The failure mechanism of two economizer tubes of a fossil fuelled 260MWpower plant has been investigated through the magnetic Barkhausen emission (MBE) technique along with the conventional and established materials characterization and evaluation techniques (like microstructures, mechanical properties and X-ray diffraction). The longer service exposer period results in the breaking of ferrite–pearlite structure and spheroidization lamellar cementite in ferrite matrix, associating with high magnetic r.m.s. voltage for former structure. The failure mechanism was governed by the cold end corrosion process with the presence of sulfates, and the subsequent erosion through hard quartz particles leads to a localized thinning of outer surface....
Microstructural changes in boiler tubes during prolong operation at high temperature and pressure de...
Boiler tubes of coal-fired thermal power plants, subjected to prolonged exposure at elevated temper...
The paper covers the reasons and remedial measures of various failed components of boiler, turbine ...
A damaged boiler tube removed from the inclined portion of the arch section of the fuel fired furnac...
The main causes of efficiency loss in thermal power plants are boiler tube failures that diminish un...
The failure of industrial boilers has been a prominent feature in fossil fuel fired power plants. ...
Boiler tubes used in power plants and manufacturing industries are susceptible to numerous failures ...
The characterization of microstructures, mechanical properties, deformation, damage initiation, and ...
Creep damage behaviour of water quenched 5Cr–0.5Mo steel has been studied using magnetic Barkhausen ...
Application of magnetic Barkhausen emission (MBE) analysis for assessment of microstructures and dam...
The various stages of fatigue damage in low carbon structural steel have been characterized using ma...
This paper presents a case study of ASME SA213 type-T22 alloy steel superheater tube that failed in ...
Magnetic Barkhausen emission (MBE) technique has been used to assess the low cycle fatigue (LCF) dam...
Low alloy steel such as 1.25Cr–0.50 Mo steel is widely used in thermal power plants, petro-chemical ...
Ferromagnetic properties of steel change with the microstructure, composition and the stress state o...
Microstructural changes in boiler tubes during prolong operation at high temperature and pressure de...
Boiler tubes of coal-fired thermal power plants, subjected to prolonged exposure at elevated temper...
The paper covers the reasons and remedial measures of various failed components of boiler, turbine ...
A damaged boiler tube removed from the inclined portion of the arch section of the fuel fired furnac...
The main causes of efficiency loss in thermal power plants are boiler tube failures that diminish un...
The failure of industrial boilers has been a prominent feature in fossil fuel fired power plants. ...
Boiler tubes used in power plants and manufacturing industries are susceptible to numerous failures ...
The characterization of microstructures, mechanical properties, deformation, damage initiation, and ...
Creep damage behaviour of water quenched 5Cr–0.5Mo steel has been studied using magnetic Barkhausen ...
Application of magnetic Barkhausen emission (MBE) analysis for assessment of microstructures and dam...
The various stages of fatigue damage in low carbon structural steel have been characterized using ma...
This paper presents a case study of ASME SA213 type-T22 alloy steel superheater tube that failed in ...
Magnetic Barkhausen emission (MBE) technique has been used to assess the low cycle fatigue (LCF) dam...
Low alloy steel such as 1.25Cr–0.50 Mo steel is widely used in thermal power plants, petro-chemical ...
Ferromagnetic properties of steel change with the microstructure, composition and the stress state o...
Microstructural changes in boiler tubes during prolong operation at high temperature and pressure de...
Boiler tubes of coal-fired thermal power plants, subjected to prolonged exposure at elevated temper...
The paper covers the reasons and remedial measures of various failed components of boiler, turbine ...