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首页> 外文期刊>Applied Adhesion Science >Surface topography and bond strength of CAD–CAM milled zirconia ceramic luted onto human dentin: effect of surface treatments before and after sintering
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Surface topography and bond strength of CAD–CAM milled zirconia ceramic luted onto human dentin: effect of surface treatments before and after sintering

机译:粘在人牙本质上的CAD-CAM研磨氧化锆陶瓷的表面形貌和结合强度:烧结前后的表面处理效果

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Abstract The purpose of this study was to investigate whether different surface treatments, executed before and after the sintering process, affect the surface characteristics (roughness and morphology) and shear bond strength of computer-aided design–computer-aided manufacturing (CAD–CAM) milled zirconia luted with self-adhesive resin cement onto human dentin. Sixty-four rectangular zirconia slabs (6?×?8.5?×?2.3?mm thickness) were prepared using the CAD–CAM system and randomly distributed into two groups according to the moment of treatment, before and after sintering, and four subgroups according to the surface treatment (n?=?8): C (untreated; control), AO (aluminum oxide air abrasion), GB (glass beads air abrasion), and HA (etching with hydrofluoric acid). The samples were evaluated using a confocal laser microscope to assess the surface roughness and morphology. For the shear bond strength test, the milled zirconia was cemented onto dentin slabs using self-adhesive resin cement and submitted to the test in a universal testing machine. Data were submitted to a two-way ANOVA and Tukey test ( p ?0.05). The surface roughness was always higher for the samples treated before sintering (highest roughness in the GB group). When treatment was employed after sintering, there was no difference between the subgroups. The shear bond strength analysis showed that the adhesion was greater when the treatment was employed after sintering, where groups AO, HA, and GB showed similar bond strength, higher than group C. Thus, it is concluded that regardless of the treatment performed, the bond strength is greater when zirconia is treated after sintering, while the surface roughness is greater before sintering.
机译:摘要这项研究的目的是研究在烧结过程之前和之后进行的不同表面处理是否会影响计算机辅助设计-计算机辅助制造(CAD-CAM)的表面特性(粗糙度和形态)和剪切粘结强度。研磨的氧化锆,用自粘树脂胶粘剂诱惑到人的牙本质上。使用CAD-CAM系统制备了64块矩形氧化锆板(厚度为6?×?8.5?×?2.3?mm),并根据处理的时刻(在烧结前后)随机分为两组,根据处理时间分为四个亚组。表面处理(n≤8):C(未处理;对照),AO(氧化铝的空气磨损),GB(玻璃珠的空气磨损)和HA(用氢氟酸蚀刻)。使用共聚焦激光显微镜评估样品以评估表面粗糙度和形态。对于剪切粘结强度测试,使用自粘树脂胶粘剂将研磨后的氧化锆胶粘到牙本质板上,并在通用测试机中进行测试。将数据提交至双向ANOVA和Tukey检验(p <?0.05)。烧结前处理的样品的表面粗糙度始终较高(GB组中最高)。烧结后进行处理时,各亚组之间没有差异。剪切粘结强度分析表明,在烧结后进行处理时,附着力更大,其中AO,HA和GB组显示出相似的粘结强度,高于C组。因此,可以得出结论,无论进行何种处理,在烧结后处理氧化锆时,结合强度较大,而在烧结前,表面粗糙度较大。

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