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ASTM Selected Technical Papers
Effects of Radiation on Materials: Sixteenth International Symposium
By
AE Kumar
AE Kumar
1
University of Missouri-Rolla
,
Rolla, MO
;
symposium chairman and editor
.
Search for other works by this author on:
DS Gelles
DS Gelles
2
Battelle Pacific Northwest Laboratory
,
Richland, WA
;
symposium cochairman and editor
.
Search for other works by this author on:
RK Nanstad
RK Nanstad
3
Oak Ridge National Laboratory
,
Oak Ridge, TN
;
symposium cochairman and editor
.
Search for other works by this author on:
TA Little
TA Little
4
Harwell Laboratory
,
Oxfordshire,
UK
;
symposium cochairman and editor
.
Search for other works by this author on:
ISBN-10:
0-8031-1488-5
ISBN:
978-0-8031-1488-3
No. of Pages:
1344
Publisher:
ASTM International
Publication date:
1994

The influence of aluminum and titanium on the helium bubble microstructure formation in nickel and its alloys was investigated using transmission electron microscopy (TEM), thermal desorption spectroscopy (TDS), electrical resistance, and microhardness measurements. The helium implantation was carried out at room temperature (cold implantation) and at 750°C (high-temperature implantation) up to dose 5 ∙ 1020 m-2. The materials used were nickel base alloys with aluminum content of 0 to 7.5 wt.% and with titanium content of 0 to 8.3 wt.%. A substantial influence of aluminum and titanium on the helium bubble microstructure parameters has been established. The results are discussed in terms of helium trapping in the solution taking into account the formation of a secondary phase.

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,”
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