Environmental fatigue of an Al-Li-Cu alloy. Part 3: Modeling of crack tip hydrogen damage [PDF]
Environmental fatigue crack propagation rates and microscopic damage modes in Al-Li-Cu alloy 2090 (Parts 1 and 2) are described by a crack tip process zone model based on hydrogen embrittlement. Da/dN sub ENV equates to discontinuous crack advance over a
Gangloff, Richard P., Piascik, Robert S.
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Metallurgy: A compilation [PDF]
A technology utilization program is presented for the dissemination of information on technological developments which have potential utility outside the aerospace and nuclear communities.
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Hydrogen embrittlement of duplex steel tested using slow strain rate test
This paper is dealing with hydrogen embrittlement of austenitic-ferritic 2205 duplex steel using the slow strain rate test (SSRT). The original material was subjected to heat treatment under 700 °C during 5 hours and following aircooling with the aim of ...
P. Vaňova, J. Sojka
doaj
Application of DFT Simulation to the Investigation of Hydrogen Embrittlement Mechanism and Design of High Strength Low Alloy Steel. [PDF]
Fan X, Mi Z, Yang L, Su H.
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Effect of Hydrogen Exposure Temperature on Hydrogen Embrittlement in the Palladium-Copper Alloy System (Copper Content 5-25 wt.%). [PDF]
Roy B +6 more
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Environmental fatigue of an Al-Li-Cu alloy. Part 1: Intrinsic crack propagation kinetics in hydrogenous environments [PDF]
Deleterious environmental effects on steady-state, intrinsic fatigue crack propagation (FCP) rates (da/dN) in peak aged Al-Li-Cu alloy 2090 are established by electrical potential monitoring of short cracks with programmed constant delta K and K(sub max)
Gangloff, Richard P., Piascik, Robert S.
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Hydrogen Embrittlement of CrCoNi Medium-Entropy Alloy with Millimeter-Scale Grain Size: An In Situ Hydrogen Charging Study. [PDF]
Yan S, He X, Zhu Z.
europepmc +1 more source
Innovative Design of Residual Stress and Strain Distributions for Analyzing the Hydrogen Embrittlement Phenomenon in Metallic Materials. [PDF]
Toribio J, Lorenzo M, Aguado L.
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