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- W2000293127 abstract "The effects of hydrogen charging on the flow stress of high purity FeC alloys (containing 20–500 at.ppm C) were investigated at temperatures between 170 K and room temperature. Hydrogen causes softening when the carbon concentration is less than that corresponding to the maximum solid solution softening by carbon. In this case the flow stress in the hydrogen-softened state is independent of the carbon concentration and almost equal to the flow stress due to full softening by carbon or hydrogen only. When carbon is added beyond the concentration required for full softening, hydrogen causes hardening. The amount of the hydrogen-induced hardening is almost independent of the carbon concentration, the temperature and the hydrogen charging current density (10–40 A m−2). The hydrogen-induced hardening is most probably due to the interaction of CH pairs (complexes) with kinks which retards their sideward motion along screw dislocations. The formation of the pair increases the resistance of carbon atoms to the motion of the kink." @default.
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- W2000293127 title "Hydrogen-induced softening and hardening in high purity FeC alloys" @default.
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- W2000293127 doi "https://doi.org/10.1016/0025-5416(82)90055-6" @default.
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