Overview
ISO 17864:2005 - "Corrosion of metals and alloys - Determination of the critical pitting temperature under potentiostatic control" specifies a rapid electrochemical test method to determine the critical pitting temperature (CPT) of stainless steels (austenitic, ferritic/austenitic, ferritic). The method uses potentiostatic control to heat a specimen in a defined chloride-containing environment while monitoring current. The CPT reported by this standard is a relative performance index for comparing stainless-steel grades and is not intended to predict the exact temperature for pitting in service.
Key topics and technical requirements
- Test principle: Increase specimen surface temperature at a controlled ramp rate while maintaining a fixed anodic potential (potentiostatic control). CPT is the specimen temperature at which current density exceeds a specified value for 60 s (to distinguish stable pitting from metastable events).
- Apparatus and instrumentation:
- Potentiostat capable of ±1 mV potential control.
- High-input-impedance potential measurement (sensitivity ≈1 mV).
- Current measurement accuracy within 2%.
- Temperature controller able to heat/cool the test solution and control specimen heating from 0 °C to 100 °C (average specimen rate within ±30% over 10 °C ranges).
- Temperature measurement accuracy for solution: ±0.4 °C; specimen calibration accuracy: ±1.0 °C.
- Cell and electrodes:
- Luggin capillary with external reference electrode (e.g., Ag/AgCl or SCE - potentials referenced in Annex C).
- Auxiliary (counter) electrode inert and at least equal area to specimen (Pt commonly used).
- Test cell materials inert to solution (glass, PTFE, polycarbonate acceptable).
- Solution volume to specimen area ratio ≥ 100 ml/cm².
- Specimen and preparation:
- Minimum exposed area: 1 cm²; reproducible surface finish; standardize elapsed time between grinding and immersion (≥24 h often used).
- Solution prepared from reagent-grade chemicals and high-purity water.
- Calibration & procedure:
- Calibrate specimen temperature vs. bulk solution temperature using a thermocouple placed <1 mm from specimen surface and linear regression.
- Initial temperature and ramp selection depend on expected CPT (<40 °C or >40 °C); record open-circuit potential before applying the test potential.
- Limitations: CPT obtained is method-specific and comparative; it does not directly predict in-service pitting onset.
Applications - who uses ISO 17864
- Corrosion testing laboratories and QA/QC labs for material comparison.
- R&D and product development teams assessing stainless-steel grades and surface treatments.
- Material engineers and specifiers selecting alloys for chloride-bearing environments.
- Manufacturers of stainless steel, chemical processing, marine and oil & gas industries for comparative performance data.
Related standards
- ISO 8044:1999 - Corrosion of metals and alloys - Basic terms and definitions (normative).
- ASTM G150 - Standard test method for electrochemical critical pitting temperature testing of stainless steels (early related methodology).
Keywords: ISO 17864, critical pitting temperature, CPT test, potentiostatic control, corrosion testing, stainless steel pitting, electrochemical testing, Luggin capillary, potentiostat, ASTM G150.