Dupriez Nataliya Deyneka, von Koeckritz Ann-Kristin, Kunzelmann Karl-Heinz
Department of Operative/Restorative Dentistry, Periodontology and Pedodontics, Ludwig-Maximilians-University of Munich, Munich, Germany.
J Biomed Mater Res B Appl Biomater. 2015 May;103(4):925-34. doi: 10.1002/jbm.b.33193. Epub 2014 Oct 10.
The purpose of this study is to investigate the in vitro tribological behavior of modern nonmetallic restorative materials. Specimen prepared of IPS e.max Press lithium disilicate glass ceramic, IPS Empress Esthetic leucite-reinforced glass ceramic, Everest ZS Blanks yttria-stabilized zirconia and Lava Ultimate composite were subjected to wear using a wear machine designed to simulate occlusal loads. The wear of the investigated materials and antagonists were evaluated by a three-dimensional surface scanner. The quantitative wear test results were used to compare and rank the materials. Specimens were divided into two groups with steatite and alumina antagonists. For each antagonist material an analysis of variance was applied. As a post hoc test of the significant differences, Tukey's honest significant difference test was used. With steatite antagonist: wear of zirconia < wear of leucite-reinforced ceramic < wear of lithium disilicate ceramic < wear of Lava Ultimate composite. No significant wear difference was found for steatite antagonist. The wear of IPS e.max Press and Lava Ultimate against hard alumina was found to be twice lower as compared to their wear when opposing to steatite. The differences were associated with materials mechanical properties (hardness and fracture toughness) and with materials microstructure. Wear mechanisms are discussed.
本研究的目的是调查现代非金属修复材料的体外摩擦学行为。用IPS e.max Press二硅酸锂玻璃陶瓷、IPS Empress Esthetic白榴石增强玻璃陶瓷、Everest ZS Blanks氧化钇稳定氧化锆和Lava Ultimate复合材料制备的试样,使用设计用于模拟咬合负荷的磨损试验机进行磨损试验。通过三维表面扫描仪评估所研究材料及其对抗物的磨损情况。定量磨损试验结果用于比较材料并对其进行排名。试样分为两组,分别以滑石和氧化铝作为对抗物。对每种对抗物材料应用方差分析。作为显著差异的事后检验,使用了Tukey诚实显著差异检验。对于滑石对抗物:氧化锆的磨损<白榴石增强陶瓷的磨损<二硅酸锂陶瓷的磨损<Lava Ultimate复合材料的磨损。对于滑石对抗物,未发现显著的磨损差异。发现IPS e.max Press和Lava Ultimate相对于硬氧化铝的磨损比它们与滑石相对时的磨损低两倍。这些差异与材料的机械性能(硬度和断裂韧性)以及材料的微观结构有关。讨论了磨损机制。