表面处理和老化对复合水泥与氧化锆增强锂硅酸盐玻璃陶瓷粘结强度的影响。

W. Bömicke, P. Rammelsberg, J. Krisam, S. Rues
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引用次数: 14

摘要

目的在模拟临床条件下,研究陶瓷表面调理和老化对复合水泥与氧化锆增强锂硅酸盐玻璃陶瓷(ZLS)粘结强度的影响。材料与方法将szls圆盘(Celtra Duo, Dentsply Sirona, n = 110,试验组n = 10,直径8.3 mm,高度3.4 mm)分为4个表面处理组:(I) ~5%氢氟酸蚀刻30 s (Vita Ceramics Etch, Vita;HF)、硅烷化(Calibra Silane;SIL);(II)连续被唾液和硅胶(CONT)、HF、SIL污染;(三)CONT,摩擦化学硅化(CoJet), SIL;(IV) HF, SIL,粘合剂的应用和光聚合(Prime&Bond Active), CONT,粘合剂的再应用和光聚合。使用自粘复合水泥(Calibra Universal)将ZLS圆盘粘接在内径3.3 mm的丙烯酸管中的复合树脂圆柱体上。分别在蓄水24 h和6个月后测定其抗拉粘结强度(TBS)。第一组(3天WS;30天WS,包括7500个6.5至60°C的热循环;150天的WS,包括37,500个热循环)。结果24 h后,平均TBS在21 MPa (III组)和30 ~ 35 MPa(其余组)之间。除3天WS外,TBS随年龄的增长而显著降低。硅化样品(III组,老化后平均TBS: 9.8 MPa)的降低幅度最大。结论陶瓷表面调理和老化对复合水泥与ZLS粘结强度的影响均有统计学意义。基于摩擦化学硅化的处理方案不能推荐用于ZLS的胶结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effects of Surface Conditioning and Aging on the Bond Strength Between Composite Cement and Zirconia-reinforced Lithium-Silicate Glass-Ceramics.
PURPOSE To determine the effects of ceramic-surface conditioning and aging on the bond strength between composite cement and zirconia-reinforced lithium-silicate glass-ceramics (ZLS) under simulated clinical conditions. MATERIALS AND METHODS ZLS disks (Celtra Duo, Dentsply Sirona, n = 110 test group n = 10, diameter: 8.3 mm, height: 3.4 mm) were assigned to four surface-conditioning groups: (I) 30 s of ~5% hydrofluoric-acid etching (Vita Ceramics Etch, Vita; HF), silanization (Calibra Silane; SIL); (II) successive contamination with saliva and silicone (CONT), HF, SIL; (III) CONT, tribochemical silicatization (CoJet), SIL; (IV) HF, SIL, application and light polymerization of an adhesive (Prime&Bond Active), CONT, reapplication and light polymerization of the adhesive. The ZLS disks were bonded to composite-resin cylinders in acrylic tubes (inner diameter: 3.3 mm) using self-adhesive composite cement (Calibra Universal). The tensile-bond strength (TBS) was measured after both 24 h and 6 months of water storage (WS). Additional aging protocols were tested for group I (3-day WS; 30-day WS including 7500 thermocycles between 6.5 and 60°C; 150-day WS including 37,500 thermocycles). RESULTS After 24 h, the mean TBS ranged between 21 MPa (group III) and 30-35 MPa (remaining groups). With the exception of 3-day WS, TBS was statistically significantly reduced by aging. The greatest reduction was observed for silicatized specimens (group III, mean TBS after aging: 9.8 MPa). CONCLUSION Both ceramic surface conditioning and aging had a statistically significant effect on the bond strength between composite cement and ZLS. A treatment protocol based on tribochemical silicatization cannot be recommended for the adhesive cementation of ZLS.
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