Oper Dent. 2019 Sep/Oct;44(5):545-555. doi: 10.2341/18-131-L. Epub 2019 Mar 8.
The purpose of this study was to evaluate the influence of thermomechanical cycling on the bond strength stability of self-adhesive resin cement to vitrified yttria-stabilized tetragonal zirconia polycrystal (Y-TZP) ceramic. Y-TZP ceramic blocks were divided into four groups according to the surface treatments: AS, as sintered; SB, sandblasted with 50-μm AlO particles; LG, vitrification with a low-fusing glaze and etching with 10% hydrofluoric acid; and HC, vitrification with a ceramic liner and etching with 10% hydrofluoric acid. Lithium disilicate ceramic blocks etched with 10% hydrofluoric acid for 20 seconds (EM) were also tested. Blocks of resin composite were cemented on the ceramic block surfaces using a self-adhesive resin cement. Half of the blocks from each group were cut into beams and submitted to microtensile bond strength (μTBS) testing after immersion in water at 37°C for 24 hours and the other half after mechanical (1,200,000 cycles, 98 N, 2.5 Hz) and thermal (10,000 cycles, 5-55°C, 30-second dwell time) cycling (TMC). Data were analyzed using one-way analysis of variance, Tukey's honest significant difference post hoc test, and Student -test (α=0.05). After 24 hours, EM and LG presented similar and the highest μTBS, whereas AS showed the lowest μTBS (<0.05). After TMC, EM presented the highest μTBS, followed by LG (<0.05). Only EM and LG maintained the stability of μTBS after TMC (>0.05). The bonding to Y-TZP ceramic vitrified with a low-fusing glaze withstood thermomechanical cycling.
本研究旨在评估热机械循环对自粘接树脂水泥与玻璃化氧化钇稳定四方氧化锆多晶(Y-TZP)陶瓷之间粘结强度稳定性的影响。将 Y-TZP 陶瓷块按表面处理分为四组:AS,烧结后;SB,用 50-μm AlO 颗粒喷砂;LG,用低熔釉玻璃化处理并用 10%氢氟酸蚀刻;HC,用陶瓷衬里玻璃化处理并用 10%氢氟酸蚀刻。还测试了用 10%氢氟酸蚀刻 20 秒的二硅酸锂陶瓷块(EM)。将树脂复合材料块粘结在陶瓷块表面,使用自粘接树脂水泥。每组一半的块从每个组中切割成梁,并在 37°C 水中浸泡 24 小时后进行微拉伸粘结强度(μTBS)测试,另一半在机械(1,200,000 次循环,98 N,2.5 Hz)和热(10,000 次循环,5-55°C,30 秒停留时间)循环(TMC)后进行测试。使用单向方差分析、Tukey 的诚实显著差异事后检验和 Student -检验(α=0.05)分析数据。24 小时后,EM 和 LG 表现出相似的最高 μTBS,而 AS 表现出最低的 μTBS(<0.05)。经过 TMC 后,EM 表现出最高的 μTBS,其次是 LG(<0.05)。只有 EM 和 LG 在经过 TMC 后保持 μTBS 的稳定性(>0.05)。用低熔釉玻璃化处理的 Y-TZP 陶瓷的粘结经受住了热机械循环。