Hydride formation is one of the main degradation mechanisms of zirconium alloys in hydrogen-rich environments. When sufficient hydrogen is present, zirconiumhydride precipitates can be formed. Cracking of the brittle hydrides near a crack tip can initiate the growth of a crack leading to the premature failure of the material. Hydride formation is believed to be enhanced by the presence of residual or applied stresses. Therefore, the increase in the stress field ahead of a crack tip may promote precipitation of additional hydrides. In order to verify these phenomena, the effect of internal stresses on the zirconium-hydride-precipitate formation, and in turn, the influence of the hydrides on the subsequent intergranular strain evolution in a ...
Via molecular dynamics simulations, the effects of hydrogen on stress evolution of -zirconium and cr...
Via molecular dynamics simulations, the effects of hydrogen on stress evolution of -zirconium and cr...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...
Hydride formation is one of the main degradation mechanisms of zirconium alloys in hydrogen-rich env...
Zircaloy-4 alloys, polycrystalline zirconium alloys, are extensively used in the nuclear industry. D...
Due to their low thermal neutron capture cross-section, adequate mechanical strength and high corros...
[[abstract]]Zircaloy-4 plate specimens were gaseously hydrided up to 220 ppm H and then tested in a ...
[[abstract]]ZIRCALOY-4 plate specimens were gaseously hydrided up to 340 ppm H and then tested in a ...
By drawing together the current theoretical and experimental understanding of the phenomena of delay...
International audienceThe influence of a hydrogen concentration gradient at the crack-tip and hydrid...
The effect of pressure on the room temperature solubility of hydrogen in Zircaloy-4 was examined usi...
[[abstract]]Zircaloy-4 plate specimens were gaseously hydrided up to 180 ppm H. The specimens were t...
The effect of pressure on the room temperature solubility of hydrogen in Zircaloy-4 was examined usi...
The effect of pressure on the room temperature solubility of hydrogen in Zircaloy-4 was examined usi...
Zircaloy-4 is widely used as a nuclear fuel cladding material in light water reactors (LWRs). Howeve...
Via molecular dynamics simulations, the effects of hydrogen on stress evolution of -zirconium and cr...
Via molecular dynamics simulations, the effects of hydrogen on stress evolution of -zirconium and cr...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...
Hydride formation is one of the main degradation mechanisms of zirconium alloys in hydrogen-rich env...
Zircaloy-4 alloys, polycrystalline zirconium alloys, are extensively used in the nuclear industry. D...
Due to their low thermal neutron capture cross-section, adequate mechanical strength and high corros...
[[abstract]]Zircaloy-4 plate specimens were gaseously hydrided up to 220 ppm H and then tested in a ...
[[abstract]]ZIRCALOY-4 plate specimens were gaseously hydrided up to 340 ppm H and then tested in a ...
By drawing together the current theoretical and experimental understanding of the phenomena of delay...
International audienceThe influence of a hydrogen concentration gradient at the crack-tip and hydrid...
The effect of pressure on the room temperature solubility of hydrogen in Zircaloy-4 was examined usi...
[[abstract]]Zircaloy-4 plate specimens were gaseously hydrided up to 180 ppm H. The specimens were t...
The effect of pressure on the room temperature solubility of hydrogen in Zircaloy-4 was examined usi...
The effect of pressure on the room temperature solubility of hydrogen in Zircaloy-4 was examined usi...
Zircaloy-4 is widely used as a nuclear fuel cladding material in light water reactors (LWRs). Howeve...
Via molecular dynamics simulations, the effects of hydrogen on stress evolution of -zirconium and cr...
Via molecular dynamics simulations, the effects of hydrogen on stress evolution of -zirconium and cr...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...