Lithium-ion batteries (LIBs) in space or extreme environments may suffer irradiation and during operation, it is difficult to obtain the intrinsic mechanical properties of electrode materials due to coexistence of electrochemical reaction and irradiation. In this paper, effects of irradiation temperature, dose, and diffusion-induced stress on their mechanical behaviors are explored. By introducing diffusion-induced stress, an electrochemical-irradiated plasticity model is developed for electrodes in cylindrical LIBs, which is validated by comparing numerical results with experimental data. It is shown that the yield strength of unirradiated active materials decreases with increasing the state of charge, which is attributed to the softening ...
Electrode materials in lithium-ion batteries offer an example of medium in which stress and plastic ...
Experimental and numerical studies have shown that mechanical loading associated with lithiation/del...
Lithium (Li) inserted into or extracted from the electrode in Li-ion battery causes stress which may...
When lithium-ion batteries serve in extreme environments like space, severe irradiation might induce...
Rechargeable Li-ion batteries operate by cyclically inserting lithium into, and extracting lithium f...
Evidence has accumulated recently that a high-capacity elec-trode of a lithium-ion battery may not r...
© 2021 Elsevier Masson SAS We first present a model coupling the electrochemical reaction with s...
High-capacity electrodes in Li-ion batteries inevitably undergo a large volume deformation originati...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
Li-ion batteries are ineluctably subjected to external mechanical loading or stress gradient. Such s...
Electrode is a key component to remain durability and safety of lithium-ion (Li-ion) batteries. Li-i...
Masson SAS Capacity fade induced by chemo-mechanical degradation during charge-discharge cycles is t...
In the development of the next generation of batteries with high capacity, improving our understandi...
In this paper, a new reaction-diffusion model, coupling the reversible electrochemical reaction, Lit...
Mechanical degradation, owing to intercalation induced stress and fracture, is a key contributor to ...
Electrode materials in lithium-ion batteries offer an example of medium in which stress and plastic ...
Experimental and numerical studies have shown that mechanical loading associated with lithiation/del...
Lithium (Li) inserted into or extracted from the electrode in Li-ion battery causes stress which may...
When lithium-ion batteries serve in extreme environments like space, severe irradiation might induce...
Rechargeable Li-ion batteries operate by cyclically inserting lithium into, and extracting lithium f...
Evidence has accumulated recently that a high-capacity elec-trode of a lithium-ion battery may not r...
© 2021 Elsevier Masson SAS We first present a model coupling the electrochemical reaction with s...
High-capacity electrodes in Li-ion batteries inevitably undergo a large volume deformation originati...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
Li-ion batteries are ineluctably subjected to external mechanical loading or stress gradient. Such s...
Electrode is a key component to remain durability and safety of lithium-ion (Li-ion) batteries. Li-i...
Masson SAS Capacity fade induced by chemo-mechanical degradation during charge-discharge cycles is t...
In the development of the next generation of batteries with high capacity, improving our understandi...
In this paper, a new reaction-diffusion model, coupling the reversible electrochemical reaction, Lit...
Mechanical degradation, owing to intercalation induced stress and fracture, is a key contributor to ...
Electrode materials in lithium-ion batteries offer an example of medium in which stress and plastic ...
Experimental and numerical studies have shown that mechanical loading associated with lithiation/del...
Lithium (Li) inserted into or extracted from the electrode in Li-ion battery causes stress which may...