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At Gangsteel, we’re here to clarify the differences between S355N vs S355J2+N, two high-strength structural steels under the EN 10025 standard, each tailored for specific structural applications. S355N, under EN 10025-3, is a normalized, low-alloy steel with 355 MPa yield strength and -20°C toughness, ideal for demanding structures in moderate climates. S355J2+N, under EN 10025-2, is a non-alloy, normalized steel with similar strength and toughness, suited for general construction with cost-effective processing.
As part of the en 10025 3 normalized steel plate and EN 10025-2 families, these grades serve distinct purposes. Gangsteel compares their chemical composition, mechanical properties, and applications, with ties to grades like en 10025 3 s420n normalized structural steel plate and en 10025 3 s460n normalized structural steel plate. For more details, contact us or visit our en 10025 3 s355n normalized structural steel plate page.
S355N offers enhanced toughness due to its fine-grain, low-alloy structure, while S355J2+N is simpler and more economical for less demanding projects.
The chemical composition of S355N vs S355J2+N influences their properties:
|
Element |
S355N (EN 10025-3, Ladle, max %) |
S355J2+N (EN 10025-2, max %) |
Role in Properties |
|---|---|---|---|
|
Carbon (C) |
0.20 |
0.20 |
Similar, ensures weldability and toughness. |
|
Silicon (Si) |
0.50 |
0.55 |
S355J2+N’s slightly higher Si aids deoxidation. |
|
Manganese (Mn) |
0.90-1.65 |
1.60 |
S355N’s range supports fine-grain structure. |
|
Phosphorus (P) |
0.030 |
0.025 |
S355J2+N’s lower P enhances toughness. |
|
Sulfur (S) |
0.025 |
0.025 |
Identical, ensures weld quality. |
|
Nitrogen (N) |
0.025 |
0.012 |
S355J2+N’s lower N reduces brittleness. |
|
Aluminum (Al) |
0.020 (min, total) |
- |
S355N’s Al refines grains for toughness. |
|
Niobium (Nb) |
0.05 |
- |
S355N’s Nb enhances fine-grain structure. |
|
Vanadium (V) |
0.10 |
- |
S355N’s V boosts strength. |
|
Chromium (Cr) |
0.30 |
0.30 |
Similar, improves corrosion resistance. |
|
Nickel (Ni) |
0.50 |
0.30 |
S355N’s higher Ni improves toughness. |
|
Molybdenum (Mo) |
0.10 |
- |
S355N’s Mo enhances strength. |
|
Copper (Cu) |
0.55 |
0.55 |
Similar, aids corrosion resistance. |
Carbon Equivalent (CEV):
S355N’s microalloying (Nb, V, Al) and higher nickel content enhance its fine-grain structure and toughness, while S355J2+N’s simpler composition and lower phosphorus/nitrogen make it more cost-effective, similar to en 10025 3 s420n normalized structural steel plate.
S355N vs S355J2+N mechanical properties highlight their differences:
|
Property |
S355N (EN 10025-3, ≤16 mm) |
S355J2+N (EN 10025-2, ≤16 mm) |
|---|---|---|
|
Yield Strength (min, MPa) |
355 |
355 |
|
Tensile Strength (MPa) |
470-630 |
470-630 |
|
Elongation (min, %) |
22 |
22 |
|
Impact Toughness (min, J) |
27 @ -20°C |
27 @ -20°C |
|
Hardness (Brinell) |
150-190 (typical) |
140-180 (typical) |
Consumables: Both use ER70S-6 (GMAW) and EM12K flux with EH14 wire (SAW). S355N’s microalloying ensures better toughness in welds, similar to en 10025 3 s275n normalized structural steel plate.
S355N is preferred for critical applications requiring superior toughness, while S355J2+N suits cost-sensitive projects. For colder climates, consider en 10025 3 s355nl normalized structural steel plate.
|
Feature |
S355N (EN 10025-3) |
S355J2+N (EN 10025-2) |
|---|---|---|
|
Type |
Low-alloy, normalized |
Non-alloy, normalized |
|
Composition |
Microalloyed (Nb, V, Al) |
Simpler, no microalloying |
|
CEV |
≤0.43% |
≤0.45% |
|
Toughness |
Enhanced by fine-grain structure |
Standard toughness |
|
Applications |
High-load structures (bridges, cranes) |
General construction, buildings |
|
Cost |
Higher (due to microalloying) |
Lower (simpler composition) |
Gangsteel supplies S355N and S355J2+N:
Contact us for en 10025 3 s355n normalized structural steel plate.
What is the main difference in S355N vs S355J2+N?
S355N is a low-alloy, normalized steel with microalloying for enhanced toughness, while S355J2+N is a non-alloy, normalized steel for cost-effective general construction.
How do S355N and S355J2+N toughness compare?
Both offer ≥27 J at -20°C, but S355N’s fine-grain structure and microalloying (Nb, V, Al) provide superior toughness for critical applications.
Which is better for welding, S355N or S355J2+N?
S355J2+N’s simpler composition and lower phosphorus/nitrogen make it slightly easier to weld, though both have low CEV (≤0.43% and ≤0.45%).
What applications suit S355N vs S355J2+N?
S355N is ideal for high-load structures like bridges and cranes; S355J2+N suits general construction and buildings, similar to en 10025 3 s275n normalized structural steel plate.
How do S355N and S355J2+N costs compare?
S355N is 10-20% more expensive than S355J2+N due to microalloying and enhanced toughness.
What certifications support S355N and S355J2+N?
Gangsteel provides both with EN 10204 3.1/3.2, UT testing (EN 10160), and ABS/LR/BV/DNV approvals.
S355N and S355J2+N are high-strength structural steels under EN 10025, both offering 355 MPa yield strength, 470-630 MPa tensile strength, and -20°C toughness (≥27 J).
S355N (EN 10025-3) is a low-alloy, normalized steel with microalloying for enhanced toughness in high-load applications like bridges and cranes, while S355J2+N (EN 10025-2) is a non-alloy, normalized steel for cost-effective general construction.
Gangsteel’s inventory supports thicknesses up to 200 mm (S355N) and 400 mm (S355J2+N), with global delivery in 7-30 days and certifications like EN 10204 3.1/3.2.
S355N excels in critical, high-toughness applications, while S355J2+N offers versatility and lower costs, providing tailored solutions for diverse structural needs.
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