The stress-free strain originated from local chemical composition and phase transformation can significantly alter the microstructures of materials; and then affect their properties. In this paper, we developed an analytical method to calculate stress-strain field due to the non-uniform stress-free strain in a spherically symmetrical particle. Applying the method to a lithium ion (Li-ion) battery electrode, the evolution of Li-ion concentration and strain field during the lithiation process is studied. Our studies reveal that the maximum strain in the electrode generally occurs on surface of sample, and is mainly dependent on the difference of Li-ion concentration of surface and of center in sample. Decreasing the difference of Li-ion conce...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
Cathode materials for Li-ion batteries exhibit volume expansions on the order of 10% upon maximum li...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
Evidence has accumulated recently that a high-capacity elec-trode of a lithium-ion battery may not r...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
This paper presents a comprehensive model coupling the effects of hydrostatic stress, surface/interf...
Mechanical degradation is thought to be one of the causes of capacity fade within Lithium-Ion batter...
This chapter reviews several theoretical models that are used to compute the stress fields inside th...
© 2021 Elsevier Masson SAS We first present a model coupling the electrochemical reaction with s...
Poor cyclic performance of lithium-ion batteries is calling for efforts to study its capacity attenu...
AbstractOf all materials, silicon has the highest capacity to store lithium, and is being developed ...
The present paper investigates the influences of surface tension and the stress distribution in the ...
The size- and shape-dependency of the chemo-mechanical behavior of spherical and ellipsoidal nanopar...
Poor cyclic performance of lithium-ion batteries is calling for efforts to study its capacity attenu...
Currently, the capacity of lithium-ion battery is mainly limited by its cathode material. Research e...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
Cathode materials for Li-ion batteries exhibit volume expansions on the order of 10% upon maximum li...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
Evidence has accumulated recently that a high-capacity elec-trode of a lithium-ion battery may not r...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
This paper presents a comprehensive model coupling the effects of hydrostatic stress, surface/interf...
Mechanical degradation is thought to be one of the causes of capacity fade within Lithium-Ion batter...
This chapter reviews several theoretical models that are used to compute the stress fields inside th...
© 2021 Elsevier Masson SAS We first present a model coupling the electrochemical reaction with s...
Poor cyclic performance of lithium-ion batteries is calling for efforts to study its capacity attenu...
AbstractOf all materials, silicon has the highest capacity to store lithium, and is being developed ...
The present paper investigates the influences of surface tension and the stress distribution in the ...
The size- and shape-dependency of the chemo-mechanical behavior of spherical and ellipsoidal nanopar...
Poor cyclic performance of lithium-ion batteries is calling for efforts to study its capacity attenu...
Currently, the capacity of lithium-ion battery is mainly limited by its cathode material. Research e...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
Cathode materials for Li-ion batteries exhibit volume expansions on the order of 10% upon maximum li...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...