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Can universal adhesive systems bond to zirconia?

机译:通用粘合剂系统可以粘合到氧化锆吗?

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Abstract Objective To measure the bond strength to zirconia subjected to different surface treatments of universal bonding agents. Materials and methods Eighty blocks of zirconia were obtained by CAD/CAM milling. The blocks were embedded into PVC tubes, polished sequentially with increasing granulation sandpapers and divided into two groups according to surface treatment: polished or grit‐blasted with alumina particles. Each group was then subdivided by bonding agent employed: Z‐Prime Plus (control); Scotchbond Universal; All Bond Universal; and Z‐Prime Plus?+?All Bond Universal. Cylindrical composite resin build‐ups were constructed atop the blocks using a two‐part metal die. Specimens were stored for 24?hours and subjected to microshear bond strength testing. Statistical analyses were performed by means of the F ‐test (ANOVA), Student's t and Tukey's test. After sputter coating, zirconia surfaces and adhesive interfaces were analyzed by scanning electron microscopy (SEM). Results Bond strength was superior for grit‐blasted zirconia. In specimens with this surface treatment, there were no significant differences between experimental groups. On SEM, blasted surfaces exhibited areas of micromechanical retention and adhesive interfaces exhibited areas of zirconia‐adhesive interlocking. Conclusion Universal adhesive systems were able to bond to zirconia. The interlocking promoted by grit‐blasting enhanced bond strength. Clinical significance Universal adhesive systems simplify bonding to zirconia and enable intraoral repair of fractures.
机译:摘要目的测量氧化锆对普通粘合剂不同表面处理的粘合强度。材料和方法通过CAD / CAM铣削获得8块氧化锆。将该块嵌入PVC管中,依次抛光,随着造粒纸涂膜,并根据表面处理分为两组:用氧化铝颗粒抛光或砂喷砂。然后通过所使用的粘合剂细分每组:Z-Prime加(对照); Scotchbond Universal;所有债券普遍;和z-prime plus?+?所有债券普遍。圆柱形复合树脂积聚在块上使用两部分金属模具构造。将标本储存24小时并进行微粘合强度试验。通过F -Test(Anova),学生的T和Tukey的测试进行统计分析。在溅射涂层后,通过扫描电子显微镜(SEM)分析氧化锆表面和粘合剂界面。结果粘合强度优于砂砾喷射的氧化锆。在具有这种表面处理的标本中,实验组之间没有显着差异。在SEM,爆破的表面表现出微机械保留和粘合剂界面的区域表现出氧化锆粘合互锁的区域。结论通用粘合体系能够与氧化锆结合。通过砂砾喷射增强的粘合强度促进互锁。临床意义通用粘合剂系统简化了氧化锆的键合,并能够进行骨折的内部修复。

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