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Surface reaction of titanium beryllide with water vapor

机译:钛铍与水蒸气的表面反应

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Beryllium is one of the candidate materials for the neutron multiplier in the tritium-breeding blanket. However, there are some problems related to the application of beryllium as a neutron multiplier, which include compatibility with structural materials, tritium inventory and reaction of beryllium with water vapor and oxygen in a LOCA accident. Titanium beryllides such as Be_(12)Ti are known to have advantages over beryllium from the perspectives of higher melting point, lower chemical reactivity and lower swelling. Thus, these materials are promising alternatives of beryllium. The authors investigate here the reaction of titanium beryllides with water vapor at high temperatures, and it is found that Be_(12)Ti is by far more tolerant to water vapor than beryllium. To clarify the high tolerance of Be_(12)Ti to water vapor, the surface of Be_(12)Ti used in the experiment was investigated by means of digital microscope, SEM, XRD and electron spectroscopy for chemical analysis (ESCA). These analyses suggest that some oxidized state of beryllium was formed on the surface of Be_(12)Ti exposed to water vapor. In particular, the results of the ESCA analysis gave some clues to understanding the higher tolerance of Be_(12)Ti to water vapor at high temperatures.
机译:Beryllium是氚繁殖毯子中中子倍增器的候选材料之一。但是,也有相关的铍的应用程序作为中子倍增一些问题,其中包括与结构材料,氚库存和与水蒸汽和氧在LOCA事故铍的反应相容性。钛铍如Be_(12)的Ti已知具有优于从更高的熔点的观点铍,降低化学反应性和降低肿胀。因此,这些材料是铍的有希望的替代品。作者在此研究钛铍与水蒸气在高温下的反应,发现BE_(12)Ti比铍耐水更容许水蒸气。为了阐明Be_(12)Ti至水蒸气的高耐受性,通过数字显微镜,SEM,XRD和电子光谱研究了实验中使用的BE_(12)TI的表面进行化学分析(ESCA)。这些分析表明,在暴露于水蒸气的BE_(12)TI的表面上形成一些氧化铍状态。特别地,ESCA分析的结果给出了一些线索,以了解高温下的BE_(12)TI对水蒸气的较高耐受性。

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