六种不同透明度氧化锆的损伤容限。

Cathrine Å Karlsen, Christian Schriwer, Marit Øilo
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引用次数: 6

摘要

目的:介绍高半透明氧化锆作为前牙整体修复的合适材料。该材料的组成与传统的3Y-TZP在钇含量和晶粒尺寸方面有所不同。除了透光性和抗弯强度外,这些变化如何影响其他性能,我们知之甚少。本研究的目的是评价不同氧化钇含量和不同制作方法的牙科氧化锆的抗裂纹扩展性能和硬度。材料和方法:使用硬度计(维氏硬度计)在六个不同的商用氧化锆的五个牙冠的平坦抛光表面上测量硬度(HV2/5)和凹痕的裂纹扩展(损伤容限);1颗硬加工3Y-TZP, 3颗软加工3-5%氧化钇稳定的氧化锆,2颗软加工氧化钇含量≥5%的氧化锆。结果:不同成分和制作方法的氧化锆对损伤的控制效果差异较大。硬加工的3Y-TZP比软加工的3-5%钇稳定氧化锆具有更好的抗裂纹扩展能力。结论:氧化钇含量≥5%的超透明氧化锆抗裂纹扩展能力最低。硬度不是衡量损伤容限的合适指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Damage tolerance of six dental zirconias with different translucencies.

Damage tolerance of six dental zirconias with different translucencies.

Damage tolerance of six dental zirconias with different translucencies.

Damage tolerance of six dental zirconias with different translucencies.

Purpose: High-translucent dental zirconia has been introduced as a suitable material for anterior monolithic restorations. The material composition differs from traditional 3Y-TZP both with regard to yttria content and grain size. Little is known regarding how these alterations affect other properties than translucency and flexural strength. The aim of this study was to evaluate the crack propagation resistance and hardness of dental zirconias with different yttria content and different manufacturing methods.

Materials and methods: Measurement of hardness (HV2/5) and crack propagation from the indents (damage tolerance) was performed using a hardness tester(Vicker) on a flat polished surface of five crowns from six different commercial dental zirconias; one hard-machined 3Y-TZP, three soft-machined 3-5% yttria-stabilized zirconias and two soft-machined zirconias with ≥5% yttria content.

Results: Damage control varied greatly among dental zirconias with different compositions and fabrication methods. The hard-machined 3Y-TZP had better crack propagation resistance than soft-machined, 3-5% yttria-stabilized zirconias.

Conslusion: The ultra-translucent zirconias with ≥5% yttria content had the lowest crack propagation resistance. Hardness is not a suitable indicator for damage tolerance.

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