An analytical model is developed to predict the residual thermal stresses in a single cell of solid oxide fuel cells (SOFCs), which consists of a thick porous 8 mol% Y2O3 stabilized zirconia/nickel oxide (8YSZ/NiO) anode, a dense 8YSZ electrolyte and a porous lanthanum strontium manganite (LSM) cathode. The simulated stresses in the cell at room temperature, which are resulted from the contraction mismatch of its components, indicate that the major principal stress in the anode is tensile while the electrolyte and cathode are under compressive stresses. The stress in one component decreases with the increase of its thickness when the thicknesses of the other two components are fixed, and the decrease of the tensile stress in the anode will ...
Solid-oxide fuel cells (SOFCs) are energy conversion devices that theoretically have the capability ...
Advanced characterization methods have been used to analyze the thermo-mechanical behaviour of solid...
Delamination of the cathode/electrolyte interface is an important degradation phenomenon in solid ox...
A mechanical failure of a single component is sufficient to cause a solid oxide fuel cell (SOFC) bre...
Structural stability issues in planar solid oxide fuel cells arise from the mismatch between the coe...
To study possible failure modes of the Hexis Galileo solid oxide fuel cell stack, various stack comp...
To study possible failure modes of the Hexis Galileo solid oxide fuel cell stack, various stack comp...
Structural stability issues in planar solid oxide fuel cells (SOFC) arise from the mismatch between ...
International audienceThe purpose of this work is focused on the calculation of the stress field ins...
International audienceThe purpose of this work is focused on the calculation of the stress field ins...
International audienceThe purpose of this work is focused on the calculation of the stress field ins...
International audienceThe purpose of this work is focused on the calculation of the stress field ins...
Durability and reliability of anode supported SOFC stacks have proven unsatisfactory in large scale ...
Mechanical damage is a major factor limiting the long-term stability of solid oxide fuel cells (SOFC...
The mechanical failure of one cell is sufficient to lead to the end of service of a solid oxide fuel...
Solid-oxide fuel cells (SOFCs) are energy conversion devices that theoretically have the capability ...
Advanced characterization methods have been used to analyze the thermo-mechanical behaviour of solid...
Delamination of the cathode/electrolyte interface is an important degradation phenomenon in solid ox...
A mechanical failure of a single component is sufficient to cause a solid oxide fuel cell (SOFC) bre...
Structural stability issues in planar solid oxide fuel cells arise from the mismatch between the coe...
To study possible failure modes of the Hexis Galileo solid oxide fuel cell stack, various stack comp...
To study possible failure modes of the Hexis Galileo solid oxide fuel cell stack, various stack comp...
Structural stability issues in planar solid oxide fuel cells (SOFC) arise from the mismatch between ...
International audienceThe purpose of this work is focused on the calculation of the stress field ins...
International audienceThe purpose of this work is focused on the calculation of the stress field ins...
International audienceThe purpose of this work is focused on the calculation of the stress field ins...
International audienceThe purpose of this work is focused on the calculation of the stress field ins...
Durability and reliability of anode supported SOFC stacks have proven unsatisfactory in large scale ...
Mechanical damage is a major factor limiting the long-term stability of solid oxide fuel cells (SOFC...
The mechanical failure of one cell is sufficient to lead to the end of service of a solid oxide fuel...
Solid-oxide fuel cells (SOFCs) are energy conversion devices that theoretically have the capability ...
Advanced characterization methods have been used to analyze the thermo-mechanical behaviour of solid...
Delamination of the cathode/electrolyte interface is an important degradation phenomenon in solid ox...