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Spring Materials Modulus of Elasticity used in Torsion and Tension
Typical Modulus of Elasticity of Spring Materials used in Torsion and Tension
Ferrous Spring Materials
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Material
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Modulus of Elasticitya, psi
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In Torsion, G
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In Tension, E
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Hard Drawn MB
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Up to 0.032 inch
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11,700,000
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28,800,000
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0.033 to 0.063 inch
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11,600,000
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28,700,000
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0.064 to 0.125 inch
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11,500,000
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28,600,000
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0.126 to 0.625 inch
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11,400,000
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28,500,000
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Music Wire
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Up to 0.032 inch
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12,000,000
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29,500,000
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0.033 to 0.063 inch
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11,850,000
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29,000,000
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0.064 to 0.125 inch
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11,750,000
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28,500,000
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0.126 to 0.250 inch
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11,600,000
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28,000,000
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Oil-Tempered MB
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11,200,000
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28,500,000
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Chrome-Vanadium
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11,200,000
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28,500,000
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Chrome-Silicon
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11,200,000
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29,500,000
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Silicon-Manganese
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10,750,000
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29,000,000
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Stainless Steel
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Types 302, 304, 316
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10,000,000
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28,000,000b
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Type 17–7 PH
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10,500,000
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29,500,000
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Type 420
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11,000,000
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29,000,000
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Type 431
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11,400,000
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29,500,000
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Nonferrous Spring Materials
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Material
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Modulus of Elasticitya, psi
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In Torsion, G
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In Tension, E
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Spring Brass
Type 70–30 |
5,000,000
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28,800,000
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Phosphor Bronze
5 per cent tin |
11,600,000
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28,700,000
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Beryllium-Copper
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Cold Drawn 4 Nos.
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7,000,000
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29,500,000
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Pretempered, fully hard
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7,250,000
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29,000,000
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Inconel 600
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10,500,000
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31,000,000b
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Monelb 400
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9,500,000
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26,000,000
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Monelb K 500
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9,500,000
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26,000,000
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Ni Spanb C 902
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10,000,000
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27,500,000
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a Modulus G (shear modulus) is used for compression and extension springs; modulus E (Young's modulus) is used for torsion, flat, and spiral springs.
b May be 2,000,000 pounds per square inch less if material is not fully hard
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