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四种氧化锆牙科修复体化学成分、烧结温度、密度和厚度对透光率影响的建模

Modeling of the Influence of Chemical Composition, Sintering Temperature, Density, and Thickness in the Light Transmittance of Four Zirconia Dental Prostheses.

作者信息

Fonseca Yuri Resende, Elias Carlos Nelson, Monteiro Sergio Neves, Santos Heraldo Elias Salomão Dos, Santos Claudinei Dos

机构信息

Instituto Militar de Engenharia, Materials Science Department, Praça General Tibúrcio, 80, Praia Vermelha, Rio de Janeiro 22290-270, Brazil.

Faculdade de Tecnologia, Universidade Estadual do Rio de Janeiro, Rod. Presidente Dutra, km 298, Polo Industrial, Resende 27537-000, Brazil.

出版信息

Materials (Basel). 2019 Aug 8;12(16):2529. doi: 10.3390/ma12162529.

Abstract

Research has increasingly been conducted to improve the toughness and aesthetics of zirconium oxide (zirconia) used in prosthetic dentistry. However, the balance between better mechanical properties and greater translucency, to ensure aesthetic requirements, is still a challenge in the development of a novel zirconia for dentistry applications. This study evaluated the transmittance of visible light for four types of pre-sintered zirconia blocks used in dentistry (3Y-SBE, Zpex, Zpex-4, and Zpex-Smile). The objective is to analyze the simultaneous influence of sintering temperature, in the range of 1450-1560 °C, as well as the chemical composition (%YO), density, and thickness (1.0, 1.3, 1.6, and 2.0 mm) in the zirconia's transmittance. To evaluate the interactive influence of these variables, a statistical learning model based on gradient boosting is applied. The results showed that the effect of the sintering temperature has an optimal (maximum transmittance) point. Increasing the temperature beyond this point reduces the transmittance of the material for all types of zirconia. Moreover, the optimal transmittance point is affected by the chemical composition of each type of zirconia. In addition, the results showed that the transmittance of all types of zirconia had an inverse relationship with the density, zirconia Zpex-Smile being the most sensitive to this parameter. Furthermore, the transmittance of 3Y-SBE, Zpex, and Zpex-4 decreases approximately linearly with the specimen thickness, whereas zirconia Zpex-Smile has a sublinear decrease, which is expected due to the optical isotropy of the cubic phase.

摘要

为提高用于口腔修复的氧化锆(锆石)的韧性和美观性,相关研究日益增多。然而,在开发用于牙科应用的新型氧化锆时,要在获得更好的机械性能和更高的透明度之间取得平衡以确保美学要求,仍是一项挑战。本研究评估了牙科用四种预烧结氧化锆块体(3Y-SBE、Zpex、Zpex-4和Zpex-Smile)的可见光透过率。目的是分析在1450 - 1560°C范围内的烧结温度,以及氧化锆的化学成分(%YO)、密度和厚度(1.0、1.3、1.6和2.0毫米)对其透过率的综合影响。为评估这些变量的交互影响,应用了基于梯度提升的统计学习模型。结果表明,烧结温度的影响存在一个最佳(最大透过率)点。超过该点升高温度会降低所有类型氧化锆材料的透过率。此外,最佳透过率点受每种氧化锆化学成分的影响。另外,结果表明所有类型氧化锆的透过率与密度呈反比关系,氧化锆Zpex-Smile对该参数最为敏感。此外,3Y-SBE、Zpex和Zpex-4的透过率随样品厚度大致呈线性下降,而氧化锆Zpex-Smile的下降呈次线性,这是由于立方相的光学各向同性所致。

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