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Measurements of thermal neutron diffraction and inelastic scattering in reactor-grade graphite

Publication ,  Journal Article
Bowman, CD; Bowman, DC; Hill, T; Long, J; Tonchev, AP; Tornow, W; Trouw, F; Vogel, S; Walter, RL; Wender, S; Yuan, V
Published in: Nuclear Science and Engineering
January 1, 2008

High-resolution Bragg-edge transmission measurements were conducted on granular as well as solid samples of graphite to understand the basis for a bulk measurement of the diffusion length 24% larger than predicted by MCNP5 for bulk reactor-grade graphite. High resolution enabled a measurement of the total diffraction cross section from 1 to 200 meV. This was subtracted from the total cross section to find the inelastic cross section in the same energy range. Small-angle scattering, which has been thought to contribute to the total cross section in the region of the lowest Bragg edge, is shown not to be present in our measurement or in those of others claiming to find it. Instead, neutron total reflection from the surface of graphite microcrystals is shown to contribute to the cross section at low energies. Reactor-grade graphite is shown to have an inelastic scattering cross section over most of the energy range larger by at least 10 than the nearly perfect crystal structure of pyrolytic graphite. The ratio of inelastic scattering to diffraction at 25 meV for our graphite is inferred to be twice as large as that of graphite manufactured 50 yr ago, and we believe that our larger diffusion coefficient is rooted in this difference. The distortions in the microcrystalline structure introduced in the manufacturing of the graphite studied here at 24°C are found to be equivalent to the uncertainty in atom positions seen in heating perfect crystal graphite to a temperature of ∼ 1800°C.

Duke Scholars

Published In

Nuclear Science and Engineering

DOI

ISSN

0029-5639

Publication Date

January 1, 2008

Volume

159

Issue

2

Start / End Page

182 / 198

Related Subject Headings

  • Energy
  • 4019 Resources engineering and extractive metallurgy
  • 0915 Interdisciplinary Engineering
 

Citation

APA
Chicago
ICMJE
MLA
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Bowman, C. D., Bowman, D. C., Hill, T., Long, J., Tonchev, A. P., Tornow, W., … Yuan, V. (2008). Measurements of thermal neutron diffraction and inelastic scattering in reactor-grade graphite. Nuclear Science and Engineering, 159(2), 182–198. https://doi.org/10.13182/NSE159-182
Bowman, C. D., D. C. Bowman, T. Hill, J. Long, A. P. Tonchev, W. Tornow, F. Trouw, et al. “Measurements of thermal neutron diffraction and inelastic scattering in reactor-grade graphite.” Nuclear Science and Engineering 159, no. 2 (January 1, 2008): 182–98. https://doi.org/10.13182/NSE159-182.
Bowman CD, Bowman DC, Hill T, Long J, Tonchev AP, Tornow W, et al. Measurements of thermal neutron diffraction and inelastic scattering in reactor-grade graphite. Nuclear Science and Engineering. 2008 Jan 1;159(2):182–98.
Bowman, C. D., et al. “Measurements of thermal neutron diffraction and inelastic scattering in reactor-grade graphite.” Nuclear Science and Engineering, vol. 159, no. 2, Jan. 2008, pp. 182–98. Scopus, doi:10.13182/NSE159-182.
Bowman CD, Bowman DC, Hill T, Long J, Tonchev AP, Tornow W, Trouw F, Vogel S, Walter RL, Wender S, Yuan V. Measurements of thermal neutron diffraction and inelastic scattering in reactor-grade graphite. Nuclear Science and Engineering. 2008 Jan 1;159(2):182–198.

Published In

Nuclear Science and Engineering

DOI

ISSN

0029-5639

Publication Date

January 1, 2008

Volume

159

Issue

2

Start / End Page

182 / 198

Related Subject Headings

  • Energy
  • 4019 Resources engineering and extractive metallurgy
  • 0915 Interdisciplinary Engineering