The effects of the steam oxidation process on an austenitic steel (TP347HFG) exposed under isothermal conditions between 600 and 800 °C for up to 2500 h have been investigated. Samples with both as-received and ground surfaces have been exposed and the impact of surface finish on the oxidation process analysed using scanning electron microscopy with energy dispersive X-ray analysis. Exfoliated oxide flakes have also been examined to characterise their microstructures on fractured sections as well as external and spalled surfaces. Microscopic analyses demonstrated that ground surfaces possess better steam oxidation resistance than as-received surfaces due to their ability to form a more protective chromium-rich layer. The formation of region...
Austenitic stainless steels are commonly used as heat exchanger tubing in power plants. As a result,...
The efficiency of ultra-supercritical (USC) steam power plants is limited by the materials propertie...
The corrosion behavior of 304L grade stainless steel (SS) in high-temperature steam and in a simulat...
Ferritic T23 steel and austenitic TP347HFG steel have been studied with an emphasis on understanding...
Steam oxidation has become an important issue for steam power plants as operating temperatures incre...
Steam oxidation has become an important issue for steam power plants as operating temperatures incre...
Steam oxidation of austenitic heat-resistant steels TP347H and TP347HFG at 650⁻800 °C was...
A comprehensive understanding of the steam-side oxidation and spallation properties of austenitic st...
Fossil power plant efficiency is improved by increasing steam temperature and pressure. Current mart...
The present work compares the behaviour of four steels: (T23, T92, T347HFG, Super304H) in the temper...
In this work the steam-side oxidation resistance of various austenitic boiler steels was evaluated. ...
The steam oxidation behavior of inner tube surfaces in the as-manufactured condition for selected ma...
Steam oxidation of heat exchanger tubing is of growing interest as increasing the efficiencies of co...
To improve the efficiency of fossil fuel power plants the operating temperatures and pressures have ...
To improve the efficiency of fossil fuel power plants the operating temperatures and pressures have ...
Austenitic stainless steels are commonly used as heat exchanger tubing in power plants. As a result,...
The efficiency of ultra-supercritical (USC) steam power plants is limited by the materials propertie...
The corrosion behavior of 304L grade stainless steel (SS) in high-temperature steam and in a simulat...
Ferritic T23 steel and austenitic TP347HFG steel have been studied with an emphasis on understanding...
Steam oxidation has become an important issue for steam power plants as operating temperatures incre...
Steam oxidation has become an important issue for steam power plants as operating temperatures incre...
Steam oxidation of austenitic heat-resistant steels TP347H and TP347HFG at 650⁻800 °C was...
A comprehensive understanding of the steam-side oxidation and spallation properties of austenitic st...
Fossil power plant efficiency is improved by increasing steam temperature and pressure. Current mart...
The present work compares the behaviour of four steels: (T23, T92, T347HFG, Super304H) in the temper...
In this work the steam-side oxidation resistance of various austenitic boiler steels was evaluated. ...
The steam oxidation behavior of inner tube surfaces in the as-manufactured condition for selected ma...
Steam oxidation of heat exchanger tubing is of growing interest as increasing the efficiencies of co...
To improve the efficiency of fossil fuel power plants the operating temperatures and pressures have ...
To improve the efficiency of fossil fuel power plants the operating temperatures and pressures have ...
Austenitic stainless steels are commonly used as heat exchanger tubing in power plants. As a result,...
The efficiency of ultra-supercritical (USC) steam power plants is limited by the materials propertie...
The corrosion behavior of 304L grade stainless steel (SS) in high-temperature steam and in a simulat...