2025-12-16
In the realm of mechanical engineering, behind every precisely functioning system lies countless critical components working tirelessly. These parts endure tremendous pressure while operating continuously in demanding environments, with their reliability directly impacting the entire mechanical system's stability. What material can ensure both exceptional performance and longevity for these crucial components? C45 medium carbon steel might be the solution you seek—serving as the mechanical heart that provides robust and dependable support.
C45 round steel, as a non-alloy medium carbon steel, has earned the reputation of "universal carbon engineering steel" due to its outstanding comprehensive properties. It achieves a perfect balance between strength, machinability, and tensile performance, making it an ideal choice for manufacturing various mechanical components. Imagine gears enduring massive torque at high speeds, bearings rotating continuously under high temperature and pressure, or bolts securing critical connections—all these applications benefit from the reliable support provided by C45 steel.
The remarkable performance of C45 steel stems from its unique material characteristics:
Due to its exceptional properties, C45 steel finds widespread use across various industrial sectors:
C45 round steel is typically supplied in black hot-rolled or normalized conditions. Hot-rolled steel features untreated surfaces with black oxide scales, while normalized steel undergoes controlled air cooling after heating to refine microstructure and properties.
The material typically exhibits:
These values indicate C45 steel's adequate strength and hardness for most mechanical applications. However, lacking suitable alloying elements makes it unsuitable for nitriding—a surface hardening process that enhances wear resistance. Alternative alloy steels like 40Cr or 42CrMo are recommended when higher surface hardness is required.
C45 steel demonstrates equivalent performance to EN8 (080M40) or 080M40 steels under British standards, making them interchangeable in applications.
To meet diverse requirements, C45 steel is available in multiple specifications:
Surface treatments include black, rough-machined, turned, or customized finishes based on application needs.
| Country | Standard | Grade |
|---|---|---|
| United States | ASTM A29 | 1045 |
| United Kingdom | EN 10083-2 | C45/1.1191 |
| Japan | JIS G4051 | S45C |
| Australia | AS 1442 | 1045 |
| Standard | Grade | C | Mn | P | S | Si |
|---|---|---|---|---|---|---|
| ASTM A29 | 1045 | 0.43-0.50 | 0.60-0.90 | 0.04 | 0.050 | - |
| EN 10083-2 | C45/1.1191 | 0.42-0.50 | 0.50-0.80 | 0.03 | 0.035 | ≤0.4 |
| JIS G4051 | S45C | 0.42-0.48 | 0.60-0.90 | ≤0.030 | ≤0.035 | 0.15-0.35 |
Carbon primarily determines strength, while manganese enhances both strength and toughness. Phosphorus and sulfur are detrimental impurities that reduce ductility, and silicon improves strength and elasticity.
| Diameter (mm) | Yield Strength (N/mm²) | Tensile Strength (N/mm²) | Elongation A5 (%) | Reduction of Area (%) |
|---|---|---|---|---|
| <16 | ≥490 | 700-850 | ≥14 | ≥35 |
| 17-40 | ≥430 | 650-800 | ≥16 | ≥40 |
| 41-100 | ≥370 | 630-780 | ≥17 | ≥45 |
| Diameter (mm) | Yield Strength (N/mm²) | Tensile Strength (N/mm²) | Elongation A5 (%) |
|---|---|---|---|
| <16 | ≥390 | ≥620 | ≥14 |
| 17-100 | ≥305 | ≥305 | ≥16 |
Quenching and tempering significantly enhance strength and hardness while reducing plasticity and toughness. Normalizing achieves better balance between strength and ductility.
Forging Parameters:
Heat Treatment Processes:
Quenching from 820-860°C followed by water or oil quenching achieves surface hardness exceeding 55 HRC:
With advancing technology and increasing demands on mechanical components, C45 steel continues evolving in several directions:
As a versatile medium carbon steel, C45 maintains its vital role in mechanical engineering—providing reliable performance as the robust heart of machinery. Continuous improvements ensure its relevance in meeting future engineering challenges.
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