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Concentration of hydrogen in titanlum measured by neutron incoherent scattering

机译:中子非相干散射测量钛中氢的浓度

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Mass fractions of hydrogen in titanium matrices have been measured using neutron incoherent scattering (NIS) and compared with results from prompt gamma activation analysis (PGAA). Qualitatively, NIS is a more efficient technique than PGAA which involves neutron absorption, and the former may be suitable for on-line anlaysis. However, for NIS the scattering contribution comes from both the hydrogen and the matrix, whereas prompt gamma emission has miniumal matrix effect. To isolate the signal due to hydrogen scattering, a set of polypropylene films is used to simulate the increasing amount of hydrogen, and the scattered intensity is monitored. From this response, an unknown amount of the hydrogen can be deduced empirically. We have further attempted a first principle calculation of the intensity of the scattered signal from the experiemntal systems, and have obtained good agreement between calculation and the measurements. The study can be used as a reference for future applications of the scattering method to other hydrogen-in-metal systems.
机译:使用中子非相干散射(NIS)测量了钛基体中氢的质量分数,并将其与快速伽马活化分析(PGAA)的​​结果进行了比较。从质量上讲,NIS是比PGAA更有效的技术,后者涉及中子吸收,并且前者可能适用于在线分析。但是,对于NIS,散射贡献来自氢和基质,而快速的γ发射对基质的影响最小。为了隔离由于氢散射引起的信号,使用一组聚丙烯薄膜模拟氢的增加量,并监测散射强度。根据该响应,可以凭经验推断出未知量的氢。我们进一步尝试了对来自实验系统的散射信号强度的第一原理计算,并且在计算和测量之间获得了良好的一致性。该研究可以作为散射方法在其他金属氢体系中未来应用的参考。

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