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BS ISO 22858:2020

$142.49

Corrosion of metals and alloys. Electrochemical measurements. Test method for monitoring atmospheric corrosion

Published By Publication Date Number of Pages
BSI 2020 32
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This document specifies a test method for atmospheric corrosion measurements, using two-electrode electrochemical sensors.

It is applicable to measurements of the corrosion rate of uncoupled metal surfaces (i.e. “free” corrosion rate), galvanic corrosion rate, conductance of thin film solutions and barrier properties of organic coatings. It specifies electrochemical sensors that are used with or without organic coatings. The sensors are applicable to corrosion measurements made in laboratory test chambers, outdoor exposure sites and service environments.

PDF Catalog

PDF Pages PDF Title
2 National foreword
7 Foreword
8 Introduction
9 1 Scope
2 Normative references
3 Terms and definitions
10 4 Summary of sensors
11 5 Free corrosion current sensor
5.1 Free corrosion current sensor description
5.2 Sensor geometry
5.3 Uniform corrosion current measurement
5.3.1 Use and conditions for uniform corrosion measurements
5.3.2 Method 1 — Sine wave excitation
5.3.3 Method 2 — Triangle wave excitation
12 5.3.4 Method 3 — Potential step excitation
5.4 Localized corrosion current measurement
5.5 Free corrosion rate and total free corrosion for sensors without coatings
5.5.1 Free corrosion current and current density
5.5.2 Free corrosion penetration rate
13 5.5.3 Free corrosion mass loss rate
5.5.4 Total free corrosion mass loss and corrosion penetration
5.6 Free corrosion current and total charge for sensors with coatings
5.6.1 Use and conditions for free corrosion measurements with coatings
5.6.2 Free corrosion current for a coated sensor
5.6.3 Free corrosion total charge for a coated sensor
5.7 Free corrosion sensor preparation
5.7.1 Considerations for free corrosion sensor surface preparation
14 5.7.2 Free corrosion sensors without coatings
5.7.3 Free corrosion sensors with coatings and surface treatments
5.8 Specification and inspection — Free corrosion sensors
5.8.1 Visual inspection
15 5.8.2 Sensor range and span
5.8.3 Electrical verification tests
5.8.4 Corrosion verification tests
6 Galvanic corrosion current sensor
6.1 Galvanic corrosion current sensor description
6.2 Sensor geometry
16 6.3 Galvanic corrosion current measurements
6.3.1 Methods for galvanic corrosion current measurement
6.3.2 Method 1 — Zero-resistance ammeter
6.3.3 Method 2 — Precision resistor
6.4 Galvanic corrosion rate and total galvanic corrosion without coatings
6.4.1 Galvanic corrosion current
6.4.2 Galvanic corrosion rate for mass loss and corrosion penetration
6.4.3 Total galvanic corrosion mass loss and corrosion penetration
17 6.5 Galvanic corrosion rate and total galvanic corrosion with coatings
6.5.1 Use and conditions for galvanic corrosion measurements with coatings
6.5.2 Galvanic mass loss corrosion rate for a coated sensor
6.5.3 Total galvanic mass loss for a coated sensor
6.6 Galvanic corrosion sensor preparation
6.6.1 Considerations for galvanic corrosion sensor preparation
6.6.2 Galvanic corrosion sensors without coatings
6.6.3 Galvanic corrosion sensors with coatings and surface treatments
6.7 Specification and inspection — Galvanic corrosion sensors
6.7.1 Visual, span and range inspection
6.7.2 Electrical verification tests
18 6.7.3 Corrosion verification tests
7 Thin film conductance sensors
7.1 Conductance sensor description
7.2 Sensor geometry
7.3 Surface conductance measurement method
7.4 Surface conductance sensor preparation
7.5 Specification and inspection — Conductance sensor
7.5.1 Visual, span and range inspection
19 7.5.2 Electrical verification tests
7.5.3 Conductive solution verification tests
8 Coating barrier property sensors
8.1 Coating barrier property sensor description
8.2 Coating barrier property measurements
8.3 Coating barrier property sensor preparation
8.3.1 Sensor preparation for coating
20 8.3.2 Coating test condition
8.4 Specification and inspection — Coating barrier property sensor
8.4.1 Visual, span and range inspection
8.4.2 Electrical measurements
8.4.3 Sensing system impedance verification tests
9 Atmospheric testing with electrochemical sensors
9.1 Types of atmospheric tests
9.2 Test arrangement
9.3 Test duration
9.4 Sensor selection
21 9.5 Sampling time interval
9.6 Date and time information
10 Test report
10.1 Test report guidance
10.2 Sensor information
10.3 Surface preparation
10.4 Test description
10.5 Sensor inspection
10.6 Data storage
23 Annex A (informative) Example images of electrochemical sensors
25 Annex B (informative) Equivalent circuit analysis for two-electrode measurements
27 Annex C (informative) Example of reporting information
29 Bibliography
BS ISO 22858:2020
$142.49