Determination of hydrogen diffusivity depending on the hydride concentration in titanium-hydride by means of the diffraction-enhanced X-ray imaging method

Transactions of the Materials Research Society of Japan Volume 37 Issue 2 Page 319-323 published_at 2012/06/01
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Title
Determination of hydrogen diffusivity depending on the hydride concentration in titanium-hydride by means of the diffraction-enhanced X-ray imaging method
Creator
Kanai Takashi
Hirano Kei-ichi
Okamoto Hiroyuki
Source Title
Transactions of the Materials Research Society of Japan
Volume 37
Issue 2
Start Page 319
End Page 323
Journal Identifire
ISSN 1382-3469
EISSN 2188-1650
Descriptions
The X-ray refraction imaging technique was applied to the quantitative study of hydrogen diffusion in titanium-hydride. Hydrogen diffusivity in titanium-hydride was determined by direct observation of the hydride. The hydride was formed on the surface of titanium by electrolytic-charging at 63°C. The specimens were cut into 1-mm thick slices for cross-sectional observations. The hydride layer was observed using the diffraction-enhanced X-ray imaging (DEI) method with asymmetric analyzer. Boundaries between titanium and the hydride were observed as thick black or white lines parallel to the specimen surface in the DEI images similar to previously reported results. Hydride distribution caused by hydrogen diffusion from the surface was converted to the intensity profiles of refraction images of the hydride using the measured rocking curve from an analyzer. The hydrogen diffusivity was calculated from the intensity profiles using the solution of the appropriate diffusion equation. The obtained hydrogen diffusivity in titanium-hydride depended upon the hydrogen concentration. The diffusivity showed good agreement with the widely accepted values in the low hydride concentration region.
Subjects
hydrogen
titanium-hydride
diffraction-enhanced X-ray imaging
Language
eng
Resource Type journal article
Publisher
一般社団法人 日本MRS
Date of Issued 2012/06/01
Publish Type Version of Record
Access Rights open access
Relation
[DOI] 10.14723/tmrsj.37.319
イッパン シャダン ホウジン ニホン MRS