This page provides in-depth technical information of 4140 steel properties, including chemical composition, mechanical properties, hardness, heat treatment effects, international equivalents, processing guidelines, and welding considerations.
For a broader overview of 4140 steel and its general applications, see our 4140 Steel Overview page.
4140 Steel Chemical Composition
4140 steel is classified as a Cr-Mo low alloy steel. The following table shows typical elemental ranges:
Element
Typical % Range
Carbon (C)
0.38 – 0.43
Chromium (Cr)
0.80 – 1.10
Molybdenum (Mo)
0.15 – 0.25
Manganese (Mn)
0.75 – 1.00
Silicon (Si)
0.15 – 0.35
Phosphorus (P)
≤0.035
Sulfur (S)
≤0.040
Element Functions:
Carbon (C) → Increases strength and hardness.
Chromium (Cr) → Improves hardenability and wear resistance.
Molybdenum (Mo) → Enhances high-temperature strength and toughness.
Manganese (Mn) → Supports hardenability and tensile properties.
Silicon (Si) → Adds strength and hardness.
These elemental characteristics are critical for understanding how 4140 steel composition affects heat treatment response and mechanical performance.
4140 Steel Mechanical Properties
4140 steel mechanical properties vary depending on the heat treatment condition. The following table summarizes typical values:
Quenching & Tempering → Achieves high strength and hardness while maintaining good toughness.
For many buyers, the 4140 yield strength is the most critical parameter, as it determines load-bearing performance in industrial applications and highlights the importance of understanding 4140 mechanical properties in detail.
4140 Steel International Equivalents
When sourcing internationally, it is important to confirm the grade to ensure consistent performance. In particular, verifying the correct 4140 steel equivalent is essential, since different regions may use alternative notations.
Country / Standard
Equivalent Grade
USA
AISI 4140 / SAE 4140
ASTM
A29 / A322
Germany
DIN 42CrMo4
Europe
EN 1.7225
Japan
JIS SCM440
China
GB 42CrMo
Buyer Considerations:
Checking the right 4140 steel equivalent ensures the material will match required specifications.
Tolerances and chemical composition may vary slightly between standards
Processing Guidelines
Proper processing is essential to maintain 4140 steel properties:
Stress Relieving: Recommended for heavy components to minimize residual stress and distortion.
Machining: Annealed 4140 steel is easier to machine due to lower hardness; normalized or quenched & tempered steel requires cutting tools with higher hardness.
Heat Treatment: Adjust temperature and cooling rate according to required hardness and toughness. Ensure uniform heating to prevent distortion.
Welding Considerations
Proper welding ensures performance and avoids cracking:
Preheating: 150–200°C for parts over 12 mm thickness
Welding Methods: SMAW, GMAW, GTAW suitable for 4140 steel
Filler Material: Use compatible low alloy steel fillers (e.g., ER80S-D2)
Post-Weld Heat Treatment: Stress relief or tempering recommended after welding to maintain toughness
These processing and welding practices help maintain the desired 4140 steel properties, ensuring consistent quality across different manufacturing operations.
Conclusion
When selecting 4140 steel, consider the required mechanical properties, compositions, heat treatment condition, and international standard equivalence to ensure consistent performance. Proper machining and welding procedures are also critical to maintain material integrity and preserve the required 4140 steel properties throughout its service life.
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