Damage analysis and fundamental studies. Quarterly progress report, January-March 1982
Technical Report
·
OSTI ID:5256163
Information is given for each of the following topics: (1) RTNS-II irradiations and operations, (2) room-return neutron flux measurements of RTNS-II, (3) RTNS-II fluence mapping and helium generation cross sections, (4) helium accumulation neutron dosimetry, (5) combined helium accumulation and radiometric dosimetry for Be(d,n) neutron spectra, (6) neutron dosimetry for HFIR-CTR32 irradiation, (7) impact of /sup 59/Ni(n,..cap alpha..)/sup 56/Fe reaction on damage calculations for HFIR, (8) solid and gas transmutation production code development, (9) primary recoil energy spectra for the (n,..gamma..) reaction, (10) thresholds in damage energy calculations, (11) channeling in displacement cascades, (12) cascade quenching and short-term annealing, (13) 14-MeV neutron irradiation of copper alloys, (14) yield strength-microhardness comparisons in 14-MeV irradiated vanadium and titanium, (15) critical flaws in fusion materials, (16) local displacement fields in irradiated materials, (17) correlation of yield strength changes in SS 316, (18) influence of dislocation density and radiation on carbon activity in AISI 316, (19) microchemical examination of annealed AISI 316, and (20) factors influencing the swelling of 300 series stainless steels. (MOW)
- Research Organization:
- Department of Energy, Washington, DC (USA). Office of Fusion Energy
- OSTI ID:
- 5256163
- Report Number(s):
- DOE/ER-0046/9; ON: DE82016359
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
36 MATERIALS SCIENCE
360106 -- Metals & Alloys-- Radiation Effects
70 PLASMA PHYSICS AND FUSION TECHNOLOGY
700209* -- Fusion Power Plant Technology-- Component Development & Materials Testing
ALLOYS
BARYON REACTIONS
CHROMIUM ALLOYS
CHROMIUM STEELS
CHROMIUM-NICKEL STEELS
CORROSION RESISTANT ALLOYS
CRYSTAL STRUCTURE
DOSIMETRY
ELEMENTS
FLUIDS
GAS PRODUCTION RATES
GASES
HADRON REACTIONS
HEAT RESISTANT MATERIALS
HEAT RESISTING ALLOYS
HELIUM
IRON ALLOYS
IRON BASE ALLOYS
MATERIALS
MATERIALS TESTING
MECHANICAL PROPERTIES
MICROSTRUCTURE
MOLYBDENUM ALLOYS
NEUTRON DOSIMETRY
NEUTRON REACTIONS
NICKEL ALLOYS
NONMETALS
NUCLEAR REACTIONS
NUCLEON REACTIONS
PHYSICAL RADIATION EFFECTS
RADIATION EFFECTS
RARE GASES
RESEARCH PROGRAMS
STAINLESS STEEL-316
STAINLESS STEELS
STEELS
SWELLING
TESTING
THERMONUCLEAR REACTOR MATERIALS
TITANIUM ALLOYS
VANADIUM ALLOYS
YIELD STRENGTH
360106 -- Metals & Alloys-- Radiation Effects
70 PLASMA PHYSICS AND FUSION TECHNOLOGY
700209* -- Fusion Power Plant Technology-- Component Development & Materials Testing
ALLOYS
BARYON REACTIONS
CHROMIUM ALLOYS
CHROMIUM STEELS
CHROMIUM-NICKEL STEELS
CORROSION RESISTANT ALLOYS
CRYSTAL STRUCTURE
DOSIMETRY
ELEMENTS
FLUIDS
GAS PRODUCTION RATES
GASES
HADRON REACTIONS
HEAT RESISTANT MATERIALS
HEAT RESISTING ALLOYS
HELIUM
IRON ALLOYS
IRON BASE ALLOYS
MATERIALS
MATERIALS TESTING
MECHANICAL PROPERTIES
MICROSTRUCTURE
MOLYBDENUM ALLOYS
NEUTRON DOSIMETRY
NEUTRON REACTIONS
NICKEL ALLOYS
NONMETALS
NUCLEAR REACTIONS
NUCLEON REACTIONS
PHYSICAL RADIATION EFFECTS
RADIATION EFFECTS
RARE GASES
RESEARCH PROGRAMS
STAINLESS STEEL-316
STAINLESS STEELS
STEELS
SWELLING
TESTING
THERMONUCLEAR REACTOR MATERIALS
TITANIUM ALLOYS
VANADIUM ALLOYS
YIELD STRENGTH