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Introduction: What JIS G3101 Defines

JIS G3101 is the Japanese Industrial Standard for rolled steels for general structure — the standard behind the ubiquitous SS400 grade found on drawings across Asia, the Middle East, and Japanese-funded projects worldwide. Unlike European and American structural standards that organize grades by yield strength, JIS G3101 classifies by tensile strength: SS330, SS400, SS490, and SS540 — the number being the minimum tensile strength in MPa.

SS400 remains one of the highest-volume steel grades traded internationally. This guide covers the standard’s grade system, chemical and mechanical requirements, testing rules, equivalents across other standards, and the buying details that trip up export purchasers — from mill certificate formats to the no-suffix impact testing philosophy.

SS400 structural steel plates stacked in warehouse with stencil markings

The Grade System: SS330 to SS540

Grade Min Tensile (MPa) Min Yield (≤ 16 mm) Typical Products
SS330 330 – 430 ≥ 205 MPa Thin sheet, light sections, furniture tube
SS400 400 – 510 ≥ 245 MPa Plates, sections, bars — the workhorse
SS490 490 – 610 ≥ 285 MPa Heavy sections, higher-strength structural parts
SS540 ≥ 540 ≥ 400 MPa Heavy structural members, thick sections

SS400 is the volume grade — roughly the position A36 holds in the US and S235JR in Europe. When a Japanese standard drawing says “SS400 t=9,” the mill must deliver a plate with tensile between 400 – 510 MPa and yield at least 245 MPa in the thin bands.

Chemical Requirements: Deliberately Loose

Element SS400 Limit (%) Note
Carbon (C) Not specified for rolled products ≤ 50 mm* Controlled indirectly via tensile/CE for weldability
Manganese (Mn) Not individually specified*
Phosphorus (P) ≤ 0.050 Higher than EN/ASTM structural grades
Sulfur (S) ≤ 0.050 Higher than EN/ASTM structural grades

* JIS G3101 does not set fixed C/Mn windows for as-rolled general structure steel — mills optimize chemistry to hit the mechanical table. This is the key philosophical difference from EN 10025 and ASTM: JIS G3101 is a mechanical-property standard, not a chemistry standard.

Buyer consequence 1: the P/S limits (0.050%) are looser than S235JR (0.035%) or A36 (0.035% P, 0.035% S on profiles). If your project spec carries EN or ASTM chemistry limits, do not order “SS400 equivalent” — order the EN/ASTM grade itself.

Buyer consequence 2: for welded structures, specify SM400/SM490 (JIS G3106, rolled steel for welded structure) instead — that standard adds carbon equivalence control (CE ≤ 0.36 – 0.46 range depending on thickness) precisely because SS400’s unspecified chemistry makes weldability unguaranteed.

Mechanical Properties in Detail

Property SS400 Requirement
Tensile strength 400 – 510 MPa
Yield (plate/bar ≤ 16 mm) ≥ 245 MPa
Yield (16 – 40 mm) ≥ 235 MPa
Yield (40 – 100 mm) ≥ 215 – 225 MPa (by thickness band)
Elongation (plates, t ≤ 5 mm) ≥ 13 – 17% (by thickness)
Elongation (plates, t > 5 mm) ≥ 17 – 21% (by thickness)
Bend test 180° bend, 1.5D mandrel (plates) — no cracks

Pendulum impact testing machine striking Charpy steel specimen

Impact Testing: The Quiet Gap vs Western Standards

JIS G3101 does not require Charpy impact testing for SS400 — the grades are intended for general structures where dynamic toughness is not a design criterion. There is no JR/J0/J2-style suffix system.

This is the single most important technical difference from S235JR (27 J at +20°C) and A36 (CVN by supplementary requirement). For projects in seismic zones, cold climates, or with dynamic loading, engineers typically either:

Mill test certificate beside steel plate with caliper for verification

Equivalents: The Comparison Buyers Actually Need

Standard Closest Grade Key Differences vs SS400
ASTM A36 A36 Yield 250 MPa basis; CVN optional; P/S ≤ 0.035/0.035
EN 10025-2 S235JR (S275 closer on strength) Fixed chemistry, impact tested, tighter P/S
GB/T 700 Q235B Impact 27 J at +20°C; chemistry specified
GB/T 1591 Q235B is the practical substitute; Q345 is a strength class above
ISO 630 S235 / E235 Impact tested, chemistry specified

Strength honesty: SS400’s 245 MPa yield sits between S235 (225 – 235 MPa) and S275 (265 – 275 MPa). “SS400 = A36” is the common commercial shorthand and works for most static structures; “SS400 = S235JR” is common but quietly loses yield strength — engineers reconciling European designs should check the calculations, not just the equivalence tables.

Product Forms and Dimensional Standards

Testing and Certification: What to Demand for Export

Where SS400 Shines — and Where It Doesn’t

Use Case Verdict
Static structures in temperate climates (frames, supports, platforms) Excellent — cheapest option that meets strength
Japanese-standard projects and documentation Correct default — matches drawing callouts
Welded structural frames with fatigue loading Use SM490 / SN490 instead — guaranteed weldability
Cold climate or impact-loaded structures Insufficient — need impact-tested grade
Pressure equipment Not applicable — use JIS G3103 / ASME materials

Frequently Asked Questions

1. Is SS400 equivalent to A36?

For most static structural purposes, yes — comparable yield and tensile bands. A36 specifies chemistry (C ≤ 0.25 – 0.29% by product) while SS400 does not, and A36’s elongation rules differ. For export documentation requiring strict equivalence, request mill testing to both standards or use the drawing-specified grade.

2. What does “SS” and “400” mean?

SS = Steel Structure (general structure rolled steel); 400 = minimum tensile strength in MPa. The numbering follows tensile, not yield — unlike Q235/S235/A36 systems.

3. Can SS400 be welded?

Yes, and it welds routinely in practice, but the standard does not guarantee weldability because chemistry is unspecified. For code-governed welded structures, use JIS G3106 SM400/SM490 which adds carbon-equivalent control.

4. Why is there no impact suffix like S235JR?

G3101 is a general-structure standard without Charpy requirements. If your application needs toughness documentation, order impact testing as a special requirement or move to SN400 (G3136) or an EN/ASTM grade.

5. Is Chinese-made SS400 acceptable on Japanese-standard projects?

Routinely yes — Chinese mills produce SS400 to JIS dimensional and mechanical requirements with EN 10204 3.1 certification and can add CVN or chemistry tightening on request. Confirm the project’s inspection protocol (some Japanese clients require specific witness testing) before placing the order.

Conclusion

JIS G3101 SS400 is a mechanical-property workhorse: strong enough, cheap, available in every product form, and accepted across Japanese-standard markets. Its philosophy — properties first, chemistry unspecified, no impact testing — is exactly right for general structures and exactly wrong for welded, cold-climate, or fatigue-critical work. Buyers who know which side of that line their project sits on will never pay for steel they don’t need, or receive steel their design can’t accept.

Huaxia-Steel supplies SS400 plate, sections, and bars to JIS G3101 with EN 10204 3.1 certification, optional CVN testing, and full chemistry reporting. Send us your drawing callouts and project standard for a compliant quotation within 24 hours.

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