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3D 打印纳米氧化锆块在牙科应用中的适用性。

Suitability of 3D printed pieces of nanocrystalline zirconia for dental applications.

机构信息

CQE, Instituto Superior Técnico, Universidade de Lisboa, Lisboa, Portugal; CDP2T, Escola Superior de Tecnologia de Setúbal, Instituto Politécnico de Setúbal, Setúbal, Portugal.

CQE, Instituto Superior Técnico, Universidade de Lisboa, Lisboa, Portugal.

出版信息

Dent Mater. 2020 Mar;36(3):442-455. doi: 10.1016/j.dental.2020.01.006. Epub 2020 Jan 27.

Abstract

OBJECTIVES

The main goal of this work is to evaluate the suitability of nanostructured zirconia pieces obtained by robocasting additive manufacturing (AM), for dental applications.

METHODS

The density, crystalline structure, morphology/porosity, surface roughness, hardness, toughness, wettability and biocompatibility of the produced samples were compared with those of samples obtained by conventional subtractive manufacturing (SM) of a similar commercial zirconia material. Chewing simulation studies were carried out against dental human cusps in artificial saliva. The wear of the material was quantified and the wear mechanisms investigated, as well as the influence of glaze coating.

RESULTS

AM samples, that revealed to be biocompatible, are slightly less dense and more porous than SM samples, showing lower hardness, toughness and wettability than SM samples. After chewing tests, no wear was found both on AM and SM samples. However, the dental wear was significantly lower when AM samples were used as counterbody. Concerning the glazed samples, both coated surfaces and dental cusps suffered wear, being the cusps' wear higher than that found for unglazed samples. More, cusps tested against AM coated samples suffered less wear comparatively to those opposed to SM coated samples.

SIGNIFICANCE

Overall, the results presented in this paper show that AM processed nanostructured zirconia can be used in dental restorations, with important advantages from the point of view of processing and tribological performance. Moreover, the option for glaze finishing should be carefully considered both in SM and AM processed specimens.

摘要

目的

本工作的主要目的是评估通过增材制造(AM)获得的纳米结构氧化锆的适用性,以用于牙科应用。

方法

将所制备的样品的密度、晶体结构、形态/孔隙率、表面粗糙度、硬度、韧性、润湿性和生物相容性与类似商业氧化锆材料的常规减法制造(SM)获得的样品进行比较。在人工唾液中对牙齿人牙尖进行咀嚼模拟研究。量化了材料的磨损并研究了磨损机制,以及釉料涂层的影响。

结果

AM 样品具有生物相容性,其密度略低且多孔,与 SM 样品相比,硬度、韧性和润湿性较低。咀嚼测试后,在 AM 和 SM 样品上均未发现磨损。然而,当使用 AM 样品作为对磨件时,牙科磨损明显较低。对于涂釉的样品,无论是涂覆表面还是牙尖都受到了磨损,牙尖的磨损比未涂覆的样品更高。此外,与对抗 SM 涂覆样品的牙尖相比,对抗 AM 涂覆样品的牙尖磨损更小。

意义

总的来说,本文介绍的结果表明,经 AM 加工的纳米结构氧化锆可用于牙科修复,从加工和摩擦学性能的角度来看具有重要优势。此外,在 SM 和 AM 处理的样品中,都应仔细考虑釉料精加工的选择。

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