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The manifestations of life limiting phenomena in structural materials largely dictates the technological options which can be implemented in power plants. An understanding of these phenomena are therefore critical to set-up power plants based on sustainable technologies. This monograph compiles the research on the three phenomena that degrade the technological properties of steels used for thermal and nuclear power plants. It is therefore relevant to practicing engineers, material scientists and designers needing to know the effect of dynamic strain aging, ratcheting and creep on low alloyed…mehr

Produktbeschreibung
The manifestations of life limiting phenomena in structural materials largely dictates the technological options which can be implemented in power plants. An understanding of these phenomena are therefore critical to set-up power plants based on sustainable technologies. This monograph compiles the research on the three phenomena that degrade the technological properties of steels used for thermal and nuclear power plants. It is therefore relevant to practicing engineers, material scientists and designers needing to know the effect of dynamic strain aging, ratcheting and creep on low alloyed and heat resistant steels used for pressure boundary applications in nuclear and thermal power plants.
Autorenporträt
Dr. Chiradeep Gupta graduated in Production Engineering and subsequent to a brief stint in steel industry, joined Materials Group at Bhabha Atomic Research Centre, India. He obtained his Ph.D in Metallurgical Engineering from Mumbai University in 2008 specializing in mechanical behavior of steels used for power plant structural applications.