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- W2007792785 abstract "The ultrasonic testing technique is widely used for obtaining information about the microstructural and mechanical properties of metals in recent years. An advantage of using ultrasonic testing over that of traditional testing methods, such as hardness testing, is that it enables the extraction of information about the structural state of the material through volume measurement averaged throughout the thickness of the sample without recourse to destructive testing. In the present work, isothermal annealing of 20% cold worked Ti-modified 15Cr-15Ni-2.2Mo austenitic stainless steel often referred to as alloy D-9 was characterized by carrying out ultrasonic velocity measurements. Furthermore, variation in ultrasonic velocity with aging time was compared with that of hardness measurements. Alloy D-9, which conforms to ASTM A771 (UNS S38660), has been chosen as the prime candidate material for the fuel clad and hexagonal wrapper for the fuel subassemblies of the Prototype Fast Breeder Reactor. This material would be used at elevated temperatures in cold worked condition. At the elevated service temperatures, microstructural degradation and loss of prior cold work may occur. Metallography and hardness testing techniques could be used to obtain information about the degradation of microstructure of these core components during the post-irradiation examination. However, these techniques wouldmore » be cumbersome when applied to testing of highly radioactive materials. Hence developing simple techniques to study the changes in the microstructure of cold worked material exposed to elevated temperatures and irradiation environment assumes importance.« less" @default.
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- W2007792785 date "1994-06-01" @default.
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- W2007792785 title "A novel technique for characterizing annealing behaviour" @default.
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- W2007792785 doi "https://doi.org/10.1016/0956-716x(94)90249-6" @default.
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