A micromechanically based continuum damage model is presented to analyze the stress, temperature and hydrogen pressure dependent material degradation process termed hydrogen attack, inside a pressure vessel. Hydrogen attack (HA) is the damage process of grain boundary facets due to a chemical reaction of carbides with hydrogen, thus forming cavities with high pressure methane gas. Driven by the methane gas pressure, the cavities grow, while remote tensile stresses can significantly enhance the cavitation rate. The damage model gives the strain-rate and damage rate as a function of the temperature, hydrogen pressure and applied stresses. The model is applied to study HA in a vessel wall, where nonuniform distributions of hydrogen pressure, t...
In pressure vessels contain hydrogen, the role of hydrogen will be important because of hydrogen cra...
Tensile tests in air with hydrogen pre-charged smooth specimens and slow strain rate tests with smoo...
Hydrogen attack is a damage mechanism occurring in steels exposed to high pressure hydrogen at eleva...
A micromechanically based continuum damage model is presented to analyze the stress, temperature and...
Hydrogen attack is a material degradation process that occurs at elevated temperatures in hydrogen-r...
Reactors for hydrocracking and hydrotreating are exposed to high hydrogen pressures at elevated temp...
Hydrogen attack is a material degradation process that occurs at elevated temperatures in hydrogen-r...
Abstract—The material degradation process hydrogen attack has its origin in the dissolved hydrogen w...
Hydrogen attack is a material degradation process that occurs at elevated temperatures in hydrogen-r...
High temperature hydrogen attack (HTHA) is a form of surface decarburization, internal decarburizati...
The material degradation process hydrogen attack has its origin in the dissolved hydrogen which reac...
A model is presented to estimate the lifetime under hydrogen attack (HA) conditions. The first ingre...
Abstract-A model is presented to estimate the lifetime under hydrogen attack (HA) conditions. The fi...
The mechanical properties of steel are degraded due to the presence of hydrogen, also known as hydro...
ABSTRACT: Stress corrosion cracking is an important and complexmode of failure in high-performance s...
In pressure vessels contain hydrogen, the role of hydrogen will be important because of hydrogen cra...
Tensile tests in air with hydrogen pre-charged smooth specimens and slow strain rate tests with smoo...
Hydrogen attack is a damage mechanism occurring in steels exposed to high pressure hydrogen at eleva...
A micromechanically based continuum damage model is presented to analyze the stress, temperature and...
Hydrogen attack is a material degradation process that occurs at elevated temperatures in hydrogen-r...
Reactors for hydrocracking and hydrotreating are exposed to high hydrogen pressures at elevated temp...
Hydrogen attack is a material degradation process that occurs at elevated temperatures in hydrogen-r...
Abstract—The material degradation process hydrogen attack has its origin in the dissolved hydrogen w...
Hydrogen attack is a material degradation process that occurs at elevated temperatures in hydrogen-r...
High temperature hydrogen attack (HTHA) is a form of surface decarburization, internal decarburizati...
The material degradation process hydrogen attack has its origin in the dissolved hydrogen which reac...
A model is presented to estimate the lifetime under hydrogen attack (HA) conditions. The first ingre...
Abstract-A model is presented to estimate the lifetime under hydrogen attack (HA) conditions. The fi...
The mechanical properties of steel are degraded due to the presence of hydrogen, also known as hydro...
ABSTRACT: Stress corrosion cracking is an important and complexmode of failure in high-performance s...
In pressure vessels contain hydrogen, the role of hydrogen will be important because of hydrogen cra...
Tensile tests in air with hydrogen pre-charged smooth specimens and slow strain rate tests with smoo...
Hydrogen attack is a damage mechanism occurring in steels exposed to high pressure hydrogen at eleva...