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Manufacturing and Thermal Shock Characterization of Porous Yttria Stabilized Zirconia for Hydrogen Energy Systems
by
Minary-Jolandan, Majid
, Mahmoudi, Mohammadreza
, Riyad, M. Faisal
in
3-D printers
/ Ceramics
/ Cermets
/ Cold
/ Electrodes
/ Electrolysis
/ Electrolytes
/ Electrolytic cells
/ flexural properties
/ freeze-casting
/ Freezing
/ Fuel cell industry
/ Fuel cells
/ Geometry
/ High temperature
/ Hot pressing
/ Hydrogen
/ Hydrogen as fuel
/ Hydrogen-based energy
/ Manufacturing
/ Mechanical properties
/ Methods
/ Morphology
/ Plasma sintering
/ Pore size
/ porous ceramics
/ Scanning electron microscopy
/ solid oxide electrolysis cell (SOEC)
/ solid oxide fuel cell (SOFC)
/ Solid oxide fuel cells
/ Thermal shock
/ Thermodynamic properties
/ yttria stabilized zirconia (YSZ)
/ Yttria-stabilized zirconia
/ Yttrium oxide
/ Zirconium oxide
2022
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Manufacturing and Thermal Shock Characterization of Porous Yttria Stabilized Zirconia for Hydrogen Energy Systems
by
Minary-Jolandan, Majid
, Mahmoudi, Mohammadreza
, Riyad, M. Faisal
in
3-D printers
/ Ceramics
/ Cermets
/ Cold
/ Electrodes
/ Electrolysis
/ Electrolytes
/ Electrolytic cells
/ flexural properties
/ freeze-casting
/ Freezing
/ Fuel cell industry
/ Fuel cells
/ Geometry
/ High temperature
/ Hot pressing
/ Hydrogen
/ Hydrogen as fuel
/ Hydrogen-based energy
/ Manufacturing
/ Mechanical properties
/ Methods
/ Morphology
/ Plasma sintering
/ Pore size
/ porous ceramics
/ Scanning electron microscopy
/ solid oxide electrolysis cell (SOEC)
/ solid oxide fuel cell (SOFC)
/ Solid oxide fuel cells
/ Thermal shock
/ Thermodynamic properties
/ yttria stabilized zirconia (YSZ)
/ Yttria-stabilized zirconia
/ Yttrium oxide
/ Zirconium oxide
2022
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Manufacturing and Thermal Shock Characterization of Porous Yttria Stabilized Zirconia for Hydrogen Energy Systems
by
Minary-Jolandan, Majid
, Mahmoudi, Mohammadreza
, Riyad, M. Faisal
in
3-D printers
/ Ceramics
/ Cermets
/ Cold
/ Electrodes
/ Electrolysis
/ Electrolytes
/ Electrolytic cells
/ flexural properties
/ freeze-casting
/ Freezing
/ Fuel cell industry
/ Fuel cells
/ Geometry
/ High temperature
/ Hot pressing
/ Hydrogen
/ Hydrogen as fuel
/ Hydrogen-based energy
/ Manufacturing
/ Mechanical properties
/ Methods
/ Morphology
/ Plasma sintering
/ Pore size
/ porous ceramics
/ Scanning electron microscopy
/ solid oxide electrolysis cell (SOEC)
/ solid oxide fuel cell (SOFC)
/ Solid oxide fuel cells
/ Thermal shock
/ Thermodynamic properties
/ yttria stabilized zirconia (YSZ)
/ Yttria-stabilized zirconia
/ Yttrium oxide
/ Zirconium oxide
2022
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Manufacturing and Thermal Shock Characterization of Porous Yttria Stabilized Zirconia for Hydrogen Energy Systems
Journal Article
Manufacturing and Thermal Shock Characterization of Porous Yttria Stabilized Zirconia for Hydrogen Energy Systems
2022
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Overview
Porous yttriastabilized zirconia (YSZ), in a composite with NiO, is widely used as a cermet electrode in solid oxide fuel cells (SOFCs) and solid oxide electrolysis cells (SOECs). Given cycles of high temperature in these energy devices, mechanical integrity of the porous YSZ is critical. Pore morphology, as well as properties of the ceramic, ultimately affect the mechanical properties of the cermet electrode. Here, we fabricated porous YSZ sheets via freezing of an aqueous slurry on a cold thermoelectric plate and quantified their flexural properties, both for as-fabricated samples and samples subjected to thermal shock at 200 °C to 500 °C. Results of this work have implications for the hydrogen economy and global decarbonization efforts, in particular for the manufacturing of SOFCs and SOECs.
Publisher
MDPI AG
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