12
Views
29
CrossRef citations to date
0
Altmetric
Material Interaction

Interaction of Hydrogen Isotopes with Stainless Steel 316 L

, , , &
Pages 2344-2351 | Published online: 10 Aug 2017

REFERENCES

  • M.I. BASKES, “A calculation of the surface recombination rate constant for hydrogen isotopes on metals”, J. Nucl. Mat. 92, 318 (1980).
  • M. CAORLIN, J. CAMPOSILVAN and F. REITER, “Solubility and diffusivity measurements of hydrogen in fusion reactor candidate materials”, Proc. VIII° Congresso Nazionale del Vuoto, L’Aquila (Italy) 1983, Vol.II, 713.
  • G. GERVASINI, J. CAMPOSILVAN and F. REITER, “Solubility and diffusivity measurements of protium and deuterium in Inconel 625”, Fusion Technology 6, 428 (1984).
  • G. GERVASINI, J. CAMPOSILVAN and F. REITER, “Solubility of hydrogen isotopes in Inconel 600”, 13th Symp. on Fusion Technology, Varese (Italy) 1984.
  • J. CRANK, “Mathematics of diffusion”, Clarendon Press, Oxford 1956.
  • P.R. BEVINGTON, “Data reduction and error analysis for physical sciences”, McGraw-Hill, New York 1969.
  • Y. EBISUZAKI, W.J. KASS and M. O’Keeffe, “Isotope effects in the diffusion and solubility of hydrogen in nickel”, J. Chem. Phys. 46, 1373 (1967).
  • L. KATZ, M. GUINAN and R.J. BORG, “Diffusion of H2 D2 and T2 in single-crystal Ni and Cu”, Phys. Rev. B4(2), 330 (1971).
  • L. HAAR, “Ideal gas thermodynamic functions and isotope exchange functions for the diatomic hydrides, deuterides and tritides”, NBS Monograph 20 (1961).
  • A.I. GROMOV, Yu.K. KOVNERISTYI, “Permeability, diffusion and solubility of hydrogen in austenitic steels”, Met. Sci. Heat Treat. 22, 321 (1980).
  • N. KISHIMOTO, T. TANABE, T. SUZUKI and Y. YOSHIDA, “Hydrogen diffusion and solution at high temperatures in 316 stainless steel and nickel-base heat-resistant alloys”, J. Nucl. Mat. 127, 1 (1985).
  • P. TISON, J.P. FIDELLE, “Etude des phénomènes qui, avec la diffusion peuvent contrôler la perméabilité des métaux à 1’hydrogène et ses isotopes”, Note CEA - N 2231 (Oct. 1981).
  • M.R. LOUTHAN Jr., J.A. DONOVAN and G.R. CASKEY Jr., “Tritium absorption in type 304L stainless steel”, Nucl. Techn. 26, 192 (1975).
  • E.H. van Deventer, V.A. MARONI, “Hydrogen permeation characteristics of some austenitic and Ni-base alloys”, J. Nucl. Mat. 92, 103 (1980).
  • T. TANABE, S. IMOTO, “Hydrogen permeation and diffusion through Fe-Ni alloys and austenitic steels”, Proc. JIMIS Hydrogen in Metals, 21 (suppl.), 109 (1980).
  • T. TANABE, Y. YAMANISHI, K. SAWADA and S. IMOTO, “Hydrogen transport in stainless steels”, J. Nucl. Mat. 122 & 123, 1568 (1984).
  • P.S. FLINT, “The diffusion of hydrogen through materials of construction”, KAPL-659 (1951).
  • M. SUGISAKI, H. FURUYA, K. ONO and K. IDEMITSU, “Tritium solubility in SUS - 316 stainless steel”, J. Nucl. Mat. 120, 36 (1984).
  • J.H. AUSTIN, T.S. ELLEMAN, “Tritium diffusion in 304- and 316-stainless steels in the temperature range 25 to 222°C”, J. Nucl. Mat. 43, 119 (1972).
  • J.T. BELL, J.D. REDMAN and H.F. BITTNER, “Tritium permeation through clean construction alloys”, J. Mat. En. Syst., 1, 55 (1979).
  • T. HIRABAYASHI and M. SAEKI, “Sorption of gaseous tritium on the surface of type 316 stainless steel”, J. Nucl. Mat., 120, 309 (1984).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.