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Chemical forms of hydrogen desorbed by permeation through pure iron and oxide dispersion strengthened steels

机译:通过纯铁和氧化物弥散强化钢渗透而脱附的氢的化学形式

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To clarify factors controlling variation of chemical forms of hydrogen desorbed by permeation phenomena through the oxide dispersion strengthened ferritic (ODS) steels, permeation behaviors of hydrogen through pure alpha iron (Fe) and the ODS steel into a pure argon (Ar) gas atmosphere have been examined by hydrogen permeation experiments with a tritium tracer technique. Difference of chemical forms of hydrogen desorbed by permeation through pure Fe and the ODS steel was explained by oxygen potential at a downstream side which was determined by an amount of hydrogen supplied by permeation and a moisture content in the Ar gas atmosphere at a certain temperature. Due to very high stability of chromium oxides formed on the ODS steels, most of hydrogen desorbed as a hydrogen gas molecular form into the Ar gas atmosphere in the present experimental temperatures ranging from 303 K to 623 K.
机译:为了阐明控制通过氧化物弥散强化铁素体(ODS)钢的渗透现象解吸的氢的化学形式变化的因素,氢通过纯α铁(Fe)和ODS钢进入纯氩(Ar)气氛的渗透行为具有用hydrogen示踪技术通过氢渗透实验进行了检验。通过在纯铁和ODS钢中的渗透而解吸的氢的化学形式的差异由下游侧的氧势解释,该氧势由渗透提供的氢的量和一定温度下Ar气体气氛中的水分确定。由于在ODS钢上形成的氧化铬具有非常高的稳定性,因此在303 K至623 K的当前实验温度下,大部分氢以氢气分子形式解吸到Ar气体气氛中。

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