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中国物理学会期刊

Ti-Mo合金氢化物微观缺陷的小角X射线散射研究

CSTR: 32037.14.aps.57.5782

Microscopic defects in Ti-Mo alloy hydrides studied by small-angle X-ray scattering

CSTR: 32037.14.aps.57.5782
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  • 采用小角X射线散射(SAXS)方法对Ti-Mo合金氢化物的微观缺陷进行了研究.结果表明,氢化物样品中Mo含量为5at%时,所测定的SAXS强度在高散射角区明显低于其他样品的SAXS强度.氢化物中的晶粒及其内部的亚结构是引起SAXS现象的散射体,而这些亚结构是由合金氢化时引入的大量位错所产生.Mo 含量为5at%合金主要为hcp结构而其他合金为bcc结构,但两种合金氢化后都成为fcc结构的氢化物.据此,认为hcp结构与bcc结构Ti-Mo合金在氢化时氢化物结构相同但引入的位错缺陷特征不同.

     

    In this work,the microscopic defects in Ti-Mo alloy hydrides were studied by using small-angle X-ray scattering (SAXS) technique. The results show that the SAXS intensity measured for hydride of 5at% Mo alloy was lower than that of other hydrides in the high scattering angle range. The crystal grains and its internal sub-structures in the hydrides are the scatterers which cause SAXS. The sub-structures are induced by the large number of dislocations in the hydrides produced during hydrogenation. The crystal structure of Mo 5at% alloy is mainly hcp,but that of the other alloys is bcc. The hydrides of all these alloys, however, have a fcc crystal structure. Therefore,it is indicated that the Ti-Mo alloys with hcp and bcc crystal structures form the same hydride structure,but induce different types of dislocation defects during hydrogenation.

     

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