Engineering library

Engineering · Reference

Modulus of elasticity (Young’s modulus).

Stiffness values for the engineering materials in this reference, in GPa and Msi. Use it for deflection calculations, stiffness-budget analysis, and material substitutions where stiffness is the constraint — not strength. Sorted by modulus, highest to lowest.

Materials
32
Stiffest
Tungsten (W)
411 GPa
Softest
Delrin / POM
3.1 GPa
Range
133×
MaterialFamilyE (GPa)E (Msi)
Tungsten (W)Refractory metal41159.6
Tool steel A2Tool steel20730
Tool steel D2Tool steel20730
Tool steel H13Tool steel20730
Inconel 625Nickel superalloy20730
Hastelloy C-276Nickel superalloy20529.7
Steel 1018 (mild)Carbon steel20029
Steel 4140Alloy steel20029
Steel 4340Alloy steel20029
Stainless 17-7PHPH stainless20029
Stainless 410Martensitic stainless20029
Inconel 718Nickel superalloy20029
Stainless 17-4PHPH stainless19628.5
Stainless 304Austenitic stainless19328
Stainless 316LAustenitic stainless19328
Tantalum (Ta)Refractory metal18627
Monel 400Nickel alloy17926
Beryllium copper C172Cu-Be alloy13119
Copper C110 (ETP)Pure copper11717
Titanium Ti-6Al-4VTitanium alloy113.816.5
Niobium (Nb)Refractory metal10515.2
Titanium CP Grade 2Pure titanium10515.2
Bronze C932Bearing bronze10014.5
Brass C360Free-machining brass9714.1
Aluminum 2024-T3Aerospace aluminum73.110.6
MIC-6 cast aluminumCast aluminum plate7210.4
Aluminum 7075-T6Aerospace aluminum71.710.4
Aluminum 6061-T6Aluminum68.910
Magnesium AZ31Magnesium456.5
PEEKEngineering plastic3.60.52
Ultem (PEI)Engineering plastic3.20.46
Delrin / POMEngineering plastic3.10.45

How to use this

Stiffness ≠ strength.

  • All steels are roughly the same modulus.

    4140, 4340, mild steel, stainless, tool steel — all hover around 200 GPa. Heat treatment, alloying, hardness — none of those significantly change Young’s modulus. They change strength and hardness; stiffness stays the same.

  • Titanium is half-stiff for half-weight.

    Ti-6Al-4V: 114 GPa, 4.43 g/cc. Steel: 200 GPa, 7.85 g/cc. Specific stiffness (E/ρ) is ~25.7 vs ~25.5 — essentially the same. So titanium isn’t stiffer per pound, just lighter for the same stiffness.

  • Aluminum is one-third the stiffness of steel.

    ~69 GPa vs ~200 GPa. For deflection-critical parts (machine bases, optical mounts, structural brackets) you need ~3× the moment of inertia in aluminum to match steel deflection — that’s why aluminum structural sections are dimensionally larger.

  • Plastics are 50–60× softer than metal.

    PEEK at 3.6 GPa is one of the stiffer engineering plastics; still ~55× softer than steel (and ~19× softer than aluminum). For load-bearing plastic parts, design for plastic stiffness — don’t scale a metal design.

  • Beryllium-copper is the stiffness sweet spot in copper alloys.

    131 GPa vs 117 GPa for pure copper. BeCu’s combination of conductivity, non-magnetic property, and stiffness makes it valuable for electrical springs and contacts.

  • Inconel and steel: same stiffness, different operating temperature.

    Inconel 718 = 200 GPa, same as steel. The reason to pay 10× for Inconel is high-temperature creep resistance and corrosion — not stiffness.

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