Neutron Incoherent Scattering Measurements on Hydrogen-Charged Zircaloy-4

Author:

Garlea E.1,Garlea V.O.2,Choo Hahn1,Hubbard C.R.3,Liaw Peter K.1

Affiliation:

1. The University of Tennessee

2. Iowa State University

3. Oak Ridge National Laboratory

Abstract

Neutron incoherent scattering measurements were conducted on Zircaloy-4 round bars. The specimens were charged in a tube furnace at 430 °C, using a 12.5 vol. % hydrogen in an argon mixture for 30, 60, and 90 minutes at 13.8 kPa pressure. The volume-average neutron diffraction measurements showed the presence of the face-centered-cubic delta zirconium hydride (δ-ZrH2) phase in the hydrogenated specimens. The assessment of the background in the diffraction profiles due to the incoherent scattering from the hydrogen atoms was carried out by performing inelastic scans around zero energy transfer and at a fixed two-theta value for which there was only flat background and no coherent scattering. To estimate the relative amount of hydrogen in the Zircaloy-4 samples, the increase in incoherent scattering intensities with hydrogen content was calibrated using samples for which the hydrogen content was known. Measurement of the background scattering from locations within the round bar was also performed to map the distribution of hydrogen content.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference8 articles.

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3. F. Couvreur and G. Andre, In-Situ Neutron Scattering Study of HydrogenContaining Zircaloy-4 Alloys, in LLB Scientific Report 1997-1998, pp.72-73 http: /www-llb. cea. fr/activ9798/materiau/hydrogen-contaning_Zircaloy. pdf.

4. V. V. Kvardakov, H. H. Chen-Mayer, and D. F. R. Mildner, J. Appl. Phys., 83, 7 (1998): pp.3876-3879.

5. R. L. Paul, H. M. Privett III, R. M. Lindstrom, W. J. Richards, and R. R. Greenberg, Metall. Mater. Trans. A, 27A, (1996): p.3682.

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1. Hydrogen in Zircaloy: Mechanism and its impacts;International Journal of Hydrogen Energy;2015-05

2. Hydride-Phase Formation and its Influence on Fatigue Crack Propagation Behavior in a Zircaloy-4 Alloy;Metallurgical and Materials Transactions A;2010-07-14

3. Intergranular Strain Evolution in a Zircaloy-4 Alloy with Basketweave Morphology;Metallurgical and Materials Transactions A;2010-03-17

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