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Analysis of nitrogen distribution in iron-titanium alloys after nitrogen trapping in liquid lithium by using soft X-ray emission spectroscopy

机译:用软X射线发射光谱分析液体锂后氮钛合金氮气分布分析

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摘要

Liquid lithium, a candidate material for the target of International Fusion Material Irradiation Facility (IFMIF), easily contains nitrogen. Nitrogen in liquid lithium should be removed as it accelerates corrosion of tubing materials. Hot trapping by iron-titanium alloys is expected to be a practical method. In order to understand the characteristics of nitrogen trapping with iron-titanium alloys in liquid lithium, nitrogen distribution was observed by Soft X-ray Emission Spectroscopy (SXES). Samples of Fe-5Ti alloys were immersed for 9-256 h in liquid lithium which contains 1000 w-ppm of nitrogen at 823 K and studied by X-ray Powder diffraction and SXES. The results show that nitrogen is trapped mainly in the grain boundaries and on the surfaces of the Fe-5Ti alloys and diffuses in Fe-5Ti much faster than in pure titanium. In addition, it is assumed that the amount of nitrogen trapping by the surface of Fe-5Ti alloys does not depend on the immersion time.
机译:液体锂,用于国际融合材料照射设施(IFMIF)的候选材料,容易含有氮。 应除去液体锂中的氮,因为它加速了管材材料的腐蚀。 铁 - 钛合金的热诱捕预计是一种实用的方法。 为了了解用液态锂中的铁 - 钛合金捕获的氮捕获的特性,通过软X射线发射光谱(SXE)观察氮气分布。 将Fe-5TI合金的样品浸入液体锂中9-256小时,其在823k下含有1000w-ppm的氮,并通过X射线粉末衍射和Sxes研究。 结果表明,氮主要被捕获在晶界和Fe-5TI合金的表面上,并在Fe-5Ti中扩散得比纯钛更快。 另外,假设Fe-5TI合金表面的氮气捕获量不依赖于浸入时间。

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