter13% heavier
Stiff panel or plate1.73x heavierlighter
Strong rod or tieabout equalabout equal
Strong beam1.88x heavierlighter
Strong panel or plate2.58x heavierlighter

For the same stiffness or strength, mass scales with density over stiffness (or strength) raised to a power set by how the part is loaded: 1 for a rod in tension, 1/2 for a beam in bending, 1/3 for a panel (the standard material-selection indices).

Which conducts heat better, DMLS 316L Stainless Steel or Plastic PMMA?

DMLS 316L Stainless Steel conducts heat better: 16.2 W/m·K against 0.19 W/m·K for Plastic PMMA.

Which expands less with temperature?

DMLS 316L Stainless Steel expands less: 15.7 µm/m·K against 70 µm/m·K for Plastic PMMA.

Among 59 materials

1k10k0.1110100Density (kg/m³)Young's modulus (GPa)Plastic PLAPlastic PETGPlastic ABSPlastic TPUPlastic NylonAluminumSteelIronTitaniumSteel AISI 1018Stainless Steel 304Stainless Steel 316Aluminum 6061-T6Aluminum 7075-T6Brass C360Copper C110GlassSteel AISI 1045Steel AISI 4340Steel A992Stainless Steel 303Stainless Steel 17-4PHAluminum 2024-T351Aluminum 5052-H32Aluminum 7050-T7451Titanium Ti-6Al-4VBrass C260Nickel Inconel 718Magnesium AZ31B-H24Zinc Zamak 3Plastic ABS (bulk/injection)Plastic PolycarbonatePlastic POM/AcetalPlastic Nylon PA6Plastic Nylon PA66Plastic PEEKPlastic UHMWPEPlastic HDPEPlastic PolypropyleneFDM ASAFDM PolycarbonateFDM PAHT-CFFDM HIPSSLA Resin Tough 2000SLS PA12 NylonDMLS AlSi10Mg AluminumDMLS Ti-6Al-4V ELI TitaniumDMLS 17-4PH Stainless SteelDMLS 316L Stainless SteelPlastic PMMA
Stiffness against density
1k10k101001kDensity (kg/m³)Yield strength (MPa)Plastic PLAPlastic PETGPlastic ABSPlastic TPUPlastic NylonRubberAluminumSteelIronTitaniumSteel AISI 1018Stainless Steel 304Stainless Steel 316Aluminum 6061-T6Aluminum 7075-T6Brass C360Copper C110GlassSteel AISI 1045Steel AISI 4340Steel A992Stainless Steel 303Stainless Steel 17-4PHAluminum 2024-T351Aluminum 5052-H32Aluminum 7050-T7451Titanium Ti-6Al-4VBrass C260Nickel Inconel 718Magnesium AZ31B-H24Zinc Zamak 3Plastic ABS (bulk/injection)Plastic PolycarbonatePlastic POM/AcetalPlastic Nylon PA6Plastic Nylon PA66Plastic PEEKPlastic PTFEPlastic UHMWPEPlastic HDPEPlastic PolypropyleneFDM ASAFDM PolycarbonateFDM PAHT-CFFDM HIPSSLA Resin Tough 2000SLA Resin Elastic 50ASLS PA12 NylonDMLS AlSi10Mg AluminumDMLS Ti-6Al-4V ELI TitaniumDMLS 17-4PH Stainless SteelBrickDMLS 316L Stainless SteelPlastic PMMA
Strength against density

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