In this paper, a finite element (FE) model is developed to investigate lattice hydrogen diffusion in a solid metal under the influence of stress and temperature gradients. This model is applied to a plate with a circular hole which is subjected to temperature and hydrogen concentration gradients. It is demonstrated that temperature gradients significantly influence hydrogen diffusion and hence susceptibility to hydrogen embrittlement when utilizing hydrogen for gas turbines
A modelling suite for hydrogen transport during electrochemical permeation, degassing and thermal de...
© 2020 Elsevier Ltd Hydrogen diffusion and its interaction with dislocations play an important r...
AbstractWith the increasing interest in the use of hydrogen as an energy carrier, a better understan...
In this paper, a finite element (FE) model is developed to investigate lattice hydrogen diffusion in...
Hydrogen plays a vital role in the utilisation of renewable energy, but ingress and diffusion of hyd...
Diverse hypotheses are behind the strength degradation in metals due to hydrogen diffusion, leading ...
AbstractIt is well known that hydrogen can have a detrimental effect on the mechanical properties of...
AbstractIt is well known that hydrogen can have a detrimental effect on the mechanical properties of...
It is well known that hydrogen can have a detrimental effect on the mechanical properties of metals....
The presence of hydrogen in a metal microstructure can lead to an unpredictable failure. Hydrogen ge...
Hydrogen diffusion and its interaction with dislocations play an important role in hydrogen embrittl...
Surface peening is a potential method of suppressing hydrogen embrittlement (HE). But experimental o...
Hydrogen diffusion and its interaction with dislocations play an important role in hydrogen embrittl...
The presence of hydrogen in a metal microstructure can lead to an unpredictable failure. Hydrogen ge...
In this paper, we propose a finite element formulation for solving coupled mechanical/diffusion prob...
A modelling suite for hydrogen transport during electrochemical permeation, degassing and thermal de...
© 2020 Elsevier Ltd Hydrogen diffusion and its interaction with dislocations play an important r...
AbstractWith the increasing interest in the use of hydrogen as an energy carrier, a better understan...
In this paper, a finite element (FE) model is developed to investigate lattice hydrogen diffusion in...
Hydrogen plays a vital role in the utilisation of renewable energy, but ingress and diffusion of hyd...
Diverse hypotheses are behind the strength degradation in metals due to hydrogen diffusion, leading ...
AbstractIt is well known that hydrogen can have a detrimental effect on the mechanical properties of...
AbstractIt is well known that hydrogen can have a detrimental effect on the mechanical properties of...
It is well known that hydrogen can have a detrimental effect on the mechanical properties of metals....
The presence of hydrogen in a metal microstructure can lead to an unpredictable failure. Hydrogen ge...
Hydrogen diffusion and its interaction with dislocations play an important role in hydrogen embrittl...
Surface peening is a potential method of suppressing hydrogen embrittlement (HE). But experimental o...
Hydrogen diffusion and its interaction with dislocations play an important role in hydrogen embrittl...
The presence of hydrogen in a metal microstructure can lead to an unpredictable failure. Hydrogen ge...
In this paper, we propose a finite element formulation for solving coupled mechanical/diffusion prob...
A modelling suite for hydrogen transport during electrochemical permeation, degassing and thermal de...
© 2020 Elsevier Ltd Hydrogen diffusion and its interaction with dislocations play an important r...
AbstractWith the increasing interest in the use of hydrogen as an energy carrier, a better understan...