This article provides a comprehensive overview of the STRUMAT-LTO project. Embrittlement of the reactor pressure vessel (RPV) due to neutron irradiation and high temperature conditions impose critical challenges for long-term operation (LTO) of pressurized water reactors (PWRs). Significant amount of past research conducted on RPV ageing phenomena has helped to enhance the understanding of the flux effect and the impact of chemical/microstructural heterogeneities on RPV embrittlement. Nonetheless, several unresolved questions regarding RPV embrittlement persist, such as the conflicting viewpoints on the underlying mechanisms that lead to accelerated embrittlement at high fluence conditions in certain low-copper (Cu) RPV steels and the syner...
The Reactor Pressure Vessel (RPV) material of Nuclear Power Plants (NPP) is exposed to neutron irrad...
For the prediction of radiation embrittlement of RPV materials beyond the NPP design time the analys...
The deep understanding of the irradiation embrittlement of the pressure vessel of nuclear reactors i...
This article provides a comprehensive overview of the STRUMAT-LTO project. Embrittlement of the reac...
This article provides a comprehensive overview of the STRUMAT-LTO project. Embrittlement of the reac...
The integrity assessment of the Reactor Pressure Vessel (RPV) is essential for the safe and Long Ter...
The reactor pressure vessel (RPV) is one of the most important elements of a nuclear power plant (NP...
The mechanical properties of reactor pressure vessel (RPV) steels are known to degrade during operat...
The mechanical properties of reactor pressure vessel (RPV) steels are known to degrade during operat...
The possibility of extending the operational life of reactor pressure vessels (RPV) up to 80 years p...
Reactor Pressure Vessel (RPV) materials are well proven suitable materials for nuclear applications....
The possibility of extending the operational life of reactor pressure vessels (RPV) up to 80 years p...
The reactor pressure vessel (RPV) is a key component within a nuclear reactor, as it contains fissio...
Current regulations require RPV steels to maintain conservative margins of fracture toughness so tha...
The deep understanding of the irradiation embrittlement of the pressure vessel of nuclear reactors i...
The Reactor Pressure Vessel (RPV) material of Nuclear Power Plants (NPP) is exposed to neutron irrad...
For the prediction of radiation embrittlement of RPV materials beyond the NPP design time the analys...
The deep understanding of the irradiation embrittlement of the pressure vessel of nuclear reactors i...
This article provides a comprehensive overview of the STRUMAT-LTO project. Embrittlement of the reac...
This article provides a comprehensive overview of the STRUMAT-LTO project. Embrittlement of the reac...
The integrity assessment of the Reactor Pressure Vessel (RPV) is essential for the safe and Long Ter...
The reactor pressure vessel (RPV) is one of the most important elements of a nuclear power plant (NP...
The mechanical properties of reactor pressure vessel (RPV) steels are known to degrade during operat...
The mechanical properties of reactor pressure vessel (RPV) steels are known to degrade during operat...
The possibility of extending the operational life of reactor pressure vessels (RPV) up to 80 years p...
Reactor Pressure Vessel (RPV) materials are well proven suitable materials for nuclear applications....
The possibility of extending the operational life of reactor pressure vessels (RPV) up to 80 years p...
The reactor pressure vessel (RPV) is a key component within a nuclear reactor, as it contains fissio...
Current regulations require RPV steels to maintain conservative margins of fracture toughness so tha...
The deep understanding of the irradiation embrittlement of the pressure vessel of nuclear reactors i...
The Reactor Pressure Vessel (RPV) material of Nuclear Power Plants (NPP) is exposed to neutron irrad...
For the prediction of radiation embrittlement of RPV materials beyond the NPP design time the analys...
The deep understanding of the irradiation embrittlement of the pressure vessel of nuclear reactors i...