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Structural, Dielectric, and Mechanical Properties of High-Content Cubic Zirconia Ceramics Obtained via Solid-State Synthesis
(Applied Sciences, 2023)
In this work, the structural, electrical, and mechanical properties and phase composition of
high-content cubic zirconium oxide ceramics stabilized with Ca were investigated. The novelty of
this work lies in evaluating the potential use of porous ceramics obtained using calcium carbonate
as a matrix for dispersed nuclear fuel. Experimental samples were prepared using ...
Structural, Dielectric, and Mechanical Properties of High-Content Cubic Zirconia Ceramics Obtained via Solid-State Synthesis
(Applied Sciences, 2023)
In this work, the structural, electrical, and mechanical properties and phase composition of
high-content cubic zirconium oxide ceramics stabilized with Ca were investigated. The novelty of
this work lies in evaluating the potential use of porous ceramics obtained using calcium carbonate
as a matrix for dispersed nuclear fuel. Experimental samples were prepared using ...
Investigation of the Phase Composition, Structural, Mechanical, and Dielectric Properties of (1 − x)·ZrO2-x·CeO2 Ceramics Synthesized by the Solid-State Method
(Applied Sciences, 2024)
Ceramics based on zirconium dioxide are very important compounds for dental, implant,
and structural material applications. Despite the fact that tetragonally stabilized YSZ has been
well studied, the search for new compositions of zirconia-based ceramics is still in progress. The
ZrO2
-CeO2 system is one of the alternatives for YSZ materials, but there is conflicting ...
Structural, Dielectric, and Mechanical Properties of High-Content Cubic Zirconia Ceramics Obtained via Solid-State Synthesis
(Applied Sciences, 2023)
Giniyatova, S.G.; Kozlovskiy, A.L.; Shakirzyanov, R.I.; Volodina, N.O.; Shlimas, D.I.; Borgekov, D.B. Structural, Dielectric, and Mechanical Properties of High-Content Cubic Zirconia Ceramics Obtained via Solid-State Synthesis. Appl. Sci. 2023, 13, 10989. https://doi.org/10.3390/ app131910989
Investigation of the Phase Composition, Structural, Mechanical, and Dielectric Properties of (1 − x)·ZrO2-x·CeO2 Ceramics Synthesized by the Solid-State Method
(Applied Sciences, 2024)
Ceramics based on zirconium dioxide are very important compounds for dental, implant,
and structural material applications. Despite the fact that tetragonally stabilized YSZ has been
well studied, the search for new compositions of zirconia-based ceramics is still in progress. The
ZrO2
-CeO2 system is one of the alternatives for YSZ materials, but there is conflicting ...
Structural, Dielectric, and Mechanical Properties of High-Content Cubic Zirconia Ceramics Obtained via Solid-State Synthesis
(Applied Sciences, 2023)
In this work, the structural, electrical, and mechanical properties and phase composition of
high-content cubic zirconium oxide ceramics stabilized with Ca were investigated. The novelty of
this work lies in evaluating the potential use of porous ceramics obtained using calcium carbonate
as a matrix for dispersed nuclear fuel. Experimental samples were prepared using ...
Investigation of the Phase Composition, Structural, Mechanical, and Dielectric Properties of (1 − x) ZrO2- x CeO2 Ceramics Synthesized by the Solid-State Method
(Applied Sciences, 2024)
Ceramics based on zirconium dioxide are very important compounds for dental, implant,
and structural material applications. Despite the fact that tetragonally stabilized YSZ has been
well studied, the search for new compositions of zirconia-based ceramics is still in progress. The
ZrO2
-CeO2 system is one of the alternatives for YSZ materials, but there is conflicting ...
Structural, Dielectric, and Mechanical Properties of High-Content Cubic Zirconia Ceramics Obtained via Solid-State Synthesis
(Applied Sciences, 2023)
In this work, the structural, electrical, and mechanical properties and phase composition of
high-content cubic zirconium oxide ceramics stabilized with Ca were investigated. The novelty of
this work lies in evaluating the potential use of porous ceramics obtained using calcium carbonate
as a matrix for dispersed nuclear fuel. Experimental samples were prepared using ...
Investigation of the Phase Composition, Structural, Mechanical, and Dielectric Properties of (1 − x)·ZrO2-x·CeO2 Ceramics Synthesized by the Solid-State Method
(Applied Sciences, 2024)
Ceramics based on zirconium dioxide are very important compounds for dental, implant,
and structural material applications. Despite the fact that tetragonally stabilized YSZ has been
well studied, the search for new compositions of zirconia-based ceramics is still in progress. The
ZrO2
-CeO2 system is one of the alternatives for YSZ materials, but there is conflicting ...










