Overview
EN ISO 7539-11:2014 / ISO 7539-11:2013 provides guidance for designing and conducting laboratory tests to evaluate the resistance of metals and alloys to hydrogen embrittlement and hydrogen‑assisted cracking. Adopted by CEN (as EN ISO 7539-11:2014 and transposed nationally, e.g. SIST EN ISO 7539-11:2015), this part of the ISO 7539 series focuses on the key features that affect hydrogen-related cracking rather than prescribing a single test method.
Key topics and requirements
- Scope and purpose: Guidance on factors to consider when planning tests for hydrogen embrittlement and hydrogen‑assisted cracking; not a step‑by‑step method.
- Factors to consider:
- Dynamic plastic straining - role of strain rate, film rupture and dislocation transport in local hydrogen ingress.
- Test time and hydrogen uptake - importance of exposure duration, hydrogen diffusion, and the relationship between uptake and crack location (surface vs. subsurface vs. crack tip).
- Temperature effects - influence on hydrogen trapping, diffusivity, solubility and material ductility.
- Selection of test method:
- Guidance on specimen types, test duration, load form (static, cyclic, strain‑rate), pre‑charging and hydrogen effusivity, and testing of welds.
- Post‑test evaluation: Recommendations for interpreting results and relating laboratory outcomes to likely in‑service behaviour.
- Normative references: Cross‑references to related standards, e.g. ISO 7539‑7 (slow strain rate testing) and ISO 17081 (hydrogen permeation and uptake measurement).
Applications and users
This guideline is valuable for:
- Corrosion and materials engineers assessing susceptibility of steels, stainless alloys and other metals to hydrogen damage.
- Test laboratories designing protocols for hydrogen embrittlement and hydrogen‑assisted cracking evaluation.
- Manufacturers and fabricators (pressure vessels, pipelines, fasteners, weldments) performing material qualification and failure analysis.
- Asset owners and operators implementing cathodic protection, coatings or weld control to mitigate hydrogen‑induced failures.
- Standards developers and researchers developing or comparing test methods and interpreting hydrogen uptake data.
Practical applications include materials selection, component qualification, weld procedure validation, lifetime assessment and root‑cause analysis of hydrogen‑related failures.
Related standards
- ISO 7539 series (Parts 1–9, 11) - stress corrosion testing methods and specimen preparation.
- ISO 7539‑7 - slow strain rate testing.
- ISO 17081 - hydrogen permeation and hydrogen uptake measurement.
Keywords: hydrogen embrittlement, hydrogen-assisted cracking, stress corrosion cracking, ISO 7539-11, EN ISO 7539-11, hydrogen uptake, test guidelines, hydrogen permeation, weld testing.