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Hydrogen enhanced crack growth in 18 Ni maraging steelsThe kinetics of sustained-load subcritical crack growth for 18 Ni maraging steels in high-purity hydrogen are examined using the crack-tip stress intensity factor K as a measure of crack driving force. Crack growth rate as a function of stress intensity exhibited a clearly defined K-independent stage (Stage II). Crack growth rates in an 18 Ni (grade 250) maraging steel are examined for temperatures from -6 to +100 C. A critical temperature was observed above which crack growth rates became diminishingly small. At lower temperatures the activation energy for Stage II crack growth was found to be 16.7 plus or minus 3.3 kJ/mole. Temperature and hydrogen partial pressure are shown to interact in a complex manner to determine the apparent Kth (stress intensity level below which no observable crack growth occurs) and the crack growth behavior. Comparison of results on '250' and '300' grades of 18 Ni maraging steel indicate a significant influence of alloy composition and/or strength level on the crack growth behavior.
Document ID
19760039801
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Hudak, S. J., Jr.
(Westinghouse Research Laboratories Pittsburgh, Pa., United States)
Wei, R. P.
(Lehigh University Bethlehem, Pa., United States)
Date Acquired
August 8, 2013
Publication Date
February 1, 1976
Publication Information
Publication: Metallurgical Transactions A - Physical Metallurgy and Materials Science
Volume: 7A
Subject Category
Metallic Materials
Accession Number
76A22767
Funding Number(s)
CONTRACT_GRANT: NGR-39-006-067
Distribution Limits
Public
Copyright
Other

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