The phase evolution in a zirconium–50 deuterium (Zr–50D, at.%) alloy system during thermal cycling has been investigated using in situ high-resolution neutron powder diffraction. The results showed that the peritectoid reaction α-Zr + δ-ZrD → γ-ZrD previously suggested to occur at high temperatures does not take place in the system. Slow cooling, from high temperatures (≥520 K) to room temperature at a rate of 5 K min–1, promoted the γ-hydride formation rather than fast cooling as reported earlier. In contrast to the observation that the δ-hydride present in the system remained at temperatures up to 740 K, the produced γ phase transformed to δ-hydride in the temperature range of 370 K to 559 K, with the transformation completing at approxim...
Zirconium alloys have a strong affinity for hydrogen which leads to hydrogen pick-up during a corros...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...
The phase evolution in a zirconium–50 deuterium (Zr–50D, at.%) alloy system during thermal cycling h...
The phase evolution in a zirconium–50 deuterium (Zr–50D, at.%) alloy system during thermal cycling h...
Deuteride phases in the zirconium-deuterium system in the temperature range 25–286 °C have been stud...
International audienceIn hypothetical accidental conditions, zirconium-based nuclear fuel claddings ...
International audienceIn hypothetical accidental conditions, zirconium-based nuclear fuel claddings ...
International audienceIn hypothetical accidental conditions, zirconium-based nuclear fuel claddings ...
Deuteride phases in the zirconium-deuterium system in the temperature range 25-286 degrees C have be...
Deuteride phases in the zirconium-deuterium system in the temperature range 25–286 °C have been stud...
When the concentration of hydrogen exceeds the solubility limit in a metal matrix, metal hydrides ma...
Zirconium alloys have a strong affinity for hydrogen which leads to hydrogen pick-up during a corros...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...
Zirconium alloys have a strong affinity for hydrogen which leads to hydrogen pick-up during a corros...
Zirconium alloys have a strong affinity for hydrogen which leads to hydrogen pick-up during a corros...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...
The phase evolution in a zirconium–50 deuterium (Zr–50D, at.%) alloy system during thermal cycling h...
The phase evolution in a zirconium–50 deuterium (Zr–50D, at.%) alloy system during thermal cycling h...
Deuteride phases in the zirconium-deuterium system in the temperature range 25–286 °C have been stud...
International audienceIn hypothetical accidental conditions, zirconium-based nuclear fuel claddings ...
International audienceIn hypothetical accidental conditions, zirconium-based nuclear fuel claddings ...
International audienceIn hypothetical accidental conditions, zirconium-based nuclear fuel claddings ...
Deuteride phases in the zirconium-deuterium system in the temperature range 25-286 degrees C have be...
Deuteride phases in the zirconium-deuterium system in the temperature range 25–286 °C have been stud...
When the concentration of hydrogen exceeds the solubility limit in a metal matrix, metal hydrides ma...
Zirconium alloys have a strong affinity for hydrogen which leads to hydrogen pick-up during a corros...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...
Zirconium alloys have a strong affinity for hydrogen which leads to hydrogen pick-up during a corros...
Zirconium alloys have a strong affinity for hydrogen which leads to hydrogen pick-up during a corros...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...
Zirconium alloys are widely used in the nuclear industry because of their high strength, good corros...