International audienceZirconia-based materials have been used in orthopaedics since the 1980s, with large success, mainly thanks to transformation toughening. On the other hand, their main drawback is their potential sensitivity to hydrothermal ageing, i.e. tetragonal to monoclinic phase transformation on their surface in the presence of water. Hydrothermal ageing may result in roughness increase and microcracking of the surface. In this article the hydrothermal ageing behaviour of three medical-grade zirconia-based materials is assessed at high temperature and extrapolated to room or body temperature. The degradation is also characterized by FIB/SEM nano-tomography to better assess sub-surface evolutions. In both zirconia and alumina-tough...
The surface morphologies and microstructures of Zirconia Toughened Alumina (ZTA) femoral heads were ...
The objective of this study was to compare the low temperature degradation (LTD) behavior of femoral...
A clear discrepancy between predicted in vitro and actual in vivo surface phase stability of BIOLOX®...
International audienceZirconia-based materials have been used in orthopaedics since the 1980s, with ...
International audienceZirconia-based materials have been used in orthopaedics since the 1980s, with ...
International audienceZirconia-based materials have been used in orthopaedics since the 1980s, with ...
Zirconia-based materials have been used in orthopaedics since the 1980s, with large success, mainly ...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
Zirconia in Zirconia toughened alumina ceramic hip replacements exists in an unstable state and can ...
The surface morphologies and microstructures of Zirconia Toughened Alumina (ZTA) femoral heads were ...
The objective of this study was to compare the low temperature degradation (LTD) behavior of femoral...
A clear discrepancy between predicted in vitro and actual in vivo surface phase stability of BIOLOX®...
International audienceZirconia-based materials have been used in orthopaedics since the 1980s, with ...
International audienceZirconia-based materials have been used in orthopaedics since the 1980s, with ...
International audienceZirconia-based materials have been used in orthopaedics since the 1980s, with ...
Zirconia-based materials have been used in orthopaedics since the 1980s, with large success, mainly ...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
International audienceThe surface morphologies and microstructures of Zirconia Toughened Alumina (ZT...
Zirconia in Zirconia toughened alumina ceramic hip replacements exists in an unstable state and can ...
The surface morphologies and microstructures of Zirconia Toughened Alumina (ZTA) femoral heads were ...
The objective of this study was to compare the low temperature degradation (LTD) behavior of femoral...
A clear discrepancy between predicted in vitro and actual in vivo surface phase stability of BIOLOX®...