Interactions of hydrogen with the iron and iron carbide interfaces: a ReaxFF molecular dynamics study
Author:
Affiliation:
1. Summer Intern
2. ExxonMobil Research and Engineering
3. Annandale
4. USA
5. Department of Mechanical and Nuclear Engineering
6. The Pennsylvania State University
7. University Park
8. RxFF_Consulting
Abstract
Hydrogen embrittlement (HE) is a well-known material phenomenon that causes significant loss in the mechanical strength of structural iron and often leads to catastrophic failures.
Funder
ExxonMobil Research and Engineering Company
Publisher
Royal Society of Chemistry (RSC)
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://pubs.rsc.org/en/content/articlepdf/2016/CP/C5CP06108C
Reference91 articles.
1. Enhanced Lattice Defect Formation Associated with Hydrogen and Hydrogen Embrittlement under Elastic Stress of a Tempered Martensitic Steel
2. A nanoscale mechanism of hydrogen embrittlement in metals
3. Atomic mechanism and prediction of hydrogen embrittlement in iron
4. S. P. Lynch , Hydrog. Eff. Mater. Behav. Corros. Deform. Interact., 2003, pp. 449–466
5. Y. Fukai , The metal–hydrogen system: basic bulk properties, Springer Science & Business Media, 2006, vol. 21
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