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High-Temperature Resistant 310S Stainless Steel Sheet Premium Grade for Industrial Applications
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x| 製品 | ステンレス鋼板 | 学年 | 310S / 1.4845 / S31008 |
|---|---|---|---|
| 厚さ | 0.5~80.0mm | 技術 | 冷間圧延、熱間圧延、鍛造 |
| 幅 | 要求として1000mm 1219mm 1500mmまたは習慣 | 表面 | 2B BA No.1 |
| 標準 | ASTM GB JIS EN DIN | MOQ | 1トン |
| ハイライト | 310S stainless steel sheet high-temperature resistant,premium stainless steel plate industrial grade,310S stainless steel plate with warranty |
||
High-Temperature Resistant 310S Stainless Steel Sheet Premium Grade for Industrial Applications
Stainless Steel Sheet Specifications
| Name | 310S stainless steel Plate |
| Our Grade |
200 Series: 201 202 300 Series: 301 304,304L,304H,309S,310S,314,316L,316Ti,316H,316LN,317L,321,329,347 400 Series: 409L,410,410S,416,420,430,431,436L.439,441,443,444,445,446 Super Stainless Steel: 904L,926,254SMO,654SMO,15-5PH,17-4PH,17-7PH.etc Nickel Alloy: C276, C22,G35,Alloy X,Monel 400,K500,Inconel 600,601,617,625,718,Incoloy 800,800H,800HT,825.etc |
| Technique | Hot Rolled, Cold Rolled,Forged |
| Standard | JIS, AISI, ASTM, DIN, TUV, BV, SUS, etc |
| Thickness | 0.1 – 80.0mm |
| Width range | 10mm – 2000mm |
| Length | Customized |
| Finish | 2B, BA, No.4, 8k, Brushed,Hairline,PVD Coating,Sandblasted |
| Service | Laser Cutting, Bending |
| Sample | Available |
High-Temperature Resistant 310S Stainless Steel Sheet – Premium Grade for Demanding Industrial Applications
Product Overview
Engineered for extreme thermal environments, 310S stainless steel sheet is the premium choice for applications requiring exceptional oxidation resistance, structural stability, and long-term performance at elevated temperatures. With a high chromium (25%) and nickel (20%) content—and ultra-low carbon levels (<0.08%)—310S delivers unmatched durability in continuous service up to 1150°C (2100°F) and intermittent exposure beyond 1040°C (1900°F).
Unlike standard austenitic grades such as 304 or 316, 310S (UNS S31008) is specifically formulated for high-temperature industrial processes, including furnace components, heat treatment equipment, exhaust systems, and petrochemical reactors. Its refined microstructure resists embrittlement, scaling, and carburization, ensuring reliability where failure is not an option.
Available in hot-rolled or cold-rolled forms with surface finishes tailored to industrial needs, this premium-grade sheet combines metallurgical excellence with practical fabricability—making it indispensable in aerospace, energy, chemical processing, and advanced manufacturing sectors.
Why 310S? The Science Behind High-Temperature Performance
The “S” in 310S stands for “special” or “stabilized” low carbon, which prevents sensitization (chromium carbide precipitation) during prolonged high-heat exposure. This is critical because sensitization leads to intergranular corrosion and loss of mechanical strength.
Key alloying elements:
- Chromium (24–26%): Forms a dense, self-healing Cr₂O₃ oxide layer that resists oxidation and sulfidation.
- Nickel (19–22%): Stabilizes the austenitic structure, maintaining ductility and toughness at high temperatures.
- Low Carbon (<0.08%): Minimizes carbide formation, preserving corrosion resistance in welded or heat-affected zones.
This composition enables 310S to outperform even 316L and Inconel® alloys in certain oxidizing atmospheres—without the premium cost of nickel-based superalloys.
Key Features & Benefits
| Feature | Benefit |
|---|---|
| Continuous Use up to 1150°C (2100°F) | Ideal for furnaces, kilns, and incinerators |
| Excellent Oxidation Resistance | Forms stable oxide scale; minimal spalling or degradation |
| Resists Carburization & Sulfidation | Performs well in hydrocarbon-rich or sulfur-containing atmospheres |
| Good Creep & Rupture Strength | Maintains load-bearing capacity under prolonged stress at high temps |
| Weldable with Matching Fillers | Can be joined using 310 or 312 electrodes; post-weld annealing rarely needed |
| Non-Magnetic (Annealed State) | Suitable for sensitive instrumentation near high-temp zones |
| Recyclable & Sustainable | Over 70% recycled content; supports circular economy in heavy industry |
Technical Specifications
| Parameter | Value / Standard |
|---|---|
| Material Grade | AISI 310S / UNS S31008 / EN 1.4845 |
| Chemical Composition (wt%) | Cr: 24–26%, Ni: 19–22%, C: ≤0.08%, Mn: ≤2.0%, Si: ≤1.5%, P: ≤0.045%, S: ≤0.030% |
| Common Thickness Range | 0.8 mm to 12.0 mm (cold-rolled); up to 25 mm (hot-rolled) |
| Standard Sheet Sizes | 1000 × 2000 mm, 1219 × 2438 mm (4' × 8'), 1500 × 6000 mm |
| Density | 7.9 g/cm³ |
| Melting Point | 1400–1450°C (2550–2650°F) |
| Thermal Conductivity | 13.6 W/m·K at 100°C |
| Coefficient of Thermal Expansion | 14.4 µm/m·°C (20–100°C) |
| Tensile Strength (RT) | ≥520 MPa |
| Yield Strength (0.2% offset) | ≥205 MPa |
| Elongation | ≥40% |
| Max Service Temperature (Continuous) | 1150°C (2100°F) in air |
| Standards Compliance | ASTM A240, ASME SA-240, EN 10088-2, JIS G 4304 |
Industrial Applications
310S stainless steel sheets are trusted across industries where heat, corrosion, and mechanical stress converge:
| Industry | Typical Applications |
|---|---|
| Heat Treatment | Muffles, retorts, radiant tubes, conveyor belts, baskets |
| Petrochemical & Refining | Cracking tubes, reformer manifolds, flue gas ducts |
| Power Generation | Boiler baffles, superheater supports, biomass combustion liners |
| Cement & Ceramics | Kiln furniture, burner nozzles, saggars |
| Waste Incineration | Grates, afterburner chambers, ash handling systems |
| Aerospace | Jet engine components, exhaust shrouds (non-critical rotating parts) |
| Glass Manufacturing | Forehearth components, stirrers, forming tools |
Surface Finish Options
While aesthetics are secondary in industrial use, surface condition affects performance:
- 2B Finish (Cold-Rolled): Smooth, semi-reflective; standard for most sheet stock.
- No.1 Finish (Hot-Rolled, Annealed & Pickled): Matte, slightly rough; ideal for high-temp forming.
- BA (Bright Annealed): Mirror-like; used when minimal scale formation is critical.
- Custom Finishes: Shot-blasted or grit-blasted surfaces available for enhanced emissivity or bonding.
All finishes maintain the inherent high-temperature resistance of the base alloy.
Fabrication Guidelines
Cutting:
- Plasma, laser, or waterjet cutting preferred.
- Avoid oxy-fuel cutting—can cause localized melting and scale.
Forming:
- Excellent ductility allows cold forming up to moderate radii.
- For severe bends at room temperature, intermediate annealing may be needed.
Welding:
- Use ER310 or ER312 filler metals.
- No preheat required; interpass temperature <150°C.
- Post-weld annealing not necessary due to low carbon content.
Machining:
- Work-hardens rapidly—use rigid setups, sharp tools, and low speeds.
- Coolants recommended to reduce heat buildup.
310S vs. Other High-Temp Alloys
| Material | Max Temp (°C) | Oxidation Resistance | Cost | Key Limitation |
|---|---|---|---|---|
| 310S SS | 1150 | Excellent | $$ | Poor strength above 1000°C vs. superalloys |
| 309S SS | 1000 | Good | $ | Lower Cr/Ni = less protection |
| Inconel 600 | 1150 | Excellent | $$$$ | Very high cost; difficult to machine |
| 316L SS | 870 | Moderate | $ | Fails rapidly above 900°C |
Verdict: 310S offers the best balance of performance, fabricability, and cost for most industrial high-heat applications below 1150°C.
Maintenance & Longevity
In properly selected environments, 310S requires minimal maintenance:
- Periodic inspection for scale buildup or warping.
- Clean with non-chloride detergents if exposed to salts or process residues.
- Avoid thermal shock—gradual heating/cooling extends service life.
With correct application, components last 5–15+ years in continuous high-temperature service.
Sustainability & Compliance
- Fully recyclable with high scrap value.
- RoHS and REACH compliant—no restricted substances.
- Supports ISO 14001 environmental management systems.
- Reduces downtime and replacement frequency—lowering total lifecycle emissions.
Conclusion
High-Temperature Resistant 310S Stainless Steel Sheet is not just another alloy—it’s a mission-critical material engineered for the front lines of industrial heat. From molten glass handling to jet exhaust systems, its ability to resist oxidation, maintain strength, and endure thermal cycling makes it irreplaceable in demanding applications.
Backed by global standards, proven in decades of field use, and supported by full traceability and mill certification, 310S delivers peace of mind where temperature is the ultimate test.
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