ISO 17081:2014 PDF
Method of measurement of hydrogen permeation and determination of hydrogen uptake and transport in metals by an electrochemical technique
Method of measurement of hydrogen permeation and determination of hydrogen uptake and transport in metals by an electrochemical technique
- Статус документа:
- Действующий
- Формат:
- Электронный (PDF)
- Количество страниц:
- 19
- Дата публикации:
- 10 июня 2014 г.
- Издание:
- ISO IS 17081 edition 2 version 1
- ICS:
- 77.060
ISO 17081:2014 specifies a laboratory method for the measurement of hydrogen permeation and for the determination of hydrogen atom uptake and transport in metals, using an electrochemical technique. The term "metal" as used in ISO 17081:2014 includes alloys. ISO 17081:2014 describes a method for evaluating hydrogen uptake in metals, based on measurement of steady-state hydrogen flux. It also describes a method for determining effective diffusivity of hydrogen atoms in a metal and for distinguishing reversible and irreversible trapping. ISO 17081:2014 gives requirements for the preparation of specimens, control and monitoring of the environmental variables, test procedures and analysis of results. ISO 17081:2014 may be applied, in principle, to all metals for which hydrogen permeation is measurable and the method can be used to rank the relative aggressivity of different environments in terms of the hydrogen uptake of the exposed metal.
Abstract
Overview
ISO 17081:2014 - Method of measurement of hydrogen permeation and determination of hydrogen uptake and transport in metals by an electrochemical technique - specifies a laboratory electrochemical method to measure hydrogen permeation, hydrogen uptake, and hydrogen transport in metals and alloys. The standard describes how to generate hydrogen at a charging face, monitor the oxidation (permeation) current on the opposite face, and analyze the resulting permeation transient to obtain steady-state fluxes and transport properties.
Key topics and technical requirements
- Principle: Hydrogen atoms generated on the charging side diffuse through the metal and are oxidized on the oxidation side. The oxidation (permeation) current is monitored as a function of time.
- Measured outputs: steady-state hydrogen flux (Jss), permeation current, lag time (tlag), and effective diffusivity (Deff). Analysis is based on diffusion theory (Fick’s second law) and transient/permeation-current analysis.
- Trapping: Procedures to distinguish reversible and irreversible hydrogen traps and to evaluate their influence on transport and uptake.
- Specimen preparation: Requirements for sample geometry and orientation (plate or pipe), thickness selection to ensure one-dimensional diffusion, and recommended radius:thickness ratios (e.g., 10:1 recommended; less stringent options when oxidation area is reduced).
- Surface treatments: Use and implications of palladium coatings (can aid gaseous charging and oxidation kinetics but may affect sub-surface concentrations).
- Test environment control: Detailed requirements for charging environments (aqueous or gaseous), electrode potentials on the oxidation side (to ensure transport-limited oxidation), and monitoring of background currents.
- Apparatus and procedure: Guidance on charging cells, oxidation cells, instrumentation for current/time recording, and analysis of both steady-state and transient data.
- Reporting: Required test report elements including material form, sample orientation, test conditions and environmental variables.
Practical applications and typical users
ISO 17081:2014 is used to:
- Quantify hydrogen uptake and rank the relative aggressivity of environments toward hydrogen absorption.
- Determine hydrogen diffusivity and evaluate susceptibility to hydrogen-assisted damage (e.g., hydrogen embrittlement) in metals and alloys. Typical users include materials engineers, corrosion scientists, failure analysts, laboratory technicians, and R&D teams in sectors developing or qualifying metallic components for hydrogen service (metallurgy, energy/hydrogen systems, transport, pressure equipment).
Related standards
- ISO 17475 - Corrosion of metals and alloys - Electrochemical test methods - Guidelines for potentiostatic and potentiodynamic polarization measurements.
- ISO 17081 was prepared under ISO/TC 156 (Corrosion of metals and alloys).
Keywords: ISO 17081:2014, hydrogen permeation, hydrogen uptake, electrochemical technique, hydrogen transport, permeation current, diffusivity, hydrogen trapping, permeation transient, specimen preparation.
Технические детали
- Технический комитет
- ISO/TC 156 - Corrosion of metals and alloys
- SKU
- ISO 17081:2014
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