Department of Biomaterials and Biomimetics, New York University College of Dentistry, 345 East 24th Street, New York, NY 10010, USA.
J Dent Res. 2010 Jan;89(1):91-5. doi: 10.1177/0022034509354193.
Zirconia-based restorations are widely used in prosthetic dentistry; however, their susceptibility to hydrothermal degradation remains elusive. We hypothesized that CAD/CAM machining and subsequent surface treatments, i.e., grinding and/or grit-blasting, have marked effects on the hydrothermal degradation behavior of Y-TZP. CAD/CAM-machined Y-TZP plates (0.5 mm thick), both with and without subsequent grinding with various grit sizes or grit-blasting with airborne alumina particles, were subjected to accelerated aging tests in a steam autoclave. Results showed that the CAD/CAM-machined surfaces initially exhibited superior hydrothermal degradation resistance, but deteriorated at a faster rate upon prolonged autoclave treatment compared with ground and grit-blasted surfaces. The accelerated hydrothermal degradation of CAD/CAM surfaces is attributed to the CAD/CAM machining damage and the absence of surface compressive stresses in the fully sintered material. Clinical relevance for surface treatments of zirconia frameworks in terms of hydrothermal and structural stabilities is addressed.
氧化锆基修复体在口腔修复领域得到了广泛的应用,但其对湿热降解的敏感性仍不清楚。我们假设 CAD/CAM 加工以及随后的表面处理(如研磨和/或喷砂)对 Y-TZP 的湿热降解行为有显著影响。对 CAD/CAM 加工的 Y-TZP 片(厚 0.5 毫米)进行了加速老化试验,这些 Y-TZP 片经过不同粒度的研磨或喷附氧化铝颗粒的喷砂处理。结果表明,初始时 CAD/CAM 加工表面表现出优异的抗湿热降解能力,但与研磨和喷砂处理后的表面相比,经过长时间的高压釜处理后,其降解速度更快。CAD/CAM 表面的加速湿热降解归因于 CAD/CAM 加工损伤以及完全烧结材料中缺乏表面压应力。探讨了 CAD/CAM 表面处理对氧化锆基修复体的湿热稳定性和结构稳定性的临床意义。