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Surface Characterization and Conductivity of Two Types of Lithium-Based Glass Ceramics after Accelerating Ageing

机译:加速老化后两种锂基玻璃陶瓷的表面特征和电导率

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摘要

In this study, two different dental ceramics, based on zirconia-reinforced lithium-silicate (LS1) glass-ceramics (Celtra Duo, Dentsply Sirona, Bensheim, Germany) and lithium disilicate (LS2) ceramics (IPS e.max CAD, Ivoclar, Vivadent, Schaan, Liechtenstein) were examined. They were tested prior to and after the crystallization by sintering in the dental furnace. Additionally, the impact of ageing on ceramic degradability was investigated by immersing it in 4% acetic acid at 80 °C for 16 h. The degradability of the materials was monitored by Impedance Spectroscopy (IS), X-Ray Powder Diffraction (XRPD), and Field Emission Scanning Electron Microscope (FE-SEM) techniques. It was detected that LS2 (vs. LS1) samples had a lower conductivity, which can be explained by reduced portions of structural defects. XRPD analyses also showed that the ageing increased the portion of defects in ceramics, which facilitated the ion diffusion and degradation of samples. To summarize, this study suggests that the non-destructive IS technique can be employed to probe the ageing properties of the investigated LS1 and LS2 ceramics materials.
机译:在这项研究中,两种不同的牙科陶瓷,基于氧化锆增强锂 - 硅酸锂(LS1)玻璃 - 陶瓷(Celtra Duo,Lentsply Sirona,Bensheim,德国)和锂峰(LS2)陶瓷(IPS E.Max CAD,Ivoclar,研究了Vivadent,Schaan,列支敦士登)。通过在牙科炉中烧结之前和结晶之前和之后进行测试。另外,通过将4%乙酸在80℃下浸入16小时,研究了老化对陶瓷降解性的影响。通过阻抗光谱(IS),X射线粉末衍射(XRPD)和场发射扫描电子显微镜(FE-SEM)技术监测材料的可降解性。检测到LS2(与LS1)样品具有较低的导电性,这可以通过减少结构缺陷的部分来解释。 XRPD分析还表明,老化增加了陶瓷中的缺陷部分,其促进了样品的离子扩散和降解。总而言之,该研究表明,可以使用非破坏性是技术来探讨所研究的LS1和LS2陶瓷材料的老化性能。

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