An Assessment Of A Micro Mechanic Model Of Hydrogen Induced Stress Corrosion Cracking Based On A Study Of An X65 Line Pipe Steel PDF Download

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An Assessment of a Micro-mechanic Model of Hydrogen-induced Stress Corrosion Cracking, Based on a Study of an X65 Line Pipe Steel

An Assessment of a Micro-mechanic Model of Hydrogen-induced Stress Corrosion Cracking, Based on a Study of an X65 Line Pipe Steel
Author: Ivan S. Cole
Publisher:
Total Pages:
Release: 1994
Genre: Hydrogen
ISBN:

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The susceptibility of an X65 line pipe steel to hydrogen-induced stress corrosion cracking (SCC) is investigated. SCC tests on the steel are carried out in three environments of different aggressivity based on a NACE TM-01-77 solution with dissolved gaseous H2S. The threshold stress intensity factor is calculated for each environment using the multiple specimen technique. The steel is tested in the as-received condition and after homogenisation. Permeation tests are carried out on specimens of the same steel in the same environment. The relationship between threshold stress intensity factor and hydrogen concentration is obtained. The results from these studies are used to generate the parameters in the micro-mechanic model of Akhurst and Baker. The validity and physical significance of the model is assessed.


Applied Mechanics Reviews

Applied Mechanics Reviews
Author:
Publisher:
Total Pages: 1036
Release: 1994
Genre: Mechanics, Applied
ISBN:

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The Engineering Index Annual

The Engineering Index Annual
Author:
Publisher:
Total Pages: 2398
Release: 1994
Genre: Engineering
ISBN:

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Since its creation in 1884, Engineering Index has covered virtually every major engineering innovation from around the world. It serves as the historical record of virtually every major engineering innovation of the 20th century. Recent content is a vital resource for current awareness, new production information, technological forecasting and competitive intelligence. The world?s most comprehensive interdisciplinary engineering database, Engineering Index contains over 10.7 million records. Each year, over 500,000 new abstracts are added from over 5,000 scholarly journals, trade magazines, and conference proceedings. Coverage spans over 175 engineering disciplines from over 80 countries. Updated weekly.


Chemical Abstracts

Chemical Abstracts
Author:
Publisher:
Total Pages: 2566
Release: 2002
Genre: Chemistry
ISBN:

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A Study of Hydrogen Enrichment at Pits and Other Surface Discontinuities in Mild Steel and the Contribution to Near-neutral PH Stress Corrosion Cracking

A Study of Hydrogen Enrichment at Pits and Other Surface Discontinuities in Mild Steel and the Contribution to Near-neutral PH Stress Corrosion Cracking
Author: Laura Wall
Publisher:
Total Pages: 191
Release: 2007
Genre:
ISBN:

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The role of hydrogen in the initiation of near-neutral pH stress corrosion cracks was studied. Hydrogen content was measured for X-52 steel in various conditions. The effect of elevated hydrogen concentrations on room temperature creep behaviour of X-52 pipeline steel was investigated experimentally. Extensive finite element modelling of the concentrations and locations of hydrogen around corrosion pits on pressurized line pipe in near-neutral pH solution was completed. The effects of stress and geometry on equilibrium hydrogen concentration were studied. A material model simulating the effects of hydrogen enhanced localized plasticity was used to investigate the role of hydrogen in crack initiation. Throughout the modelling, two distinct hydrogen trapping models were used and compared. In steels, the majority of hydrogen is found to reside in traps at cementite interfaces and grain boundaries, yet related work has found that NNpHSCC proceeds transgranularly through ferrite. Implications for understanding NNpHSCC crack initiation are discussed.


The Kinetic and Mechanical Aspects of Hydrogen-induced Failure in Metals

The Kinetic and Mechanical Aspects of Hydrogen-induced Failure in Metals
Author: Howard G. Nelson
Publisher:
Total Pages: 148
Release: 1972
Genre: Metals
ISBN:

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Premature hydrogen-induced failure observed to occur in many metal systems involves three stages of fracture: (1) crack initiation, (2) stable slow crack growth, and (3) unstable rapid crack growth. The presence of hydrogen at some critical location on the metal surface or within the metal lattice was shown to influence one or both of the first two stages of brittle fracture but has a negligible effect on the unstable rapid crack growth stage. The relative influence of the applied parameters of time, temperature, etc., on the propensity of a metal to exhibit hydrogen induced premature failure was investigated.


Hydrogen Embrittlement and Stress Corrosion Cracking

Hydrogen Embrittlement and Stress Corrosion Cracking
Author: Alexander Robert Troiano
Publisher: ASM International
Total Pages: 356
Release: 1984-01-01
Genre: Technology & Engineering
ISBN: 9781615031788

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Modelling of Hydrogen Assisted Stress Corrosion Cracking

Modelling of Hydrogen Assisted Stress Corrosion Cracking
Author: Nilesh Raykar
Publisher:
Total Pages: 336
Release: 2013
Genre:
ISBN:

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Modelling of hydrogen assisted stress corrosion cracking (HASCC) within the framework of mechanics is very important for its control and avoidance. The main focus of this study is to develop suitable approach for modelling and analysis of stable crack growth through high strength steels under HASCC. A new strategy based on combined analytical/numerical solution and finite element based cohesive zone model (CZM) has been developed. This has helped to couple analysis of hydrogen diffusion and crack growth during HASCC. The strategy has been applied to study crack growth in compact tension (CT) specimens. The solution to diffusion process is obtained through either an analytical or a numerical solution to the governing differential equation. The crack growth is analysed by CZM. For the analytical solution, both one- and two-dimensional approximations of the domain have been considered. The new CZM strategy, termed as hydrogen concentration dependent cohesive zone model (HCD-CZM), has been used for both CT and circumferentially notched tensile (CNT) round specimens. The CNT specimen has been employed for the first time to obtain the fracture toughness data of high strength steel under internal and external supply of hydrogen. The experimental scheme involving CNT specimen under slow strain rate loading is demonstrated as a valid experimental procedure for study of HASCC for high strength steels. Both types of HASCC, internal hydrogen assisted cracking (IHAC) and hydrogen environment assisted cracking (HEAC), are found to induce a proportionate drop in fracture toughness under higher hydrogen concentration near the crack tip. The experimentally obtained lowest fracture toughness data compare favourably with lower range of published threshold values for the similar material. The experimental average crack growth rates too agree with the reported data for the material. For CT specimens, both schemes of analysis of diffusion, excluding or including the effect of hydrostatic stress and plastic strain, predict variation of crack opening displacement with crack growth with good accuracy. Diffusion solution based on one- and two-dimensional analyses do not significantly alter the prediction of crack growth. The effect of hydrostatic stress on the distribution of hydrogen concentration is observed to be significant as long as plastic strain is less than 5%. The study has given rise to an important correlation between hydrogen concentration dependent strength reduction and plastic strain rate. A new modelling technique is presented for the CNT specimen with eccentrically placed ligament using two-dimensional finite element approximations; this has considerably simplified analysis of the problem which otherwise would require a three-dimensional solution. For CNT specimens, the HCD-CZM approach employing both analytical and finite difference based diffusion solutions predicted the critical fracture toughness in agreement with experimental results. In this case too, the inclusion of hydrostatic stress in the diffusion analysis has been found to have not so significant influence on the prediction of experimental observations. The K-resistance curve obtained for the case is included. The proposed HCD-CZM has been found to satisfactorily handle variation in specimen geometry, material and source of hydrogen supply. The thesis is divided into six chapters dealing sequentially with introduction, literature review, experiments with CNT specimen, analysis of CT specimens, modelling of CNT specimens and conclusions.