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S13800 Stainless Steel vs. 6023 Aluminum

S13800 stainless steel belongs to the iron alloys classification, while 6023 aluminum belongs to the aluminum alloys. There are 30 material properties with values for both materials. Properties with values for just one material (5, in this case) are not shown. Please note that the two materials have significantly dissimilar densities. This means that additional care is required when interpreting the data, because some material properties are based on units of mass, while others are based on units of area or volume.

For each property being compared, the top bar is S13800 stainless steel and the bottom bar is 6023 aluminum.

Metric UnitsUS Customary Units

Mechanical Properties

Elastic (Young's, Tensile) Modulus, GPa 200
69
Elongation at Break, % 11 to 18
11
Fatigue Strength, MPa 410 to 870
120 to 130
Poisson's Ratio 0.28
0.33
Shear Modulus, GPa 77
26
Shear Strength, MPa 610 to 1030
210 to 220
Tensile Strength: Ultimate (UTS), MPa 980 to 1730
360
Tensile Strength: Yield (Proof), MPa 660 to 1580
300 to 310

Thermal Properties

Latent Heat of Fusion, J/g 280
400
Maximum Temperature: Mechanical, °C 810
160
Melting Completion (Liquidus), °C 1450
640
Melting Onset (Solidus), °C 1410
580
Specific Heat Capacity, J/kg-K 470
890
Thermal Conductivity, W/m-K 16
170
Thermal Expansion, µm/m-K 11
23

Electrical Properties

Electrical Conductivity: Equal Volume, % IACS 2.3
45
Electrical Conductivity: Equal Weight (Specific), % IACS 2.6
140

Otherwise Unclassified Properties

Base Metal Price, % relative 15
11
Density, g/cm3 7.9
2.8
Embodied Carbon, kg CO2/kg material 3.4
8.3
Embodied Energy, MJ/kg 46
150
Embodied Water, L/kg 140
1180

Common Calculations

Resilience: Ultimate (Unit Rupture Work), MJ/m3 150 to 190
38 to 39
Resilience: Unit (Modulus of Resilience), kJ/m3 1090 to 5490
670 to 690
Stiffness to Weight: Axial, points 14
14
Stiffness to Weight: Bending, points 25
49
Strength to Weight: Axial, points 35 to 61
35 to 36
Strength to Weight: Bending, points 28 to 41
40
Thermal Diffusivity, mm2/s 4.3
67
Thermal Shock Resistance, points 33 to 58
16

Alloy Composition

Aluminum (Al), % 0.9 to 1.4
94 to 97.7
Bismuth (Bi), % 0
0.3 to 0.8
Carbon (C), % 0 to 0.050
0
Chromium (Cr), % 12.3 to 13.2
0
Copper (Cu), % 0
0.2 to 0.5
Iron (Fe), % 73.6 to 77.3
0 to 0.5
Magnesium (Mg), % 0
0.4 to 0.9
Manganese (Mn), % 0 to 0.2
0.2 to 0.6
Molybdenum (Mo), % 2.0 to 3.0
0
Nickel (Ni), % 7.5 to 8.5
0
Nitrogen (N), % 0 to 0.010
0
Phosphorus (P), % 0 to 0.010
0
Silicon (Si), % 0 to 0.1
0.6 to 1.4
Sulfur (S), % 0 to 0.0080
0
Tin (Sn), % 0
0.6 to 1.2
Residuals, % 0
0 to 0.15