Wenxin Tan, Ran Fu
Zirconia-toughened alumina (ZTA) ceramics are promising for load-bearing biomedical applications because they combine the hardness, chemical stability, wear resistance, and biocompatibility of alumina with the transformation-toughening capability of zirconia. Grinding is indispensable for achieving dimensional accuracy and surface quality, yet it inevitably introduces surface and subsurface cracks, residual stresses, and a local tetragonal-to-monoclinic transformation of zirconia. These changes can degrade fracture toughness, increase reliability scatter, and reduce long-term service stability. Annealing is therefore often considered a post-grinding recovery strategy because it can relax residual stresses, blunt crack tips, and partially restore the zirconia phase state. However, the extent of recovery depends strongly on the initial damage state, ZTA microstructure, and thermal schedule. This review systematically summarizes the current understanding of grinding-induced damage and annealing-assisted recovery in ZTA ceramics, with particular emphasis on the coupled relationships among subsurface damage, residual-stress evolution, phase transformation, and fracture toughness. Particular attention is given to distinguishing direct ZTA-specific evidence from mechanistic interpretations inferred from related zirconia-containing ceramic systems.
@article{afc7941f-4d80-4651-ab70-5de73bdbee98,
title={Coupled Effects of Grinding-Induced Damage and Annealing-Assisted Recovery on Fracture Toughness and Reliability of Zirconia-Toughened Alumina Ceramics: A Review},
author={Wenxin Tan and Ran Fu},
year={2026},
language={English}
}TY - JOUR TI - Coupled Effects of Grinding-Induced Damage and Annealing-Assisted Recovery on Fracture Toughness and Reliability of Zirconia-Toughened Alumina Ceramics: A Review AU - Wenxin Tan AU - Ran Fu PY - 2026 LA - English ER -
Carmen Mª Abreu, Iria Feijoo
The influence of annealing treatment on the microstructure and the corrosion behaviour of a complex bronze Al-Ni alloy was analysed. The microstructur
Jian Yang, Zhenping Ji
A digital-twin-model-based optimal control system is presented for the steel continuous casting process. The system is designed for the coordinated op
Silvia Cecchel, Giovanna Cornacchia
The automotive industry is undergoing a rapid evolution to meet today’s challenges; therefore, continuous innovation and product development are neede
Mateusz Czepiel, Magdalena Ba ńkosz
Injection molding is a method commonly used to manufacture plastic products. This technology makes it possible to obtain products of specially designe
Zhenwei Xie, Liexing Zhou
Enhancing the strength and toughness of aluminum alloys using microstructure optimization remains a key challenge. In this study, an AA2024 aluminum a
Zhiqiang Song, Ojiyed Tegus
Chloride ions play an important role in the corrosion of bronze through their active reactivity to copper alloys. The corrosion behavior of bronze all