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9780901716675

Hydrogen Transport and Cracking in Metals: Proceedings of a Conference Held at the National Physical Laboratory, Teddington, UK, 13-14 April 1994

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  • ISBN13:

    9780901716675

  • ISBN10:

    0901716677

  • Format: Hardcover
  • Copyright: 1995-03-01
  • Publisher: CRC Press

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Summary

The increasing economic pressure to reduce over-design and to extend service life while maintaining acceptable safety margins demands increased reliability in prediction of the performance and lifetime of fabricated structures, components such as valves, and other equipment exposed to hostile environments. Environment-assisted cracking of metals due to absorbed hydrogen has been a major cause of failure of components, structures, pipelines and pressure vessels with sometimes catastrophic results.
This volume is based on a conference held at the National Physical Laboratory, Teddington, UK on 13-14 April 1994. It summarises the extensive research undertaken in Europe to quantify hydrogen uptake and transport in metals in laboratory and field situations and to improve understanding and prediction of cracking in service.

Table of Contents

Foreword
Hydrogen Cracking and its Mitigation in the Petroleum Industryp. 1
The Significance of Hydrogen on the Welding and Weldability of Duplex and Super Duplex Stainless Steels - A Reviewp. 9
Experimental Investigation of the Role of Hydrogen in Stress Corrosion Cracking of Duplex Stainless Steelsp. 17
Influence of Cathodic and Corrosive Hydrogen on the Cracking Behaviour of Austenitic Iron and Nickel Base Alloysp. 27
Influence of Surface Defects on Hydrogen Effects During Stress Corrosion and Corrosion Fatiguep. 38
The Influence of Cathodic Overpotential on Microstructural and Physically-Small Crack Growthp. 50
Predicting Hydrogen Induced Crack Growth Rates in Pipelines and Pressure Vesselsp. 62
Stress Corrosion Cracking of a Cathodically Charged Structural Steelp. 77
Time-Dependent Factors in the Corrosion Fatigue Testing of Cathodically Protected Low Alloy Steelsp. 88
Mechanistic Aspects of Hydrogen Cracking Process in High Strength Steelp. 95
Some Considerations on the EAC Mechanisms during Crack Propagation under Monotonic Loadingp. 103
Acoustic Emission during Hydrogen Charging and Stress Corrosion Crackingp. 113
Chloride Assisted Cracking in Blade Steel Material - the OCP Analysisp. 123
Standardisation of Hydrogen Permeation Measurement by the Electrochemical Techniquep. 129
Surface Phenomena on Pure Iron during Electrochemical Permeation Testsp. 142
Palladium as a Catalyst of Hydrogen Oxidationp. 155
Measurement of Effluent Hydrogen in Pressure Vessel and Linepipe Steelsp. 161
Reliability of Clamp-on Sensors for Hydrogen Permeation Measurementsp. 172
Hydrogen Concentration Measurements Using a Gel-Filled Electrochemical Probep. 187
Methods of Hydrogen Uptake Measurements by Electrochemical Permeation Test on Low Alloy Steelsp. 204
The Effect of the Nitrides and Carbides of V, Nb and Ti on the Diffusion and Dissolution of Hydrogen in Ironp. 216
Hydrogen Diffusion and Trapping in Cr-Mo Steels for Hydrotreating Reactorsp. 227
A Study of Hydrogen Permeation on API X65 TMCP Steel Under Stress Conditionsp. 240
The Influence of Pressure on Hydrogen Permeation and Hydrogen Embrittlement of Higher Strength Steelsp. 253
Hydrogen Transport in SAF2205 and SAF2507 Duplex Stainless Steelsp. 268
Hydrogen Permeation Measurements in Aluminium Alloy Foilsp. 280
Laboratory Testing of Hydrogen Permeation in Biologically Active Seawaterp. 289
Measurements of Hydrogen Diffusion through Cathodically Protected Steel in Sour Environmentsp. 299
Generalised Modelling of Hydrogen Diffusion and Trappingp. 312
Internal Friction in Hydrogen-Charged CrNi and CrNiMn Austenitic Stainless Steelsp. 321
Subject Indexp. 337
Author Indexp. 343
Table of Contents provided by Blackwell. All Rights Reserved.

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