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- W2077022912 abstract "The intergranular penetration of 214Cr-1Mo steel by lead-lithium liquids containing 0, 17.6, and 53 w/o lead has been investigated at temperatures from 300°C to 600°C for times up to 1000 hours. Limited tests using a 99.3 w/o lead-lithium liquid were also conducted. Tempering was found to remove the susceptibility of as-quenched 214Cr-1Mo steel to penetration at 500°C by lead-lithium liquids containing up to 53 w/o lead. Penetration by the 99.3 w/o lead-lithium liquid in 1000 hours at 500°C was found to be negligible even when the steel was in the as-quenched condition. An Arrhenius analysis yielded the same low initial activation energy (~25 kJ/mole) for liquids containing 0, 17.6, and 53 w/o lead. The initial penetration rate for lead-free lithium was significantly greater than that for the lead-bearing liquids, a factor thought to be related to the effect of lead on the wettability of the liquid. The same secondary activation energy (~120 kJ/mole) was also found for the three liquids. Furthermore, the secondary penetration rate was found to be insensitive to lead content. Anamolous behavior at 500°C, observed in this study as well as in previous studies, is discussed, and a hypothetical explanation for the behavior is presented." @default.
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- W2077022912 date "1981-01-01" @default.
- W2077022912 modified "2023-09-26" @default.
- W2077022912 title "The effect of lead concentration on the corrosion susceptibility of steel in a lead-lithium liquid" @default.
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- W2077022912 doi "https://doi.org/10.1016/0022-3115(82)90675-4" @default.
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