A Comprehensive Review of the Multifaceted Characterisation Approaches of Dental Ceramics

Author:

Al-Johani Hanan12ORCID,Haider Julfikar23ORCID,Satterthwaite Julian2ORCID,Borba Marcia2ORCID,Silikas Nick2ORCID

Affiliation:

1. Department of Restorative Dentistry, Division of Biomaterials, Faculty of Dentistry, King Abdulaziz University, Jeddah 21589, Saudi Arabia

2. Division of Dentistry, School of Medical Sciences, University of Manchester, Manchester M13 9PL, UK

3. Department of Engineering, Manchester Metropolitan University, Manchester M1 5GD, UK

Abstract

Ceramic dental restorative materials have growing popularity, albeit their brittle and stochastic nature are acknowledged shortcomings that impact the prosthesis lifespan. The mechanical performance of ceramics is dominated by the constitutional microstructural and fracture toughness mechanisms, as well as externally applied triggers. Thus, there is ongoing expanding research in the sphere of ceramic material engineering and thermal refinement, addressing concerns regarding toughness, machinability, reliability, stainability, and biodegradation. While the current trend in dental ceramic manufacturing has transitioned from micrometric crystalline sizes to submicrometric and nanometric ranges, there is an unclear understanding of the microstructural implications on ceramic behaviour. Therefore, this review covers the comprehensive characterisation approaches commonly employed in the scientific literature to describe the multifaceted performance aspects as well as clinical-related prerequisites of dental ceramics. Moreover, updated standardised testing parameters and performance thresholds pertaining to ceramic mannerisms are described in an attempt to translate their clinical applicability.

Funder

Saudi Arabian Cultural Bureau

Publisher

MDPI AG

Reference145 articles.

1. Lohbauer, U., and Belli, R. (2022). Dental Ceramics: Fracture Mechanics and Engineering Design, Springer Nature.

2. (2022). Dental-Machinable Ceramic Blank (Standard No. BS EN ISO 18675:2022).

3. (2023). Dentistry—Ceramic Materials (Standard No. BS EN ISO 6872:2023).

4. (2019). Dentistry—Compatibility Testing for Metal-Ceramic and Ceramic-Ceramic Systems (Standard No. BS EN ISO 9693:2019).

5. Sakaguchi, R.L., Ferracane, J., and Powers, J.M. (2019). Craig’s Restorative Dental Materials-e-Book, Elsevier Health Sciences. [14th ed.].

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