In this work a phase field method is used for the solution of an electro-chemical diffusion model for a lithium-iron-phosphate particle coupled to a small-strain elasto-plasticity model. This coupling takes the mechanical dilatation of the crystal lattice during intercalation into account. The electro-chemo-mechanical coupling is derived from a Helmholtz free energy, resulting in constitutive equations for both the diffusion and the mechanical equilibrium in the electrode material. A new method for the generation of virtual microstructures is given with additional constraints to obtain smooth boundaries. This ensures valid mechanical solutions for grid refinement. The model is then discretized, linearized and solved for various microstructu...
© 2016 John Wiley & Sons, Ltd. Capacity fade in conventional Li-ion battery systems due to chemo-mec...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
A finite strain theory for electro-chemo-mechanics of lithium ion battery electrodes along with a mo...
In this work a phase field method is used for the solution of an electro-chemical diffusion model fo...
A micromodel coupling lithium-ion diffusion and electric potentials to a linear elasto-plastic model...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
Lithium-ion batteries, with their high energy densities and light-weight designs, have found broad a...
In active electrode materials of litium ion batteries, there exists a coupling beween the field of l...
This thesis investigates the electro-chemo-mechanics behavior of electrodes in lithium ion batteries...
We propose a canonical finite strain theory for diffusion-mechanics coupling for the intercalation i...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
A nonlinear initial boundary value problem for the lithium ion concentration, the electric potential...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
The widely used Pseudo-Two-Dimensional (P2D) cell model for Li-ion batteries is generally based on a...
© 2016 John Wiley & Sons, Ltd. Capacity fade in conventional Li-ion battery systems due to chemo-mec...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
A finite strain theory for electro-chemo-mechanics of lithium ion battery electrodes along with a mo...
In this work a phase field method is used for the solution of an electro-chemical diffusion model fo...
A micromodel coupling lithium-ion diffusion and electric potentials to a linear elasto-plastic model...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to...
Lithium-ion batteries, with their high energy densities and light-weight designs, have found broad a...
In active electrode materials of litium ion batteries, there exists a coupling beween the field of l...
This thesis investigates the electro-chemo-mechanics behavior of electrodes in lithium ion batteries...
We propose a canonical finite strain theory for diffusion-mechanics coupling for the intercalation i...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
A nonlinear initial boundary value problem for the lithium ion concentration, the electric potential...
Intercalation processes occur in a single crystallite of many electrode materials for a certain peri...
The widely used Pseudo-Two-Dimensional (P2D) cell model for Li-ion batteries is generally based on a...
© 2016 John Wiley & Sons, Ltd. Capacity fade in conventional Li-ion battery systems due to chemo-mec...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
A finite strain theory for electro-chemo-mechanics of lithium ion battery electrodes along with a mo...