Pressurized thermal creep tubes of highly purified V-4Cr-4Ti, the NIFS-Heat2 alloy have been examined following testing in the range 700 to 850°C. It was found that the creep stress exponent of the NIFS-Heat2 alloy is about 5 and that the characteristic creep mechanism was the dislocation creep usually observed in pure metals. The apparent activation energy of creep deformation is about 210kJ/mol in the temperature range 700 to 850°C. Creep deformation was considered to be controlled by climb-controlled dislocation glide at 850°C, where sub-grain boundary structure predominates and consists of dislocation dipole structures and pile-ups of dislocations
The creep properties of high-purity, polycrystalline chromium were determined over the temperature r...
This dissertation presents the results of investigated low temperature creep behavior of a metastabl...
The understanding of the creep behavior of nuclear fuel claddings is essential to predict safely and...
Pressurized thermal creep tubes of highly purified V-4Cr-4Ti, the NIFS-Heat2 alloy have been examine...
We are undertaking a systematic study at Argonne National Laboratory to evaluate the uniaxial creep ...
Abstract We are undertaking a systematic study at Argonne National Laboratory to evaluate the uniaxi...
A fabrication process for pressurized creep tubes (PCTs) for a highly purified V–4Cr–4Ti alloy, NIFS...
In order to investigate the effect of the environment on the irradiation creep properties of highly ...
A study of irradiation creep in vanadium-base alloys is underway with experiments in the Advanced Te...
Vanadium alloys have been proposed as structural materials for fusion reactors. Although favorable h...
Microstructural examinations have been performed on irradiation-creep and thermal-creep pressurized ...
International audienceASTRID is a fast-reactor prototype for the 4th generation of nuclear power pla...
Alloy 617, a nickel‑based alloy, is a leading candidate for application in next‑generation nuclear p...
We present in this paper the creep behavior of Ti-6Al-4V from 450°C to 600°C under applied stress fr...
Post-processing heat treatments of Ti-6Al-4V parts produced by additive manufacturing are essential ...
The creep properties of high-purity, polycrystalline chromium were determined over the temperature r...
This dissertation presents the results of investigated low temperature creep behavior of a metastabl...
The understanding of the creep behavior of nuclear fuel claddings is essential to predict safely and...
Pressurized thermal creep tubes of highly purified V-4Cr-4Ti, the NIFS-Heat2 alloy have been examine...
We are undertaking a systematic study at Argonne National Laboratory to evaluate the uniaxial creep ...
Abstract We are undertaking a systematic study at Argonne National Laboratory to evaluate the uniaxi...
A fabrication process for pressurized creep tubes (PCTs) for a highly purified V–4Cr–4Ti alloy, NIFS...
In order to investigate the effect of the environment on the irradiation creep properties of highly ...
A study of irradiation creep in vanadium-base alloys is underway with experiments in the Advanced Te...
Vanadium alloys have been proposed as structural materials for fusion reactors. Although favorable h...
Microstructural examinations have been performed on irradiation-creep and thermal-creep pressurized ...
International audienceASTRID is a fast-reactor prototype for the 4th generation of nuclear power pla...
Alloy 617, a nickel‑based alloy, is a leading candidate for application in next‑generation nuclear p...
We present in this paper the creep behavior of Ti-6Al-4V from 450°C to 600°C under applied stress fr...
Post-processing heat treatments of Ti-6Al-4V parts produced by additive manufacturing are essential ...
The creep properties of high-purity, polycrystalline chromium were determined over the temperature r...
This dissertation presents the results of investigated low temperature creep behavior of a metastabl...
The understanding of the creep behavior of nuclear fuel claddings is essential to predict safely and...