Grain boundary engineering has been proposed to increase the lifetime performance of sensitized austenitic stainless steel in aggressive environments. Increased microstructure resistance is typically associated with higher fractions of twin ([sigma]3) grain boundaries, but there is uncertainty about the properties and role of other boundaries. To develop predictive models for stress corrosion crack nucleation, more information is required about how grain boundary crystallography and the orientations of the grain boundary plane and its surrounding grains affect crack development. Digital image correlation combined with electron backscatter diffraction has been used to characterize the microstructure and to observe, in situ, the nucleation an...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
The development of an intergranular stress corrosion crack initiation site in thermally sensitised t...
Stress corrosion cracking is a life-limiting factor in many components of nuclear power plant in whi...
Stress corrosion cracking is a life-limiting factor in many components of nuclear power plant in whi...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Grain boundary engineering of austenitic stainless steel, through the introduction of plastic strain...
Microstructure can have a significant effect on the materials' resistance to intergranular environme...
Previously reported high resolution X-ray tomographic observations of intergranular stress corrosion...
Grain boundary engineering of austenitic stainless steels through plastic strain and thermal anneali...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
Grain boundary engineering has been proposed to increase the lifetime performance of sensitized aust...
The development of an intergranular stress corrosion crack initiation site in thermally sensitised t...
Stress corrosion cracking is a life-limiting factor in many components of nuclear power plant in whi...
Stress corrosion cracking is a life-limiting factor in many components of nuclear power plant in whi...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Grain boundary engineering of austenitic stainless steel, through the introduction of plastic strain...
Microstructure can have a significant effect on the materials' resistance to intergranular environme...
Previously reported high resolution X-ray tomographic observations of intergranular stress corrosion...
Grain boundary engineering of austenitic stainless steels through plastic strain and thermal anneali...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...
Microstructures of type 304 austenitic stainless steel, produced through thermo-mechanical processin...