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- W3036730720 abstract "As a simulation study of heavy radiation damage by neutrons, in-situ observation of damage process in molybdenum alloys was performed by a high voltage electron microscope. The objectives of this study are to clarify the processes of defect cluster nucleation and growth, and the role of alloying elements on these in the temperature range from 300K to 1300K. The used molybdenum alloys were Mo-(150-1000)at.ppm.C, Mo-(0.06-0.6)at.%Nb, MO-0.29at.%Hf, MO-(0.026-26)at.%Re and Mo-0.56at.%Ni. The used materials were electron-beam melted and hot rolled at 200-400°C and annealing was performed in the vacuum of l×l0 -7 torr. at 1800°C for 1.0 hr. The standard irradiation conditions were as follows, Accelerating voltage: 1250KV, Beam intensity: l-6×l0 19 e/cm 2 sec, Incident beam direction: <100>, g-vector: {110}, The density of defect clusters was determined by the thickness gradient method. The logarithmic density of interstitial dislocation loops, logN i , increased with the reciprocal irradiation temperature, 1/T. The relation between logN i and 1/T was divided into two Arrhenius type relations above and below 500K." @default.
- W3036730720 created "2020-06-25" @default.
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- W3036730720 date "1978-01-01" @default.
- W3036730720 modified "2023-09-25" @default.
- W3036730720 title "Defect clusters of molybdenum alloys bombarded by HVEM" @default.
- W3036730720 doi "https://doi.org/10.1017/s042482010010915x" @default.
- W3036730720 hasPublicationYear "1978" @default.
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