AbstractThe practical importance of fatigue failure in steam turbine materials has directed many experimental research towards assessing the physical reason for material sensitivity to corrosion fatigue and providing design rules for engineers. Metallic materials used in steam turbine are exposed to cyclic loading at high temperature and steam environment, during their service life. In this study, an original fatigue testing setup was developed to investigate the effect of aqueous solutions and temperature on the fatigue strength on the martensitic stainless steel X19CrMoVNbN11-1 used for rotating blades and (ii) a cast G17CrMoV5-10 steel used for casing. Fatigue tests were carried out in two environments: (i) in air at 90°C and (ii) in dis...
Fatigue-resisting qualities of some stainless steels used in the manufacture of hydraulic turbines. ...
AbstractCorrosion fatigue strength of stainless steels is controlled by tangled interaction among en...
The steam turbine blade in question had failed by fatigue. The fatigue crack had initiated at the t...
AbstractThe practical importance of fatigue failure in steam turbine materials has directed many exp...
Abstract Several cases of undefined conditions during operation of steam turbines, such as shut down...
AbstractCracks were analysed at the root of the third blade row of low-pressure steam turbine blades...
An investigation has been undertaken to examine the fatigue behaviour of two martensitic steels in a...
LectureFor mechanical drive steam turbines, the investigation results of corrosion fatigue phenomen...
Stress corrosion cracking of a 14 wt% Cr martensitic stainless steel, with commercial names PH-15Cr5...
This paper addresses the effects of corrosion on the high cycle fatigue (HCF) strength of a high mec...
Low-pressure steam turbine blades are usually made of martensitic steels with Cr contents between 9 ...
Corrosion fatigue phenomena of low-pressure blade on chemical enrichment zone for mechanical-drive s...
AbstractCorrosion fatigue crack initiation behavior of various kinds of stainless steels is reviewed...
Corrosion fatigue phenomena of low-pressure blade on chemical enrichment zone for mechanical-drive s...
Case StudyCase Study 1: Stress corrosion cracking is known to be a function of stress, material and ...
Fatigue-resisting qualities of some stainless steels used in the manufacture of hydraulic turbines. ...
AbstractCorrosion fatigue strength of stainless steels is controlled by tangled interaction among en...
The steam turbine blade in question had failed by fatigue. The fatigue crack had initiated at the t...
AbstractThe practical importance of fatigue failure in steam turbine materials has directed many exp...
Abstract Several cases of undefined conditions during operation of steam turbines, such as shut down...
AbstractCracks were analysed at the root of the third blade row of low-pressure steam turbine blades...
An investigation has been undertaken to examine the fatigue behaviour of two martensitic steels in a...
LectureFor mechanical drive steam turbines, the investigation results of corrosion fatigue phenomen...
Stress corrosion cracking of a 14 wt% Cr martensitic stainless steel, with commercial names PH-15Cr5...
This paper addresses the effects of corrosion on the high cycle fatigue (HCF) strength of a high mec...
Low-pressure steam turbine blades are usually made of martensitic steels with Cr contents between 9 ...
Corrosion fatigue phenomena of low-pressure blade on chemical enrichment zone for mechanical-drive s...
AbstractCorrosion fatigue crack initiation behavior of various kinds of stainless steels is reviewed...
Corrosion fatigue phenomena of low-pressure blade on chemical enrichment zone for mechanical-drive s...
Case StudyCase Study 1: Stress corrosion cracking is known to be a function of stress, material and ...
Fatigue-resisting qualities of some stainless steels used in the manufacture of hydraulic turbines. ...
AbstractCorrosion fatigue strength of stainless steels is controlled by tangled interaction among en...
The steam turbine blade in question had failed by fatigue. The fatigue crack had initiated at the t...