Economic and environmental concerns demand that the power-generation industry seek increased efficiency for gas turbines. Higher efficiency requires higher operating temperatures, with the objective temperature for the hottest sections of new systems {approx} 593 C, and increasing to {approx} 650 C. Because of their good thermal properties, Cr-Mo-V cast ferritic steels are currently used for components such as rotors, casings, pipes, etc., but new steels are required for the new operating conditions. The Oak Ridge National Laboratory (ORNL) has developed new wrought Cr-W-V steels with 3-9% Cr, 2-3% W, 0.25% V (compositions are in wt.%), and minor amounts of additional elements. These steels have the strength and toughness required for turbi...
This project dealt with developing an understanding of the toughening and stengthening mechanisms fo...
Among the options currently taken into account for the realization of the first DEMO reactor there a...
The key step for next generation power plants is the development of advanced materials capable of ac...
There is a need to increase the thermal efficiency of coal fired power plants. High chromium ferriti...
Microstructural features, mechanical and steam oxidation properties of ferritic 18–23 wt% chromium m...
Fossil-fuel fired steam power plants provide more than 60% of the electricity generated worldwide, a...
Since greater high-temperature strength is required for maintaining high-performance turbo-chargers ...
Steel castings made of creep resistant steels play a key role in fossil fuel fired power plants, for...
In automotive turbo-chargers, excellent high-temperature properties are needed for retaining their s...
High chromium ferritic steels such as Grade 91 and Grade 92 are extensively used in the power plant ...
Single-phase, Laves phase strengthened, ferritic steels with a chromium content of 17 wt-% potential...
materials development for advanced fossil-fired power plant, with emphasis on the creep rupture prop...
Fossil-fuel fired steam power plants provide more than 60% of the electricity generated worldwide, a...
Abstract. The higher steam temperatures and pressures required to achieve increase in thermal effici...
The present investigation focuses on a new concept of high strength, high chromium (18-23 wt.%), ful...
This project dealt with developing an understanding of the toughening and stengthening mechanisms fo...
Among the options currently taken into account for the realization of the first DEMO reactor there a...
The key step for next generation power plants is the development of advanced materials capable of ac...
There is a need to increase the thermal efficiency of coal fired power plants. High chromium ferriti...
Microstructural features, mechanical and steam oxidation properties of ferritic 18–23 wt% chromium m...
Fossil-fuel fired steam power plants provide more than 60% of the electricity generated worldwide, a...
Since greater high-temperature strength is required for maintaining high-performance turbo-chargers ...
Steel castings made of creep resistant steels play a key role in fossil fuel fired power plants, for...
In automotive turbo-chargers, excellent high-temperature properties are needed for retaining their s...
High chromium ferritic steels such as Grade 91 and Grade 92 are extensively used in the power plant ...
Single-phase, Laves phase strengthened, ferritic steels with a chromium content of 17 wt-% potential...
materials development for advanced fossil-fired power plant, with emphasis on the creep rupture prop...
Fossil-fuel fired steam power plants provide more than 60% of the electricity generated worldwide, a...
Abstract. The higher steam temperatures and pressures required to achieve increase in thermal effici...
The present investigation focuses on a new concept of high strength, high chromium (18-23 wt.%), ful...
This project dealt with developing an understanding of the toughening and stengthening mechanisms fo...
Among the options currently taken into account for the realization of the first DEMO reactor there a...
The key step for next generation power plants is the development of advanced materials capable of ac...