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Hydrogen diffusivity and solubility in an Fe-based amorphous metallic alloys

机译:氢在铁基非晶态金属合金中的扩散率和溶解度

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Electrochemical hydrogen permeation tests were performed in the Fe_(40)Ni_(38)Mo_4B_(18) amorphous metallic alloy at temperatures ranging from 313 to 353 K using an elevated cathodic charging electrochemical potential of -2.0V/SCE in a 0.1 N NaOH electrolyte. All permeation curves presented a double sigmoidal shape, suggesting hydride formation. The hydrogen content in the hydrided material was about 100 times greater than the hydrogen solubility in the original amorphous matrix. The effective hydrogen diffusivity in the composite material, partially hydrided, did not vary with temperature, within the experimental errors, while the hydrogen diffusivity in the a (matrix phase), D_α, can be expressed as a function of temperature by the relation: D_α =4.2 × 10~(-8) exp((-35.5±2.9)/RT) (m~2 s~(-1)).
机译:在0.1N NaOH电解质中使用-2.0V / SCE的升高的阴极充电电化学势,在313至353 K的温度下,在Fe_(40)Ni_(38)Mo_4B_(18)非晶态金属合金中进行了电化学氢渗透测试。所有渗透曲线均呈双S形,表明形成了氢化物。氢化材料中的氢含量比原始无定形基体中的氢溶解度高约100倍。在实验误差范围内,部分氢化的复合材料中的有效氢扩散率不会随温度变化,而在实验误差范围内,而α(矩阵相)中的氢扩散率D_α可以表示为温度的函数,关系为:D_α = 4.2×10〜(-8)exp((-35.5±2.9)/ RT)(m〜2 s〜(-1))。

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