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Hastelloy C-276 vs Hastelloy C-22: Corrosion Resistance, Welding & Chemical Applications | Hangbo Alloy

Detailed comparison of Hastelloy C-276 (UNS N10276) and Hastelloy C-22 (UNS N06022): chemical composition, crevice corrosion resistance (CCT), wet chlorine resistance, weldability, PREN, ASTM standards, and selection guide for chemical processing, FGD, and pharmaceutical industries.

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Overview

Hastelloy C-276 (UNS N10276) and Hastelloy C-22 (UNS N06022) are both nickel-chromium-molybdenum corrosion-resistant alloys developed for the most aggressive chemical environments. While C-276 has been the industry standard for decades, C-22 represents a metallurgical evolution with higher chromium and optimized tungsten content, offering superior performance in oxidizing chloride media and crevice corrosion conditions.

Chemical Composition

ElementHastelloy C-276 (N10276)Hastelloy C-22 (N06022)
Nickel (Ni)≥ 57% (Balance)≥ 56% (Balance)
Chromium (Cr)14.5–16.5%20.0–22.5%
Molybdenum (Mo)15.0–17.0%12.5–14.5%
Tungsten (W)3.0–4.5%2.5–3.5%
Iron (Fe)4.0–7.0%2.0–6.0%
Carbon (C)≤ 0.01%≤ 0.01%
Density8.89 g/cm³8.61 g/cm³

The critical difference: C-22 contains significantly more chromium (+6%) and less molybdenum (−3%), shifting its corrosion optimum from reducing to oxidizing chloride environments.

Crevice Corrosion — The CCT Advantage

Hastelloy C-22 significantly outperforms C-276 in crevice corrosion resistance per ASTM G48 testing:

  • C-22 CCT (Critical Crevice Temperature): ≈ 120°C
  • C-276 CCT: ≈ 85°C

The 35°C advantage is attributed to C-22's higher chromium content, which forms a more stable and repairable Cr₂O₃ passive film in tight crevices and under deposits.

Wet Chlorine Performance

Hastelloy C-22 demonstrates superior resistance in wet chlorine (Cl₂) and hypochlorous acid (HClO) environments. The higher chromium content (22% vs 16%) forms a more stable passive oxide layer in oxidizing chloride media. C-276 remains excellent in reducing chloride environments (HCl), but C-22 extends performance into the oxidizing chloride regime.

ASTM Product Standards

Product FormC-276C-22
Sheet/PlateASTM B575
Seamless TubeASTM B622
Welded TubeASTM B619
BarASTM B574
Russian AnalogХН65МВУ (NS3304)ХН70МВ-ВИ (NS3308)

Weldability

Both alloys exhibit excellent weldability without post-weld heat treatment requirements. Their ultra-low carbon content (≤ 0.01%) virtually eliminates carbide precipitation in the HAZ.

  • C-276: ERNiCrMo-4 filler metal
  • C-22: ERNiCrMo-10 filler metal

C-22 welded joints generally show better corrosion resistance in the HAZ — ASTM G28A tests show corrosion rates < 0.05 mm/year for as-welded C-22 versus < 0.10 mm/year for C-276.

Maximum Service Temperature

For corrosion service, both alloys are recommended to 400°C for continuous operation. Above 600°C, secondary phase precipitation (μ-phase, P-phase) begins, degrading corrosion resistance. For high-temperature strength applications, C-276 can operate to 1090°C in oxidizing conditions, though corrosion resistance degrades.

Cost Comparison

Hastelloy C-22 is typically 15–25% more expensive than C-276 due to higher chromium (22% vs 16%) and tungsten optimization. However, total cost of ownership may favor C-22 in wet chlorine and high-temperature crevice conditions due to longer service life and fewer replacements.

Selection Guide

  • Reducing acid service (HCl)? → Either, C-276 marginally better
  • Wet chlorine, hypochlorite, oxidizing chlorides? → C-22 (higher Cr)
  • Tight crevice, under-deposit conditions? → C-22 (CCT ~120°C)
  • Weld overlay on dissimilar metals? → C-276 (traditional choice)
  • General chemical plant, both reducing and oxidizing? → C-22 (wider envelope)