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Alloying effects on hydrogen permeability of niobium

机译:合金化对铌氢渗透性的影响

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Niobium metal is one of the promising material for hydrogen purification because of its high hydrogen permeability. In order to design and develop a new palladium-free hydrogen permeable membrane, it is important to understand the effects of alloying elements on the hydrogen permeability through metals. However, to the niobium metal, the alloying effects still remain unclear. In the present study, using a DC-polarization technique under the diffusion limiting condition, the hydrogen permeability of Nb-5mol%M alloys were investigated in high precision at 573K. Here, M's were 4d transition metals, Zr, Mo, Ru and Pd. The permeability of niobium is found to be varied with the addition of a small amount of alloying element. For example, the hydrogen permeability of niobium increases by the addition of Zr but decreases by the addition of Ru.
机译:铌金属因其高的氢渗透性而成为用于氢纯化的有前途的材料之一。为了设计和开发一种新型的无钯透氢膜,重要的是要了解合金元素对通过金属的透氢性的影响。但是,对于铌金属,合金化效果仍然不清楚。在本研究中,在扩散限制条件下使用直流极化技术,在573K的高精度下研究了Nb-5mol%M合金的氢渗透性。在这里,M是4d过渡金属Zr,Mo,Ru和Pd。发现铌的渗透性随添加少量合金元素而变化。例如,铌的氢渗透性通过添加Zr而增加,但是通过添加Ru而降低。

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