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Effects of the Neutron Spectrum on Mechanical Property Changes in Low Dose Irradiations

机译:中子谱对低剂量辐照力学性质变化的影响

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Mechanical property measurements from comparative low dose irradiations of metals and alloys are reviewed. The emphasis is on recent experiments involving miniature tensile specimens irradiated at the Rotating Target Neutron Source II (RTNS-II) at Lawrence Livermore National Laboratory and the Omega West Reactor at Los Alamos National Laboratory. Pure metals, model alloys and structural alloys have been irradiated in RTNS-II from room temperature to 723 deg K to fluences as high as 8 x 10 sup 22 n/m sup 2 . Where temperature effects are apparent, the effect of increasing the irradiation temperature is to delay the onset of irradiation hardening to higher fluence. Companion fission reactor irradiations have been more limited in scope, but comparative information has been Mbtained on tensile properties at irradiation temperatures of 363 deg K and 563 deg K. For most of the materials tested the differences in the neutron energy spectrum can be accounted for by using displacements per atom (DPA) as a correlation parameter. Pure copper and niobium are well known exceptions. There is also evidence for rate effects in some of the data, obscuring the examination of dpa as a correlation parameter. 19 refs., 12 figs., 1 tab. (ERA citation 13:017909)

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