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Nitrogen Diffusion in the Nb-2.0wt%Ti Measured by Mechanical Spectroscopy

机译:机械光谱法测量Nb-2.0wt%Ti中的氮扩散

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摘要

Metals that present bee crystalline structure, when receiving addition of interstitial atoms as oxygen, nitrogen, hydrogen and carbon, undergo significant changes in their physical properties, being able to dissolve great amounts of those interstitial elements, thus forming solid solutions. Niobium and most of its alloys possess bec crystalline structure and, as Brazil is the largest world exporter of this metal, it is fundamental to understand the interaction mechanisms between interstitial elements and niobium or its alloys. In this paper, mechanical spectroscopy (internal friction) measurements were performed in Nb-2.0wt%ri alloys containing nitrogen in solid solution. The experimental results presented complex internal friction spectra and with the addition of substitutional solute, it was observed interactions between the two types of solutes (substitutional and interstitial), considering that the random distribution of the interstitial atoms was affected by the presence of substitutional atoms Interstitial diffusion coefficients, pre-exponential factors and activation energies were calculated for nitrogen in the Nb-2 0wt%Ti alloys.
机译:具有蜂晶体结构的金属,当接受间隙原子如氧,氮,氢和碳的添加时,其物理性质会发生重大变化,能够溶解大量这些间隙元素,从而形成固溶体。铌及其大多数合金具有bec晶体结构,并且由于巴西是该金属的最大出口国,因此了解间质元素与铌或其合金之间的相互作用机理至关重要。在本文中,对固溶态含氮的Nb-2.0wt%ri合金进行了机械光谱(内摩擦)测量。实验结果显示了复杂的内部摩擦谱,并添加了替代溶质,观察到两种类型的溶质(取代和填隙)之间的相互作用,考虑到填隙原子的随机分布受到替换原子的存在的影响计算了Nb-2 0wt%Ti合金中氮的扩散系数,指数前因子和活化能。

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