The Influence of Polishing on the Mechanical Properties of Zirconia—A Systematic Review

Xiaoyun Liu, J. Aarts, Sunyoung Ma, J. Choi
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Abstract

Purpose: To systematically review studies that investigated the consequences of various polishing protocols on the mechanical properties of zirconia. The effects on the roughness and crystalline phase transformation were also evaluated. Materials and methods: The Preferred Reporting Items for Systematic Reviews and Meta-Analysis (PRISMA) was followed. The electronic searches were conducted via OVID MEDLINE (R) and Scopus for publications between 1996 and August 2022. The search strategy was limited to full texts in the English language and in vitro studies. The influences on flexural strength, hardness, fracture strength, fracture toughness, wear resistance, roughness and phase transformation were collected. Various methodologies to measure these properties were also outlined and compared. The risk of bias for included studies was evaluated according to a modified Consolidated Standards of Reporting Trials (CONSORT) checklist. Results: After removing duplicates, the systematic search identified a total of 419 studies. Nineteen studies satisfied the inclusion criteria and were selected for final analysis. Fifteen of the included studies observed the changes in surface roughness along with the mechanical properties and ten studies detected the tetragonal (T) to monoclinic (M) phase transformation. Eight studies also investigated the change in properties after polishing the ground surface. Testing parameters were not consistent among studies due to the varying methods. Conclusions: To a certain extent, polishing influences the strength, hardness, toughness and wear resistance. The damage in some mechanical properties, as well as the roughened surface, from grinding can be restored via an appropriate polishing treatment. The polishing process itself barely induces the transition from the tetragonal to monoclinic phase of zirconia, while this commonly occurs after grinding. If the subsequent polishing is adequate, the transformed monoclinic phase can be eliminated with the removal of the outermost surface layer. In dentistry, polishing is an imperative step to maintain the superior functions and service life of zirconia for patients.
抛光对氧化锆力学性能的影响——系统综述
目的:系统回顾各种抛光方案对氧化锆机械性能影响的研究。并对粗糙度和晶相转变的影响进行了评价。材料和方法:采用系统评价和荟萃分析首选报告项目(PRISMA)。通过OVID MEDLINE (R)和Scopus对1996年至2022年8月之间的出版物进行电子检索。搜索策略仅限于英文全文和体外研究。收集了对弯曲强度、硬度、断裂强度、断裂韧性、耐磨性、粗糙度和相变的影响。还概述和比较了测量这些属性的各种方法。纳入研究的偏倚风险根据修订后的综合试验报告标准(CONSORT)清单进行评估。结果:剔除重复项后,系统检索共发现419项研究。19项研究符合纳入标准,并被选中进行最终分析。其中15项研究观察到表面粗糙度随力学性能的变化,10项研究检测到四方(T)到单斜(M)相变。八项研究还调查了抛光地面后性能的变化。由于方法不同,各研究的检测参数不一致。结论:抛光在一定程度上影响材料的强度、硬度、韧性和耐磨性。一些机械性能的损坏,以及粗糙的表面,可以通过适当的抛光处理来恢复。抛光过程本身很少诱导氧化锆从四方相转变为单斜相,而这通常发生在研磨之后。如果随后的抛光是充分的,转化的单斜相可以消除与去除最外层的表面层。在牙科中,抛光是保持氧化锆优越功能和使用寿命的必要步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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