Materials / Compare

Aluminum 7050-T7451 vs. Plastic Nylon

Compare Aluminum 7050-T7451 vs. Plastic Nylon strength, stiffness, weight and thermal properties.

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Aluminum 7050-T7451Wrought
Plastic Nylon3D printed (FDM)
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Mechanical
Yield strength469MPasourcetypical, longitudinal, 0.2% offset63.1MPasourcetypical
Ultimate tensile strength524MPasourcetypical, longitudinal63.1MPasourcetypical, peak stress (= stress at yield)
Flexural strengthnot sourced82.9MPasourcetypical
Elongation at break11%sourcetypical, longitudinalnot sourced
Young's modulus (stiffness)70.3GPasourcetypical30.2x stiffer2.33GPasourcetypical
Density2,830kg/m³sourcenominal1,140kg/m³sourcetypical
Strength to weight166kN·m/kg2.99x higher55.4kN·m/kg
Stiffness to weight24.8MN·m/kg12.1x higher2.04MN·m/kg
Poisson's ratio0.33sourcetypical (handbook physical constant)0.4sourcebase material: unfilled polyamide (PA), conditioned, maker design-guide family value (Covestro Table 3-1)
Shear modulus26.4GPa31.7x stiffer in shear0.833GPa
Bulk modulus68.9GPa3.89GPa
Speed of sound4,984m/s1,430m/s
Thermal
Thermal conductivity157W/m·Ksourcetypical, 20 °C0.33W/m·Ksourcebase material: unreinforced BASF Ultramid PA66 (A3K) and PA6 (B3S), 23 C (same value for both)
Thermal expansion23.5µm/m·Ksourcetypical, mean 20-100 °C98–102µm/m·Ksourcebase material: unreinforced BASF Ultramid PA66 (A3K, 98) and PA6 (B3S, 102), 23-55 C
100 mm part over a 50 °C swing118µm growth4.26x less500µm growth
Specific heat860J/kg·Ksourcetypical, at 100 °C1,700J/kg·Ksourcebase material: unreinforced BASF Ultramid PA66 (A3K) and PA6 (B3S), 23 C (same value for both)
Heats up and cools (diffusivity)64.5mm²/s379x faster0.17mm²/s
Thermal shock resistance29,862W/m557x more resistant53.6W/m
Melting point524–635°Csourcemelting range188°Csourcetypical
Glass transitionnot sourced55.1°Csourcetypical
Max service temperaturenot sourced89.2°CsourceHDT 0.455 MPa (printed specimens)
Values for7050-T7451 plate, Kaiser Aluminum sheet, coil & plate typical datasheet (longitudinal); Poisson from MIL-HDBK-5JUltimaker Nylon, 3D-printed specimens, XY (flat), conditioned >=24 h at room temperature; 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 v2.00, April 20, 2022.

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

Questions

Is Aluminum 7050-T7451 stronger than Plastic Nylon?

Aluminum 7050-T7451 is stronger: its yield strength is 469 MPa against 63.1 MPa for Plastic Nylon (7.43x).

Which is lighter, Aluminum 7050-T7451 or Plastic Nylon?

Plastic Nylon is lighter: 1,140 kg/m³ against 2,830 kg/m³ for Aluminum 7050-T7451.

Which is stiffer, Aluminum 7050-T7451 or Plastic Nylon?

Aluminum 7050-T7451 is stiffer: Young's modulus 70.3 GPa against 2.33 GPa for Plastic Nylon, so the same part in Aluminum 7050-T7451 deflects less under the same load.

Which is lighter for the same job, Aluminum 7050-T7451 or Plastic Nylon?

For the same stiffness or strength: Aluminum 7050-T7451 is lighter for a stiff rod or tie (tension), stiff beam (bending), stiff panel or plate, strong rod or tie, strong beam, strong panel or plate.

Part that must beAluminum 7050-T7451Plastic Nylon
Stiff rod or tie (tension)lighter12.1x heavier
Stiff beam (bending)lighter2.21x heavier
Stiff panel or platelighter25% heavier
Strong rod or tielighter2.99x heavier
Strong beamlighter1.53x heavier
Strong panel or platelighter10% 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, Aluminum 7050-T7451 or Plastic Nylon?

Aluminum 7050-T7451 conducts heat better: 157 W/m·K against 0.33 W/m·K for Plastic Nylon.

Which expands less with temperature?

Aluminum 7050-T7451 expands less: 23.5 µm/m·K against 100 µm/m·K for Plastic Nylon.

Among 59 materials

1k10k0.1110100Density (kg/m³)Young's modulus (GPa)Plastic PLAPlastic PETGPlastic ABSPlastic TPUAluminumSteelIronTitaniumSteel AISI 1018Stainless 304Stainless 316Aluminum 6061-T6Aluminum 7075-T6Brass C360Copper C110GlassSteel AISI 1045Steel AISI 4340Steel A992Stainless 303Stainless 17-4PHAluminum 2024-T351Aluminum 5052-H32Titanium 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 SteelAluminum 7050-T7451Plastic Nylon
Stiffness against density
1k10k101001kDensity (kg/m³)Yield strength (MPa)Plastic PLAPlastic PETGPlastic ABSPlastic TPURubberAluminumSteelIronTitaniumSteel AISI 1018Stainless 304Stainless 316Aluminum 6061-T6Aluminum 7075-T6Brass C360Copper C110GlassSteel AISI 1045Steel AISI 4340Steel A992Stainless 303Stainless 17-4PHAluminum 2024-T351Aluminum 5052-H32Titanium 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 SteelBrickAluminum 7050-T7451Plastic Nylon
Strength against density

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