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  • 1
    Publication Date: 2011-08-16
    Description: Reversible hydrogen embrittlement mechanism in hydrogenated steels
    Keywords: MATERIALS, METALLIC
    Type: ; UG REVUE(
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  • 2
    Publication Date: 2011-08-16
    Description: Quenched and tempered steel, investigating embrittlement as function of temperature in partially dissociated atomic hydrogen environment
    Keywords: MATERIALS, METALLIC
    Type: ; YSICA STATUS SOLIDI
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  • 3
    Publication Date: 2011-08-16
    Description: Study of environmental hydrogen embrittlement of a Ti-6 Al-4 alloy as a function of test displacement rate and of variations in alpha-beta microstructure. Embrittlement in low-pressure (about 1 atm) gaseous hydrogen was inversely dependent on test displacement rate and strongly dependent on microstructure. At a given displacement rate, microstructures having a continuous alpha-phase matrix were less severely embrittled than those having a continuous beta-phase matrix. Further, brittle fracture occurred in the former microstructures by transgranular cleavage and in the latter microstructures by intergranular separation. These observations are consistent with previous studies made on slow strain-rate embrittlement of hydrogen-charged titanium alloys and are explained in terms of relative hydrogen transport rates within the alpha-phase and beta-phase titanium.
    Keywords: MATERIALS, METALLIC
    Type: Metallurgical Transactions; 3; Feb. 197
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  • 4
    Publication Date: 2011-08-16
    Description: A new criterion has been developed for predicting failure of materials by environment-induced cracking. The criterion has been developed by the use of fracture mechanics concepts and assumes that the relationship between crack-growth rate and stress intensity can be described by three separable regions of behavior as first suggested by Wiederhorn. The analytical form of the criterion relates failure time to the initial crack length and the critical crack length or alternatively, to the initial stress intensity and the fracture toughness for various conditions of stress and the environmental variables. The analytical expression is examined by the use of some experimental data on the hydrogen-induced cracking of Ti-5Al-2.5 Sn, and it is demonstrated that the expression predicts the general expected form of the relationship between the normalized stress intensity parameter and the failure time.
    Keywords: MATERIALS, METALLIC
    Type: International Journal of Fracture; 9; Mar. 197
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  • 5
    Publication Date: 2011-08-12
    Description: Pressure and temperature dependence of slow crack growth in hardened steel in gaseous hydrogen environment
    Keywords: MATERIALS, METALLIC
    Type: ; ADEMIE DES SCIENCES
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  • 6
    Publication Date: 2011-08-16
    Description: Hardened steel embrittlement in low pressure hydrogen caused by crack growth as function of temperature
    Keywords: MATERIALS, METALLIC
    Type: ; ADEMIE DES SCIENCES
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  • 7
    Publication Date: 2011-08-16
    Description: Study of the kinetics of hydrogen-induced cracking in the Ti-5Al-2.5Sn titanium alloy, which has a structure of acicular alpha platelets in a beta matrix. The crack-growth rate at low stress-intensity levels was found to be exponentially dependent on stress intensity but essentially independent of temperature. The crack-growth rate at intermediate stress-intensity levels was found to be independent of stress intensity but dependent on temperature in such a way that crack-growth rate was controlled by a thermally activated mechanism having an activation energy of 5500 cal/mole and varied as the square root of the hydrogen pressure. The crack-growth rate at stress-intensity levels very near the fracture toughness is presumed to be independent of environment. The results are interpreted to suggest that crack growth at high stress intensities is controlled by normal, bulk failure mechanisms such as void coalescence and the like. At intermediate stress-intensity levels the transport of hydrogen to some interaction site along the alpha-beta boundary is the rate-controlling mechanism. The crack-growth behavior at low stress intensities suggests that the hydrogen interacts at this site to produce a strain-induced hydride which, in turn, induces crack growth by restricting plastic flow at the crack tip.
    Keywords: MATERIALS, METALLIC
    Type: Metallurgical Transactions; 3; Aug. 197
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  • 8
    Publication Date: 2018-12-01
    Description: Vacuum effect on tensile, creep and fatigue properties of magnesium polycrystals and on tensile properties of oriented magnesium single crystals
    Keywords: MATERIALS, METALLIC
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  • 9
    Publication Date: 2019-05-29
    Description: Vacuum effects on tensile properties of magnesium single crystals
    Keywords: MATERIALS, METALLIC
    Type: NASA-TM-X-56156
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  • 10
    Publication Date: 2019-05-30
    Description: Hydrogen gas reaction with titanium and titanium alloys determined at low temperatures and pressures
    Keywords: MATERIALS, METALLIC
    Type: NASA-CR-65456
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