Experiments have frequently shown that phase separation in lithium-ion battery electrodes could lead to the formation of mechanical defects, hence causing capacity fading. The purpose of the present work has been to examine stress intensity factors for pre-existing surface cracks in spherical electrode particles during electrochemical deintercalation cycling using both analytical and numerical methods. To this end, we make use of a phase field model to examine the time-dependent evolution of the concentration and stress profiles in a phase separating spherical electrode particles. By using a geometrical approximation scheme proposed in the literature, stress intensity factors at the deepest point of the pre-existing surface cracks of semi-e...
Capacity fade in conventional Li-ion battery systems due to chemo-mechanical degradation during char...
Mechanical degradation is thought to be one of the causes of capacity fade within Lithium-Ion batter...
In this study, the phase separation phenomenon and diffusion-induced stresses in lithium iron phosph...
Experiments have frequently shown that phase separation in lithium-battery electrodes could lead to ...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
To study the electrochemical reaction on surfaces, phase interfaces, and crack surfaces in lithium i...
The fracture in the electrode particle is widely believed to be related to the capacity fade of the ...
Lithium-ion batteries, with their high energy densities and light-weight designs, have found broad a...
A finite strain phase field fracture model is presented which treats phase segregation, fracture and...
© 2016 John Wiley & Sons, Ltd. Capacity fade in conventional Li-ion battery systems due to chemo-mec...
This paper presents a comprehensive model coupling the effects of hydrostatic stress, surface/interf...
This chapter reviews several theoretical models that are used to compute the stress fields inside th...
During the course of thousands of charging and discharging cycles, batteries commonly undergo capaci...
Masson SAS Capacity fade induced by chemo-mechanical degradation during charge-discharge cycles is t...
This paper is concerned with a three-dimensional coupled chemo-mechanical model for intercalation-in...
Capacity fade in conventional Li-ion battery systems due to chemo-mechanical degradation during char...
Mechanical degradation is thought to be one of the causes of capacity fade within Lithium-Ion batter...
In this study, the phase separation phenomenon and diffusion-induced stresses in lithium iron phosph...
Experiments have frequently shown that phase separation in lithium-battery electrodes could lead to ...
Lithium insertion and removal in lithium ion battery electrodes can result in diffusion induced stre...
To study the electrochemical reaction on surfaces, phase interfaces, and crack surfaces in lithium i...
The fracture in the electrode particle is widely believed to be related to the capacity fade of the ...
Lithium-ion batteries, with their high energy densities and light-weight designs, have found broad a...
A finite strain phase field fracture model is presented which treats phase segregation, fracture and...
© 2016 John Wiley & Sons, Ltd. Capacity fade in conventional Li-ion battery systems due to chemo-mec...
This paper presents a comprehensive model coupling the effects of hydrostatic stress, surface/interf...
This chapter reviews several theoretical models that are used to compute the stress fields inside th...
During the course of thousands of charging and discharging cycles, batteries commonly undergo capaci...
Masson SAS Capacity fade induced by chemo-mechanical degradation during charge-discharge cycles is t...
This paper is concerned with a three-dimensional coupled chemo-mechanical model for intercalation-in...
Capacity fade in conventional Li-ion battery systems due to chemo-mechanical degradation during char...
Mechanical degradation is thought to be one of the causes of capacity fade within Lithium-Ion batter...
In this study, the phase separation phenomenon and diffusion-induced stresses in lithium iron phosph...