MAT GRADES • 105 VERIFIED MATERIALS • SOURCE-LINKED PROPERTIES

Material Comparison

Compare verified engineering materials side by side with condition-specific mechanical properties.

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Material A (Baseline)
Material B (Comparison)
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Temper & Metallurgical Context Qualification:The selected records contain different or missing source contexts. Values shown in separate rows are not directly matched. Typical and estimated values are not guaranteed minima; matching context alone does not establish interchangeability.
1. Identity, Classification & Standards
ParameterSAE 8622 Alloy SteelSAE 8620 Alloy Steel
Material FamilySteelSteel
SubfamilyAlloy SteelAlloy Steel
SAE Designation86228620
AISI Designation8622—
UNS DesignationG86220—
SPECIFICATION DesignationSAE 8622 Alloy Steel Engineering DatasheetSAE 8620 Alloy Steel Engineering Datasheet
2. Chemical Composition Limits (wt %)Source-specific limits and typical values
ElementSAE 8622 Alloy SteelSAE 8620 Alloy Steel
Fe (Iron)Bal.—
C (Carbon)0.2 – 0.25%0.18 – 0.23%
Mn (Manganese)0.7 – 0.9%0.7 – 0.9%
P (Phosphorus)≤ 0.03%≤ 0.035%
S (Sulfur)≤ 0.04%≤ 0.04%
Si (Silicon)0.15 – 0.35%0.15 – 0.35%
Cr (Chromium)0.4 – 0.6%0.4 – 0.6%
Ni (Nickel)0.4 – 0.7%0.4 – 0.7%
Mo (Molybdenum)0.15 – 0.25%0.15 – 0.25%
3. Physical Properties
PropertySAE 8622 Alloy SteelSAE 8620 Alloy Steel
Density · TYPICALUnit: g/cm³7.85 g/cm³7.85 g/cm³
Elastic Modulus · TYPICALUnit: GPa205 GPa205 GPa
Poisson's Ratio · TYPICALUnit: dimensionless0.29 dimensionless0.29 dimensionless
4. Contextual Mechanical PropertiesUnit: SI
Mechanical ParameterSAE 8622 Alloy SteelNormalized Bar (25 mm)SAE 8620 Alloy SteelNormalized Bar (870°C) - Core Properties
Ultimate Tensile Strength · Bar · Normalized Bar (25 mm) · MINIMUMUnit: MPa≥ 590 MPa— MPa
Ultimate Tensile Strength · Bar · Normalized Bar (870°C) - Core Properties · MINIMUMUnit: MPa— MPa≥ 630 MPa
Yield Strength · Bar · Normalized Bar (25 mm) · MINIMUMUnit: MPa≥ 390 MPa— MPa
Yield Strength · Bar · Normalized Bar (870°C) - Core Properties · MINIMUMUnit: MPa— MPa≥ 380 MPa
Elongation at Break · Bar · in 50 mm (2 in) · Normalized Bar (25 mm) · MINIMUMUnit: %≥ 19 %— %
Elongation at Break · Bar · in 50 mm (2 in) · Normalized Bar (870°C) - Core Properties · MINIMUMUnit: %— %≥ 20 %
Reduction of Area · Bar · Normalized Bar (25 mm) · MINIMUMUnit: %≥ 45 %— %
Reduction of Area · Bar · Normalized Bar (870°C) - Core Properties · MINIMUMUnit: %— %≥ 50 %
5. Electrical & Thermal Conductive Properties
PropertySAE 8622 Alloy SteelSAE 8620 Alloy Steel
Specific Heat Capacity · TYPICALCategory: THERMAL • Unit: J/(kg·K)486 J/(kg·K)— J/(kg·K)
Thermal Conductivity · TYPICALCategory: THERMAL • Unit: W/(m·K)42.6 W/(m·K)— W/(m·K)
Thermal Conductivity · TYPICAL · 100 °CCategory: THERMAL • Unit: W/(m·K)— W/(m·K)46.6 W/(m·K)
Coefficient of Thermal Expansion · TYPICAL · 100 °CCategory: THERMAL • Unit: µm/(m·K)— µm/(m·K)12.1 µm/(m·K)
6. Hardness Evaluation (Discrete Scales Preserved)No cross-scale mathematical conversion
Hardness ScaleSAE 8622 Alloy SteelSAE 8620 Alloy Steel
HB Hardness · Bar · Normalized Bar (25 mm) · TYPICAL≤ 201 HB—
HB Hardness · Bar · Normalized Bar (870°C) - Core Properties · MINIMUM—≥ 179 HB