International audienceThe consequences of hydrogen on the formation and growth of GP zones during natural ageing in an Al-5Cu alloy is investigated experimentally down to the atomic scale and numerically using ab initio calculations. As observed through scanning/transmission electron microscopy, the hardening kinetic is delayed due to a slower growth of GP zones during natural ageing when hydrogen is incorporated. According to ab initio calculations, the delayed hardening results from hydrogen trapped in vacancies that reduce significantly the diffusion coefficient of copper and the self diffusion of aluminium. This reduction of the diffusion coefficient is either due to hydrogen being in the path of the atom that exchange with the vacancy ...
The presence of elemental hydrogen is known to accelerate fatigue crack growth in aluminum alloys. H...
We discuss hydrogen diffusion and solubility in aluminum alloyed Fe-Mn alloys. The systems of intere...
It is well established that Al-Zn-Mg-(Cu) aluminum alloys are susceptible to hydrogen environment as...
International audienceThe consequences of hydrogen on the formation and growth of GP zones during na...
International audienceThe consequences of hydrogen on the formation and growth of GP zones during na...
International audienceThe consequences of hydrogen on the formation and growth of GP zones during na...
International audienceThe influence of hydrogen on the structural evolutions of an Al-Mg-Si alloy du...
International audienceThe influence of hydrogen on the structural evolutions of an Al-Mg-Si alloy du...
International audienceThe influence of hydrogen on the structural evolutions of an Al-Mg-Si alloy du...
International audienceThe influence of hydrogen on the structural evolutions of an Al-Mg-Si alloy du...
International audienceThe susceptibility to hydrogen embrittlement (HE) of the 7046 aluminium alloy ...
We discuss hydrogen diffusion and solubility in aluminum alloyed Fe-Mn alloys. The systems of intere...
We discuss hydrogen diffusion and solubility in aluminum alloyed Fe-Mn alloys. The systems of intere...
Alloying with aluminium can mitigate the hydrogen embrittlement of twinning-induced plasticity steel...
Due to its high diffusivity, hydrogen is often considered a weak inhibitor or even a promoter of dis...
The presence of elemental hydrogen is known to accelerate fatigue crack growth in aluminum alloys. H...
We discuss hydrogen diffusion and solubility in aluminum alloyed Fe-Mn alloys. The systems of intere...
It is well established that Al-Zn-Mg-(Cu) aluminum alloys are susceptible to hydrogen environment as...
International audienceThe consequences of hydrogen on the formation and growth of GP zones during na...
International audienceThe consequences of hydrogen on the formation and growth of GP zones during na...
International audienceThe consequences of hydrogen on the formation and growth of GP zones during na...
International audienceThe influence of hydrogen on the structural evolutions of an Al-Mg-Si alloy du...
International audienceThe influence of hydrogen on the structural evolutions of an Al-Mg-Si alloy du...
International audienceThe influence of hydrogen on the structural evolutions of an Al-Mg-Si alloy du...
International audienceThe influence of hydrogen on the structural evolutions of an Al-Mg-Si alloy du...
International audienceThe susceptibility to hydrogen embrittlement (HE) of the 7046 aluminium alloy ...
We discuss hydrogen diffusion and solubility in aluminum alloyed Fe-Mn alloys. The systems of intere...
We discuss hydrogen diffusion and solubility in aluminum alloyed Fe-Mn alloys. The systems of intere...
Alloying with aluminium can mitigate the hydrogen embrittlement of twinning-induced plasticity steel...
Due to its high diffusivity, hydrogen is often considered a weak inhibitor or even a promoter of dis...
The presence of elemental hydrogen is known to accelerate fatigue crack growth in aluminum alloys. H...
We discuss hydrogen diffusion and solubility in aluminum alloyed Fe-Mn alloys. The systems of intere...
It is well established that Al-Zn-Mg-(Cu) aluminum alloys are susceptible to hydrogen environment as...