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Influence of glazed zirconia on dual-cure luting agent bond strength.

机译:釉面氧化锆对双固化胶粘剂粘合强度的影响。

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The current study evaluated the influence of a novel surface treatment that uses a low-fusing porcelain glaze for promoting a bond between zirconia-based ceramic and a dual-cure resin luting agent. Bond strengths were compared with those from airborne particle abrasion, hydrofluoric acid etching, and silanization-treated surfaces. Twenty-four yttrium-stabilized tetragonal zirconia (Cercon Smart Ceramics, Degudent, Hanau, Germany) discs were fabricated and received eight surface treatments: group 1: 110 μm aluminum oxide air-borne particle abrasion; group 2: 110 μm aluminum oxide airborne particle abrasion and silane; group 3: 50 μm aluminum oxide airborne particle abrasion; group 4: 50 pm aluminum oxide airborne particle abrasion and silane; group 5: glaze and hydrofluoric acid;group 6: glaze, hydrofluoric acid, and silane;group 7: glaze and 50 pm aluminum oxide airborne particle abrasion; and group 8: glaze,50 pm aluminum oxide airborne particle abrasion and silane. After treatment, Enforce resin cement (Dentsply, Caulk, Milford, DE, USA) was used to fill an iris cut from microbore Tygontubing that was put on the ceramic surface to create 30 cylinders of resin cement in each treatment group (n=30). Micro shear bond test-ing was performed at a cross head speed of 0.5mm/min. One-way analysis of variance, and multiple comparisons were made using Tukey's test (p<0.5). The bond strength was affected only by surface treatments other than silanization. The groups that utilized the low-fusing porcelain glaze with airborne particle abrasion or hydrofluoric acid showed bond strength values statistically superior to groups that utilized conventional airborne particle abrasion treatments with 50 or 110 pm aluminum oxide (p<0.001). The treatment that utilized low-fusing porcelain glaze and hydrofluoric acid showed bond strength values statistically superior to remaining groups (p<0.001). Treatment of zirconia ceramic surfaces with a glaze of low-fusing porcelain significantly increased the bond strength of a dual-cure resin luting agent to the ceramic surface.
机译:当前的研究评估了一种新型表面处理的影响,该表面处理使用低熔点瓷釉来促进氧化锆基陶瓷与双固化树脂浸润剂之间的结合。结合强度与空气传播的颗粒磨损,氢氟酸蚀刻和硅烷化处理过的表面的结合强度进行了比较。制作了二十四片钇稳定的四方氧化锆(Cercon Smart Ceramics,德国哈瑙市Degudent),并进行了八种表面处理:第1组:110μm氧化铝气载颗粒磨蚀;第2组:110μm氧化铝空气传播颗粒磨损和硅烷;第3组:50μm氧化铝悬浮颗粒磨损;第4组:50 pm氧化铝的空气传播颗粒磨损和硅烷;第5组:釉料和氢氟酸;第6组:釉料,氢氟酸和硅烷;第7组:釉料和50 pm氧化铝空气传播的颗粒磨损;第8组:釉料,50 pm氧化铝空气传播的颗粒磨损和硅烷。处理后,使用Enforce树脂水泥(Dentsply,Calk,Milford,DE,美国)填充由微孔Tygontubing切割而成的虹膜,将其放在陶瓷表面上,在每个处理组中创建30个圆柱体树脂水泥(n = 30) 。微剪切粘结测试以0.5mm / min的十字头速度进行。使用Tukey检验(p <0.5)进行方差的单向分析和多次比较。粘合强度仅受硅烷化以外的表面处理影响。使用具有空气传播的颗粒磨损或氢氟酸的低熔性瓷釉的组显示出结合强度值在统计学上优于使用传统的空气传播的颗粒磨损处理,50 pm或110 pm氧化铝的组(p <0.001)。使用低熔瓷釉和氢氟酸的处理显示出结合强度值在统计学上优于其余组(p <0.001)。用低熔点瓷釉处理氧化锆陶瓷表面可显着提高双固化树脂浸润剂与陶瓷表面的结合强度。

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