Materials / Compare

Plastic ABS vs. Iron

Compare Plastic ABS vs. Iron strength, stiffness, weight and thermal properties.

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Plastic ABS3D printed (FDM)
IronWrought
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Mechanical
Yield strength38.1MPasourcetypical186MPasourcetypical (0.2% YS), hot rolled + SRA/recrystallization anneal
Ultimate tensile strength38.1MPasourcetypical, peak stress (= stress at yield)290MPasourcetypical, SRA/recrystallization anneal
Flexural strength61.1MPasourcetypicalnot sourced
Elongation at break4.6%sourcetypical38%sourcetypical, gauge 4D0
Young's modulus (stiffness)1.96GPasourcetypical207GPasourcetypical, after SRA/recrystallization anneal
Density1,100kg/m³sourcetypical7.15x lighter7,860kg/m³sourcetypical
Strength to weight34.6kN·m/kg46% higher23.7kN·m/kg
Stiffness to weight1.78MN·m/kg26.3MN·m/kg14.8x higher
Poisson's ratio0.39sourcebase material: ABS family typical (Covestro Part and Mold Design guide, Table 3-1)0.282sourceNIST critically evaluated best value (polycrystalline iron)
Shear modulus0.706GPa80.7GPa114x stiffer in shear
Bulk modulus2.97GPa158GPa
Speed of sound1,336m/s5,132m/s
Thermal
Thermal conductivity0.17W/m·Ksourcebase material: INEOS Styrolution Terluran GP-22 injection-molding ABS, typical73.2W/m·Ksourcetypical at 20 °C
Thermal expansion80–110µm/m·Ksourcebase material: INEOS Styrolution Terluran GP-22 injection-molding ABS, range13.7µm/m·Ksourcemean, 20-399 °C
100 mm part over a 50 °C swing475µm growth68.5µm growth6.93x less
Specific heatnot sourced450J/kg·Ksourcetypical
Heats up and cools (diffusivity)not sourced20.7mm²/s
Thermal shock resistance21.2W/m3,447W/m163x more resistant
Melting pointnot sourced1,532°Csourcetypical
Glass transition101°Csourcetypicalnot sourced
Max service temperature86.6°CsourceHDT 0.455 MPa (printed specimens)not sourced
Values forUltimaker ABS, 3D-printed specimens, XY (flat); Ultimaker S5 Pro, engineering intent profile, 0.15 mm layer height, AA 0.4 print core, 100% infill, Cura 4.9, printed one-at-a-time, conditioned >=24 h at room temperature. TDS v5.00, April 20, 2022.Cleveland-Cliffs / AK Steel ARMCO Pure Iron Product Data Bulletin (07/2022): Table 1 typical physical properties, Table 2 typical mechanical properties after SRA/recrystallization anneal.

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.

Plastic ABS is 3D printed: its properties depend on build direction and print settings; these are typical values.

Questions

Is Plastic ABS stronger than Iron?

Iron is stronger: its yield strength is 186 MPa against 38.1 MPa for Plastic ABS (4.88x).

Which is lighter, Plastic ABS or Iron?

Plastic ABS is lighter: 1,100 kg/m³ against 7,860 kg/m³ for Iron.

Which is stiffer, Plastic ABS or Iron?

Iron is stiffer: Young's modulus 207 GPa against 1.96 GPa for Plastic ABS, so the same part in Iron deflects less under the same load.

Which is lighter for the same job, Plastic ABS or Iron?

For the same stiffness or strength: Plastic ABS is lighter for a stiff panel or plate, strong rod or tie, strong beam, strong panel or plate; Iron is lighter for a stiff rod or tie (tension), stiff beam (bending).

Part that must bePlastic ABSIron
Stiff rod or tie (tension)14.8x heavierlighter
Stiff beam (bending)44% heavierlighter
Stiff panel or platelighter1.51x heavier
Strong rod or tielighter46% heavier
Strong beamlighter2.48x heavier
Strong panel or platelighter3.23x heavier

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, Plastic ABS or Iron?

Iron conducts heat better: 73.2 W/m·K against 0.17 W/m·K for Plastic ABS.

Which expands less with temperature?

Iron expands less: 13.7 µm/m·K against 95 µm/m·K for Plastic ABS.

Among 59 materials

1k10k0.1110100Density (kg/m³)Young's modulus (GPa)Plastic PLAPlastic PETGPlastic TPUPlastic NylonAluminumSteelTitaniumSteel AISI 1018Stainless 304Stainless 316Aluminum 6061-T6Aluminum 7075-T6Brass C360Copper C110GlassSteel AISI 1045Steel AISI 4340Steel A992Stainless 303Stainless 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 PolypropylenePlastic PMMAFDM ASAFDM PolycarbonateFDM PAHT-CFFDM HIPSSLA Resin Tough 2000SLS PA12 NylonDMLS AlSi10Mg AluminumDMLS Ti-6Al-4V ELI TitaniumDMLS 316L Stainless SteelDMLS 17-4PH Stainless SteelPlastic ABSIron
Stiffness against density
1k10k101001kDensity (kg/m³)Yield strength (MPa)Plastic PLAPlastic PETGPlastic TPUPlastic NylonRubberAluminumSteelTitaniumSteel AISI 1018Stainless 304Stainless 316Aluminum 6061-T6Aluminum 7075-T6Brass C360Copper C110GlassSteel AISI 1045Steel AISI 4340Steel A992Stainless 303Stainless 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 PolypropylenePlastic PMMAFDM ASAFDM PolycarbonateFDM PAHT-CFFDM HIPSSLA Resin Tough 2000SLA Resin Elastic 50ASLS PA12 NylonDMLS AlSi10Mg AluminumDMLS Ti-6Al-4V ELI TitaniumDMLS 316L Stainless SteelDMLS 17-4PH Stainless SteelBrickPlastic ABSIron
Strength against density

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