Performances and physical properties of high technology materials are influenced or even determined by their initial microstructure and by the behavior of impurity phases. Characterizing these impurities and their relations with the surrounding matrix is therefore of primary importance but it unfortunately often requires a destructive approach, with the risk of misinterpreting the observations. The improvement we have done in high resolution X-ray diffraction computed tomography combined with the use of an X-ray nanoprobe allows non-destructive crystallographic description of materials with microscopic heterogeneous microstructure (with a grain size between 10 nm and 10 μm). In this study, the grain localization in a 2D slice of a 20 μm solidified atomized γU-Mo particle is shown and a minority U(C,O) phase (1 wt. %) with sub-micrometer sized grains was characterized inside. Evidence is presented showing that the onset of U(C,O) grain crystallization can be described by a precipitation mechanism since one single U-Mo grain has direct orientation relationship with more than one surrounding U(C,O) grains.

1.
S.
Kashibe
and
K.
Une
, “
Effect of additives (Cr2O3, Al2O3, SiO2, MgO) on diffusional release of 133Xe from UO2 fuels
,”
J. Nucl. Mater.
254
,
234
242
(
1998
).
2.
D. G.
McCartney
, “
Grain refining of aluminium and its alloys using inoculants
,”
Int. Mater. Rev.
34
,
247
260
(
1989
).
3.
Z. W.
Shan
,
R. K.
Mishra
,
S. A. Syed
Asif
,
O. L.
Warren
, and
A. M.
Minor
, “
Mechanical annealing and source-limited deformation in submicrometre-diameter Ni crystals
,”
Nat. Mater.
7
,
115
119
(
2008
).
4.
J.
Zimmermann
,
H.
Van Swygenhoven
,
S.
Van Petegem
, and
C.
Borca
, “
Slip in directionally solidified Mo-alloy micropillars—Part II: Pillars containing defects
,”
Acta Mater.
60
,
4614
4622
(
2012
).
5.
J. C.
Stinville
,
C.
Tromas
,
P.
Villechaise
, and
C.
Templier
, “
Anisotropy changes in hardness and indentation modulus induced by plasma nitriding of 316L polycrystalline stainless steel
,”
Scr. Mater.
64
,
37
40
(
2011
).
6.
J. D.
Wood
,
S. W.
Schmucker
,
A. S.
Lyons
,
E.
Pop
, and
J. W.
Lyding
, “
Effects of polycrystalline Cu substrate on graphene growth by chemical vapor deposition
,”
Nano Lett.
11
,
4547
4554
(
2011
).
7.
J. L.
Snelgrove
,
G. L.
Hofman
,
M. K.
Meyer
,
C. L.
Trybus
, and
T. C.
Wiencek
, “
Development of very-high-density low-enriched-uranium fuels
,”
Nucl. Eng. Des.
178
,
119
126
(
1997
).
8.
Y. S.
Kim
, “
Uranium intermetallic fuels (U–Al, U–Si, U–Mo)
,”
Compr. Nucl. Mater.
3
,
391
422
(
2012
).
9.
Y. S.
Kim
,
J. M.
Park
,
K. H.
Lee
,
B. O.
Yoo
,
H. J.
Ryu
, and
B.
Ye.
, “In-pile test results of U-silicide or U-nitride coated U-7Mo particle dispersion fuel in Al,”
J. Nuclear Mater.
(in press).
10.
A.
Leenaers
,
S. Van den
Berghe
, and
C.
Detavernier
, “
Surface engineering of low enriched uranium–molybdenum
,”
J. Nucl. Mater.
440
,
220
228
(
2013
).
11.
J. M.
Park
,
H. J.
Ryu
,
K. H.
Kim
,
D. B.
Lee
,
Y. S.
Lee
,
J. S.
Lee
,
B. S.
Seong
,
C. K.
Kim
, and
M.
Cornen
, “
Neutron diffraction analyses of U–(6–10 wt. %)Mo alloy powders fabricated by centrifugal atomization
,”
J. Nucl. Mater.
397
,
27
30
(
2010
).
12.
C. K.
Kim
,
J. M.
Park
, and
H. J.
Ryu
, “
Use of a centrifugal atomization process in the development of research reactor fuel
,”
Nucl. Eng. Technol.
39
,
617
626
(
2007
).
13.
A. E.
Dwight
, “
The uranium-molybdenum equilibrium diagram below 900 °C
,”
J. Nucl. Mater.
2
,
81
87
(
1960
).
14.
H.
Palancher
,
A.
Bonnin
,
V.
Honkimäki
,
H.
Suhonen
,
P.
Cloetens
,
T.
Zweifel
,
R.
Tucoulou
,
A.
Rack
, and
M.
Voltolini
, “
Coating thickness determination in highly absorbent core-shell systems
,”
J. Appl. Crystallogr.
45
,
906
913
(
2012
).
15.
V. V.
Joshi
,
E. A.
Nyberg
,
C. A.
Lavender
,
D.
Paxton
,
H.
Garmestani
, and
D. E.
Burkes
, “
Thermomechanical process optimization of U-10 wt. % Mo—Part 1: high-temperature compressive properties and microstructure
,”
J. Nucl. Mater.
(in press).
16.
C.
Jarousse
,
G.
Bourdat
,
M.
Ripert
,
P.
Boulcourt
, and
P.
Lemoine
, in
Proceedings of RRFM
,
Hamburg, Germany
, 2–5 March
2008
.
17.
S.
Zaefferer
,
S. I.
Wright
, and
D.
Raabe
, “
Three-dimensional orientation microscopy in a focused ion beam-scanning electron microscope: A new dimension of microstructure characterization
,”
Metall. Mater. Trans. A
39
,
374
(
2008
).
18.
S. R.
Stock
,
F. De
Carlo
, and
J. D.
Almer
, “
High energy x-ray scattering tomography applied to bone
,”
J. Struct. Biol.
161
,
144
150
(
2008
).
19.
G.
Artioli
,
T.
Cerulli
,
G.
Cruciani
,
M. C.
Dalconi
,
G.
Ferrari
,
M.
Parisatto
,
A.
Rack
, and
R.
Tucoulou
, “
X-ray diffraction microtomography (XRD-CT), a novel tool for non-invasive mapping of phase development in cement materials
,”
Anal. Bioanal. Chem.
397
,
2131
2136
(
2010
).
20.
P.
Bleuet
,
E.
Welcomme
,
E.
Dooryhée
,
J.
Susini
,
J.-L.
Hodeau
, and
P.
Walter
, “
Probing the structure of heterogeneous diluted materials by diffraction tomography
,”
Nat. Mater.
7
,
468
473
(
2008
).
21.
H.
Palancher
,
R.
Tucoulou
,
P.
Bleuet
,
A.
Bonnin
,
E.
Welcomme
, and
P.
Cloetens
, “
Hard x-ray diffraction scanning tomography with sub-micrometre spatial resolution: Application to an annealed γ-U0.85Mo0.15 particle
,”
J. Appl. Crystallogr.
44
,
1111
1119
(
2011
).
22.
W. De
Nolf
and
K.
Janssens
, “
Micro X-ray diffraction and fluorescence tomography for the study of multilayered automotive paints
,”
Surf. Interface Anal.
42
,
411
418
(
2010
).
23.
S. D. M.
Jacques
,
M. Di
Michiel
,
A. M.
Beale
,
T.
Sochi
,
M. G.
O'Brien
,
L.
Espinosa-Alonso
,
B. M.
Weckhuysen
, and
P.
Barnes
, “
Dynamic x-ray diffraction computed tomography reveals real-time insight into catalyst active phase evolution
,”
Angew. Chem. Int. Ed.
50
,
10148
10152
(
2011
).
24.
G.
Martínez-Criado
,
R.
Tucoulou
,
P.
Cloetens
,
P.
Bleuet
,
S.
Bohic
,
J.
Cauzid
,
I.
Kieffer
,
E.
Kosior
,
S.
Labouré
,
S.
Petitgirard
 et al., “
Status of the hard X-ray microprobe beamline ID22 of the European synchrotron radiation facility
,”
J. Synchrotron Radiat.
19
,
10
18
(
2012
).
25.
A. P.
Hammersley
,
S. O.
Svensson
,
M.
Hanfland
,
A. N.
Fitch
, and
D.
Hausermann
,
High Pressure Res.
14
,
235
248
(
1996
).
26.
See supplementary material at http://dx.doi.org/10.1063/1.4894009 for supplementary figures.
27.
H. F.
Poulsen
,
Three-dimensional X-ray Diffraction Microscopy: Mapping Polycrystals and their Dynamics
(
Springer
,
2004
), Vol. 205, p.
XI
.
28.
A.
King
,
G.
Johnson
,
D.
Engelberg
,
W.
Ludwig
, and
J.
Marrow
, “
Observations of intergranular stress corrosion cracking in a grain-mapped polycrystal
,”
Science
321
,
382
385
(
2008
).
29.
S.
Schmidt
, “
GrainSpotter: A fast and robust polycrystalline indexing algorithm
,”
J. Appl. Crystallogr.
47
,
276
284
(
2014
).
30.
W. R.
Busing
and
H. A.
Levy
, “
Angle calculations for 3- and 4-circle X-ray and neutron diffractometers
,”
Acta Crystallogr.
22
,
457
464
(
1967
).
31.
R.
Reisse
, Ph.D. thesis,
Lyon University
, France,
1972
.
32.
K.
Korniyenko
,
Carbon-Molybdenum-Uranium
, Ternary Alloy Systems, Landölt-Börnstein, Group IV Physical Chemistry Vol. 112, edited by
G.
Effenberg
and
S.
Ilyenko
(
Springer Berlin
,
Heidelberg
,
2007
), pp.
90
114
.

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