Electrode materials in lithium-ion batteries offer an example of medium in which stress and plastic flow are generated by the diffusion of guest atoms. In such a medium, deformation and diffusion are strongly coupled processes. For designing electrodes with improved lifetime and electro-mechanical efficiency, it is crucial to understand how plasticity and diffusion evolve over consecutive charging-recharging cycles. With such questions in mind, this paper provides general results for the large-time behavior of media coupling plasticity with diffusion when submitted to cyclic chemo-mechanical loadings. Under suitable assumptions, we show that the stress, the plastic strain rate, the chemical potential and the flux of guest atoms converge to ...
Capacity fade in conventional Li-ion battery systems due to chemo-mechanical degradation during char...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Capacity fade in conventional Li-ion battery systems due to chemo-mechanical degradation during char...
Electrode materials in lithium-ion batteries offer an example of medium in which stress and plastic ...
International audienceThis chapter is devoted to media in which plasticity and diffusion are coupled...
AbstractOf all materials, silicon has the highest capacity to store lithium, and is being developed ...
International audienceWe present a Melan-type theorem applying to cyclically loaded media in which p...
Evidence has accumulated recently that a high-capacity elec-trode of a lithium-ion battery may not r...
We present shakedown theorems applying to cyclically loaded media in which plastic flow and diffusio...
Rechargeable Li-ion batteries operate by cyclically inserting lithium into, and extracting lithium f...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
Lithium-ion batteries (LIBs) in space or extreme environments may suffer irradiation and during oper...
In the development of the next generation of batteries with high capacity, improving our understandi...
The mechanical failure of battery electrode, caused by the cyclic diffusion-induced stress, is gener...
High-capacity electrodes in Li-ion batteries inevitably undergo a large volume deformation originati...
Capacity fade in conventional Li-ion battery systems due to chemo-mechanical degradation during char...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Capacity fade in conventional Li-ion battery systems due to chemo-mechanical degradation during char...
Electrode materials in lithium-ion batteries offer an example of medium in which stress and plastic ...
International audienceThis chapter is devoted to media in which plasticity and diffusion are coupled...
AbstractOf all materials, silicon has the highest capacity to store lithium, and is being developed ...
International audienceWe present a Melan-type theorem applying to cyclically loaded media in which p...
Evidence has accumulated recently that a high-capacity elec-trode of a lithium-ion battery may not r...
We present shakedown theorems applying to cyclically loaded media in which plastic flow and diffusio...
Rechargeable Li-ion batteries operate by cyclically inserting lithium into, and extracting lithium f...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
Lithium-ion batteries (LIBs) in space or extreme environments may suffer irradiation and during oper...
In the development of the next generation of batteries with high capacity, improving our understandi...
The mechanical failure of battery electrode, caused by the cyclic diffusion-induced stress, is gener...
High-capacity electrodes in Li-ion batteries inevitably undergo a large volume deformation originati...
Capacity fade in conventional Li-ion battery systems due to chemo-mechanical degradation during char...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Capacity fade in conventional Li-ion battery systems due to chemo-mechanical degradation during char...