The presence of elemental hydrogen is known to accelerate fatigue crack growth in aluminum alloys. However, a direct link between experimental data and the governing atomistic mechanisms has remained elusive. Here we present a series of computational studies, across multiple length scales, directly linking an atomistic mechanism to experimental data for a specific aluminum alloy. Starting with an ab initio investigation of hydrogen bonding near the (1 1 1) aluminum surface, we quantify the effects of hydrogen surface impurities on slip and decohesion. We then modify an aluminum-only interatomic potential to reproduce ab initio trends by strategically shielding critical surface bonds in accordance with the environmental exposure level. The s...
Although numerous mechanistic studies have been conducted over the past three decades that have corr...
To better understand the mechanics of environmentally assisted cracking, and particularly hydrogen e...
It is well established that Al-Zn-Mg-(Cu) aluminum alloys are susceptible to hydrogen environment as...
This dissertation composes three papers detailing work intended to illuminate the atomistic-scale me...
The effects of sub-surface hydrogen and mixed mode loading on dislocation emission in aluminium are ...
The objective is to characterize and understand the environmental fatigue crack propagation behavior...
International audienceThe effects of sub-surface hydrogen and mixed mode loading on dislocation emis...
Environmental fatigue crack propagation rates and microscopic damage modes in Al-Li-Cu alloy 2090 (P...
The interactive pair potential between Al and H is obtained based on the ab initio calculation and t...
The interactive pair potential between Al and H is obtained based on the ab initio calculation and t...
a 7075 aluminum alloy and its high purity analogue,,1i5Zn2.5Mg, in aqueous environments, to de-termi...
The effects of H segregation to a Σ11 symmetric tilt Al grain boundary are investigated using atomis...
Diverse hypotheses are behind the strength degradation in metals due to hydrogen diffusion, leading ...
The recent interest in developing a hydrogen-based energy economy has put the need for hydrogen comp...
Although numerous mechanistic studies have been conducted over the past three decades that have corr...
Although numerous mechanistic studies have been conducted over the past three decades that have corr...
To better understand the mechanics of environmentally assisted cracking, and particularly hydrogen e...
It is well established that Al-Zn-Mg-(Cu) aluminum alloys are susceptible to hydrogen environment as...
This dissertation composes three papers detailing work intended to illuminate the atomistic-scale me...
The effects of sub-surface hydrogen and mixed mode loading on dislocation emission in aluminium are ...
The objective is to characterize and understand the environmental fatigue crack propagation behavior...
International audienceThe effects of sub-surface hydrogen and mixed mode loading on dislocation emis...
Environmental fatigue crack propagation rates and microscopic damage modes in Al-Li-Cu alloy 2090 (P...
The interactive pair potential between Al and H is obtained based on the ab initio calculation and t...
The interactive pair potential between Al and H is obtained based on the ab initio calculation and t...
a 7075 aluminum alloy and its high purity analogue,,1i5Zn2.5Mg, in aqueous environments, to de-termi...
The effects of H segregation to a Σ11 symmetric tilt Al grain boundary are investigated using atomis...
Diverse hypotheses are behind the strength degradation in metals due to hydrogen diffusion, leading ...
The recent interest in developing a hydrogen-based energy economy has put the need for hydrogen comp...
Although numerous mechanistic studies have been conducted over the past three decades that have corr...
Although numerous mechanistic studies have been conducted over the past three decades that have corr...
To better understand the mechanics of environmentally assisted cracking, and particularly hydrogen e...
It is well established that Al-Zn-Mg-(Cu) aluminum alloys are susceptible to hydrogen environment as...