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Cold Rolled 436L Stainless Steel Sheet 0.5 - 3.0mm Thickness For High-Temperature Environments
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x제품 상세 정보
| 제품 | 스테인레스 스틸 시트 | 등급 | 436L |
|---|---|---|---|
| 두께 | 0.5 - 3.0mm | 기술 | 콜드 롤 |
| 너비 | 1219 밀리미터 | 표면 | 2d |
| 기준 | ASTM GB JIS EN DIN | MOQ | 1톤 |
제품 설명
Cold Rolled 436L Stainless Steel Sheet 0.5 - 3.0mm Thickness For High-Temperature Environments
Stainless Steel Plate Specifications
| Name | 436L 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,415,416,420,430,431,436L.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,2D,NO.1, BA, No.4, 8k, Brushed,Hairline,PVD Coating,Sandblasted |
| Service | Laser Cutting, Bending |
| Sample | Available |
Cold Rolled 436L Stainless Steel Sheet (0.5–3.0mm Thickness) – Engineered for High-Temperature Environments
In industries where performance under thermal stress is non-negotiable—such as automotive exhaust systems, industrial heat exchangers, and energy-efficient appliances—material selection directly impacts safety, longevity, and operational efficiency. Cold rolled 436L stainless steel sheet, with a precision thickness range of 0.5 mm to 3.0 mm, offers an optimal balance of high-temperature stability, corrosion resistance, formability, and cost-effectiveness. This advanced ferritic stainless steel is specifically engineered for components exposed to prolonged elevated temperatures and aggressive environmental conditions.
Manufactured to meet global standards including ASTM A240, JIS G 4305 (SUS436L), and GB/T 4239, cold rolled 436L delivers superior surface finish, tight dimensional tolerances, and consistent mechanical properties—making it ideal for high-precision industrial and automotive applications.
Why Cold Rolled 436L Excels in High-Temperature Service
436L is a low-carbon, titanium-stabilized ferritic stainless steel enhanced with molybdenum (Mo) to boost resistance against oxidation and localized corrosion. The “L” denotes ultra-low carbon content (≤0.03%), which—combined with titanium stabilization—prevents chromium carbide precipitation during welding or exposure to temperatures between 425°C and 815°C, a range where many stainless steels suffer from sensitization and intergranular corrosion.
The cold rolling process further refines the grain structure, resulting in:
- Improved surface smoothness and reflectivity
- Higher strength and hardness compared to hot-rolled counterparts
- Enhanced flatness and uniform thickness (critical for stamping and deep-drawing)
- Better control over final mechanical properties
These attributes make cold rolled 436L particularly suited for thin-gauge components that must endure repeated thermal cycling without warping, cracking, or degrading.
Key Performance Advantages
| Feature | Benefit in High-Temperature Applications |
|---|---|
| Continuous Use up to 700°C (1292°F) | Maintains structural integrity in exhaust manifolds, catalytic converters, and boiler housings |
| Molybdenum (0.75–1.25%) | Resists pitting from road salts, acidic condensates, and sulfur compounds |
| Titanium Stabilization | Eliminates weld decay; ensures corrosion resistance in heat-affected zones |
| Low Thermal Expansion | Reduces thermal stress and distortion during heating/cooling cycles |
| High Thermal Conductivity (~26 W/m·K) | Promotes efficient heat dissipation in heat exchangers and mufflers |
| Nickel-Free Composition | Cost-stable alternative to austenitic grades like 304/316 |
Typical Industrial Applications
- Automotive: Exhaust pipes, resonators, EGR tubes, catalytic converter shells
- HVAC & Appliances: Oven liners, dishwasher interiors, dryer drums
- Energy: Flue gas ducts, solar thermal collectors, biomass boiler components
- Industrial Equipment: Heat shields, furnace parts, chemical processing trays
Its combination of thin-gauge manufacturability and high-temperature resilience allows engineers to design lighter, more compact, and fuel-efficient systems without compromising durability.
Chemical Composition (Weight % – Typical for Cold Rolled 436L)
| Element | Content (%) | Role |
|---|---|---|
| Carbon (C) | ≤ 0.03 | Prevents sensitization during welding |
| Chromium (Cr) | 16.0–18.0 | Forms protective Cr₂O₃ oxide layer |
| Molybdenum (Mo) | 0.75–1.25 | Enhances pitting/crevice corrosion resistance |
| Titanium (Ti) | ≥ 4×(C + N) | Stabilizes carbon/nitrogen; improves weld integrity |
| Manganese (Mn) | ≤ 1.0 | Aids hot workability |
| Silicon (Si) | ≤ 1.0 | Improves scale resistance at high temps |
| Phosphorus (P) | ≤ 0.04 | Controlled to avoid embrittlement |
| Sulfur (S) | ≤ 0.03 | Ensures good surface quality and ductility |
| Iron (Fe) | Balance | Base metal |
Note: Exact composition may vary slightly per specification (e.g., JIS vs. ASTM).
Mechanical & Physical Properties (Annealed Condition)
| Property | Typical Value |
|---|---|
| Tensile Strength | 450–600 MPa |
| Yield Strength (0.2% offset) | 250–400 MPa |
| Elongation | 25–30% |
| Hardness (HRB) | ≤ 85 |
| Density | 7.70 g/cm³ |
| Thermal Conductivity (100°C) | ~26 W/m·K |
| Coefficient of Thermal Expansion (20–100°C) | 10.4 × 10⁻⁶ /°C |
| Electrical Resistivity | ~0.60 μΩ·m |
These properties ensure excellent formability for complex shapes while maintaining strength after fabrication.
Product Specifications: Cold Rolled 436L Sheet
| Parameter | Details |
|---|---|
| Thickness Range | 0.5 mm – 3.0 mm (custom tolerances ±0.02 mm available) |
| Width | 600 mm – 1500 mm (standard); up to 2000 mm on request |
| Length | Coil or cut-to-length (1000–6000 mm) |
| Surface Finish | 2B (most common), BA (Bright Annealed), 2D, Hairline, No.4 |
| Edge Type | Slit edge, deburred, or as-rolled |
| Standards Compliance | ASTM A240, JIS G 4305, EN 10088-2, GB/T 4239 |
| Packaging | Interleaved paper + plastic film + steel strapping; VCI for export |
The 2B finish—achieved through cold rolling, annealing, and light skin-pass rolling—offers a smooth, semi-reflective surface ideal for painting, coating, or direct use in visible components.
Comparison with Alternative Grades in High-Temp Service
| Grade | Max Continuous Temp | Corrosion Resistance | Weldability | Cost | Magnetic? |
|---|---|---|---|---|---|
| 436L (Cold Rolled) | 700°C | High (Mo + Ti) | Excellent (stabilized) | ** |
Quality Assurance & Processing Support
Reputable suppliers provide:
- Mill Test Reports (EN 10204 3.1)
- Salt spray test data (ASTM B117)
- Intergranular corrosion testing (ASTM A262 Practice E)
- Flatness certification (<2 mm/m deviation)
- Technical support for laser cutting, stamping, bending, and welding
TISCO, Acerinox, Nippon Steel, and other leading mills produce cold rolled 436L with strict process controls to ensure batch-to-batch consistency.
Sustainability & Lifecycle Value
- 100% recyclable with high scrap recovery rates
- Lower embodied energy than nickel-containing grades
- Extended service life reduces replacement frequency and maintenance costs
- Supports compliance with EU ELV, RoHS, and ISO 14001 environmental standards
By choosing cold rolled 436L, manufacturers contribute to greener product lifecycles without sacrificing performance.
For engineers and procurement professionals seeking a high-performance, cost-efficient solution for high-temperature environments, cold rolled 436L stainless steel sheet (0.5–3.0mm) stands out as a technically superior and economically smart choice. Its unique blend of titanium stabilization, molybdenum-enhanced corrosion resistance, and cold-rolled dimensional accuracy ensures reliable operation in the most thermally demanding applications.
Whether you're producing automotive exhaust systems, industrial burners, or energy-efficient appliances, specifying cold rolled 436L delivers durability, compliance, and long-term value.
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