Material system and composition characteristics
- Core grades:
- C series: such as C-276 (Ni-Cr-Mo-W), C-22, resistant to oxidizing/reducing acid and chloride ion corrosion;
- B series: such as B-3 (Ni-Mo), focusing on resistance to non-oxidizing acids such as hydrochloric acid and sulfuric acid;
- G series: such as G-35 (Ni-Cr-Mo-Cu), resistant to phosphoric acid and fluorine-containing media corrosion.
- Composition advantages:
- C-276 contains 16% Mo + 5% W, and has outstanding resistance to wet chlorine and hypochlorite pitting corrosion;
- B-3 has a 28% Mo content and is resistant to 70% hydrochloric acid corrosion at room temperature.
Performance advantages
1. Corrosion resistance
- Strong corrosive media resistance:
- Resistance to boiling 65% nitric acid and 50% sulfuric acid corrosion rate <0.1mm/year;
- Stress corrosion cracking (SCC) resistance in seawater, salt spray and Cl⁻-containing media, pitting potential >1.2V (vs SCE).
2. Mechanical and processing properties
- High strength and toughness:
- Room temperature tensile strength ≥730MPa, elongation ≥40%, can be cold-bent;
- Excellent oxidation resistance at high temperature (500℃~1000℃), C-276 weight gain in air oxidation at 1200℃ <0.5mg/cm².
- Processing adaptability:
- Cold-rolled hardness ≤220HB, can be stamped, coiled or precision sheared, suitable for manufacturing complex thin-walled parts;
- Good weldability, can be welded by argon arc welding (TIG), no risk of intergranular corrosion after welding
Specifications and manufacturing process
1. Size range
- Thickness: 0.05mm~3mm (foil to strip);
- Width: 5mm~600mm, length is divided into coils as needed (maximum coil weight can reach 2000kg);
- Surface state: cold-rolled annealing (2B), bright annealing (BA), mirror polishing, roughness Ra≤0.8μm.
2. Production process
- Smelting: vacuum induction furnace (VIM) + electroslag remelting (ESR), control S, P impurities ≤0.01%;
- Rolling: precision rolling on multi-roll cold rolling mill, solution treatment at 1150℃~1200℃, grain refinement and stress elimination;
- Inspection: ultrasonic flaw detection (UT), intergranular corrosion test (ASTM G28), thickness tolerance control (±0.01mm).
3. Implementation standards
- American standard: ASTM B575, ASME SB-575;
- National standard: GB/T 21433 (corrosion-resistant alloy strip).
Application scenarios
1. Chemical and petrochemical
- Sealing gasket (C-276 strip): used for pipe flange sealing containing hydrochloric acid and chlorine;
- Catalyst mesh belt (C-22 strip): resistant to corrosion by strong acid catalytic reaction media;
- Bellows (B-3 strip): resistant to medium erosion in sulfuric acid alkylation units.
2. Electronics and semiconductors
- Chip packaging frame (C-276 strip): resistant to corrosion by etching solutions (such as hydrofluoric acid), stable conductivity;
- Battery electrode coating: resistant to electrolyte corrosion, improving the life of energy storage equipment.
3. Energy and Environmental Protection
- Flue Gas Desulfurization (FGD) Device Filter: Resistant to Wet SO₂+Cl⁻ Corrosion;
- Nuclear Waste Treatment Container Coating (C-276 Tape): Anti-radiation and Acidic Medium Penetration;
- Geothermal Wellhead Sealing Tape: Resistant to H₂S and CO₂ Fluids Above 200°C.
4. Precision Instruments
- Sensor Diaphragm (C-22 Tape): Maintains Dimensional Stability in Strong Acid and Alkaline Environments;
- Medical Device Components: Resistant to Body Fluid Corrosion and Meets Biocompatibility Requirements (such as Implantable Device Seals).
Product Advantages
Hastelloy Strip is characterized by "ultra-thin specifications + high-precision processing". It can replace stainless steel in extremely corrosive environments and can achieve micron-level thickness
control through precision rolling. Its rolled form facilitates automated production and is suitable for scenes such as sealing, coating, and electronic components. It is a key basic material in the field
of high-end corrosion resistance.
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