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Positron annihilation spectroscopy study of defects in hydrogen loaded Zr-1Nb alloy

机译:氢负载ZR-1NB合金缺陷的正电子湮没光谱研究

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摘要

The purpose of this work is to implement the positron lifetime and Doppler broadening techniques for the study of hydrogen-induced defects in Zr-1wt% Nb (hereinafter Zr-1Nb) alloy. It was shown that spark cutting is an appropriate instrument to obtain a pair of Zr-1Nb samples with the same hydrogen content for the "sandwich" geometry and does not introduce open-volume defects in them during the cut. The ab initio calculations were implemented to evaluate the positron annihilation characteristics for expanded crystal lattice, Zr with absorbed hydrogen, Zr-vacancy and Zr-vacancy-hydrogen complexes. The type of defects created in Zr-1Nb alloy loaded with hydrogen from the gas phase up to various hydrogen concentrations was studied. The main types of defects induced by hydrogen loading are vacancy-hydrogen complexes and dislocations. The processes of crystal lattice expansion and hydrogen dissolution in the lattice were studied. (C) 2019 Published by Elsevier B.V.
机译:本作作品的目的是实施正电子寿命和多普勒拓宽技术,用于研究Zr-1wt%Nb(下文中Zr-1NB)合金中的氢诱导的缺陷。 结果表明,火花切割是一种适当的仪器,以获得具有相同氢含量的一对Zr-1NB样品,用于“夹心”几何形状,并且在切割过程中不会引入它们的开放体积缺陷。 实施AB初始计算以评估扩展晶格,Zr的正电子湮灭特性,具有吸收的氢,Zr空位和Zr空位 - 氢气复合物。 研究了从气相加载到各种氢浓度的Zr-1NB合金中产生的缺陷类型。 氢负载诱导的主要类型的缺陷是空位 - 氢气复合物和脱位。 研究了晶格中的晶格膨胀和氢溶解的过程。 (c)2019年由elestvier b.v发布。

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