氢在铁中偏克原子应变场的测定

Partial Atom Strain Field of Hydrogen in Iron

  • 摘要: 利用特殊的四边形夹具可分别施加等值的拉、压载荷,同时测出拉、压应力引起的相对稳态氢渗透通量的变化就可求出氢的应变场。结果表明,氢在铁中的应变场是非球对称的,且;ε1>0,ε23<0。
    实验表明,氢的表观偏克原子应变场和表观偏克原子体积均随体内氢浓度的增加而下降。用最小二乘法可获得氢浓度趋于零时的真实值,分别为ε1=0.37,ε23=-0.11,VH=2.49cm3/mol。实验还表明,外加应力大小对应变场没有影响。

     

    Abstract: The pirtial atom strain field of hydrogen in α-Fe was measured and the variation of the strain components with the hydrogen concentration was investigated. The strain components ε1 and ε2 under Boltzmann distri bution are calculated.Hydrogen permeation measurements under tensile and compressive stress were carried out using a special device designed by ourselves, which can easily apply a same tensile and compressive load to a cross specimens.The results show that ε1> 0, ε2<0, i.e. the partial strain field of hydrogen in α-Fe has an intensive tetragonal distortion. The experiment shows also that the apparent strain components decrease with increasing hydrogen concentration.

     

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