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Alloy Design of Nb-Based Hydrogen Permeable Membrane with Strong Resistance to Hydrogen Embrittlement

机译:耐氢脆性强的Nb基氢透膜的合金设计

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The alloying effects of Ru and W on the hydrogen solubility, the resistance to hydrogen embrittlement and hydrogen permeability are investigated quantitatively for Nb-based hydrogen permeable alloys. It is found that the hydrogen solubility decreases by the addition of alloying element into niobium or by increasing the temperature. As a result, the resistance to hydrogen embrittlement is improved by reducing the hydrogen concentration. On the other hand, the hydrogen flux, J, through the alloy membrane increases linearly with increasing difference of hydrogen concentration, DELTA C, between both sides of the membrane. It is shown that the Nb-5 mol percent X (X = Ru and W) alloys possess excellent hydrogen permeability without showing any hydrogen embrittlement when used under appropriate permeation conditions, i.e. temperature and hydrogen pressures. Also, the hydrogen diffusion coefficients during the practical hydrogen permeation at high temperature are evaluated from the linear relationship between the hydrogen flux and the hydrogen concentration difference. It is found that the hydrogen diffusion coefficient of pure Nb is much lower than the reported values measured for dilute hydrogen solid solutions. Surprisingly, the hydrogen diffusion is found to be faster in Pd-26 mol percent Ag alloy with fee crystal structure than in pure niobium with bcc structure at 773 K during the hydrogen permeation. It is also interesting that the addition of Ru or W into niobium enhances the hydrogen diffusion of the practical hydrogen permeation at high temperature.
机译:定量研究了Nb基氢可渗透合金中Ru和W对氢溶解度,抗氢脆性和氢渗透性的合金作用。发现通过将合金元素添加到铌中或通过升高温度来降低氢溶解度。结果,通过降低氢浓度提高了抗氢脆性。另一方面,通过合金膜的氢通量J随着膜两侧之间氢浓度差ΔC的增加而线性增加。结果表明,当在适当的渗透条件下,即温度和氢压力下使用时,Nb-5摩尔百分数的X(X = Ru和W)合金具有极好的氢渗透性而没有显示出氢脆性。另外,根据氢通量与氢浓度差之间的线性关系,对高温下实际的氢渗透中的氢扩散系数进行了评价。发现纯Nb的氢扩散系数远低于稀氢固溶体的报道值。令人惊讶地,发现在氢渗透期间,具有小晶体结构的Pd-26mol%Ag合金中的氢扩散比具有bcc结构的纯铌中的氢扩散快。还有趣的是,向铌中添加Ru或W可以提高高温下实际氢渗透的氢扩散。

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