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36 .
L. E. Raraty , ' A comment on diffusion creep deformation in a magnesium
reactor component', J Nucl Mater , 20 ( 1966 ) 344 -348.
37 .
J. Wolfenstine , O. A. Ruano , J. Wadsworth and O. D. Sherby , ' Refutation of the
relationship between denuded zones and diffusional creep', Scr Metall Mater ,
29 ( 1993 ) 515 -520.
38 .
G. W. Greenwood , ' Denuded zones and diffusional creep ', Scripta Metall
Mater , 30 ( 1994 ) 1527 -1530.
39 .
J. B. Bilde-Sorensen and D. A. Smith , ' Comment on the refutation of the rela-
tionship between denuded zones and diffusional creep', Scripta Metall Mater ,
30 ( 1994 ) 383386 .
40 .
B. Burton and G. L. Reynolds , ' In defense of diffusional creep ', Mater Sci Eng ,
191A ( 1995 ) 135 -141.
41 .
W. Jaeger and H. Gleiter , ' Grain boundaries as vacancy sources in diffusional
creep ', Scripta Metall , 12 ( 1978 ) 675 -678.
42 .
K. R. McNee , G. W. Greenwood and H. Jones , ' Observation and interpreta-
tion of some microstructural features of low stress creep', Scripta Mater , 47
( 2002 ) 619 -623.
43 .
F. A. Mohamed and T. J. Ginter , ' On the nature and origin of Harper-Dorn
creep ', Acta Metall , 30 ( 1982 ) 1869 -1881.
44 .
I. M. Lifshitz , ' On the theory of diffusion viscous fl ow of polycrystalline bod-
ies ', Soviet Phys JETP , 17 ( 1963 ) 909 -920.
45 .
W. A. Rachinger , ' Relative grain translations in the plastic fl ow of aluminum',
J Inst Met , 81 ( 1952 -1953), 33 -41.
46 .
M. F. Ashby and R. A. Verall , ' Diffusion accommodated fl ow and superplas-
ticity ', Acta Metall , 21 ( 1973 ) 149 -163.
47 .
J. R. Spingarn and W. D. Nix , ' Diffusional creep and diffusionally accommo-
dated grain rearrangement', Acta Metall , 26 ( 1978 ) 1389 -1398.
48 .
A. Ball and M. M. Hutchison , ' Superplasticity in aluminum-zinc eutectoid ',
J Met Sci , 3 ( 1969 ) 1 -7.
49 .
T. G. Langdon , ' An estimate of the time to fracture due to triple point crack-
ing ', Phil Mag , 26 ( 1970 ) 945 -948.
50 .
A. K. Mukherjee , ' The rate controlling mechanism in superplasticity ', Mater
Sci Eng , 8A ( 1971 ) 83 -89.
51 .
A. Arieli and A. K. Mukherjee , ' A model for the rate controlling mechanism
in superplasticity', Mater Sci Eng , 45A ( 1980 ) 61 -70.
￿ ￿ ￿ ￿ ￿ ￿
52 .
M. E. Kassner and M. T. Perez-Prado , Fundamentals of Creep in Metals and
Alloys , New York : Elsevier , 2004 .
53 .
F. Ochoa , X. Deng and N. Chawla , ' Effect of cooling rate on creep behavior of
a Sn-3.5Ag alloy', J Electron Mater , 33 ( 2004 ) 1596 -1607.
54 .
J. Weertman , ' Theory of steady state creep based on dislocation climb ', J Appl
Phys , 26 ( 1955 ), 1213 -1217.
55 .
J. C. Fisher , ' On the strength of solid solution alloys ', Acta Metall , 2 ( 1954 )
9 -10.
56 .
R. C. Gifkins , ' Grain boundary sliding and its accommodation during creep
and superplasticity', Metall Trans , 7A ( 1976 ) 1225 -1232.
57 .
S. Gollapudi , I. Charit and K. L. Murty , ' Creep mechanisms in Ti- 3Al-2.5V
tubing deformed under closed-end internal gas pressurization', Acta Mater ,
56 ( 2008 ) 2406 -2419.
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