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首页> 外文期刊>Quintessence international >Effects of different acids and etching times on the bond strength of glass fiber-reinforced composite root canal posts to composite core material.
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Effects of different acids and etching times on the bond strength of glass fiber-reinforced composite root canal posts to composite core material.

机译:不同酸和蚀刻时间对玻璃纤维增强复合根管柱复合芯材料粘合强度的影响。

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To investigate the effects of different acids and etching times on the bond strength of glass fiber-reinforced composite (FRC) posts to composite core material.Twenty-six FRC posts (FRC Postec Plus) were randomly divided into 13 groups (each n = 2). One group received no surface treatment (control). The posts in the other groups were acid etched with 35% phosphoric acid and 5% and 9.6% hydrofluoric acid gel for four different etching times (30, 60, 120, and 180 seconds). A cylindric polytetrafluoroethylene mold was placed around the treated posts and filled with dual-cure composite core material (MultiCore Flow). All samples were light cured for 60 seconds. After 24 hours of water storage, the specimens were sectioned perpendicularly to the bonded interface under water cooling to obtain 2-mm post-and-core specimens. Eight specimens were made from each group. Push-out tests were performed at a crosshead speed of 0.5 mm/min using a universal testing machine. Data were analyzed by one-way ANOVA followed by the Tukey honestly significant difference test (alpha = .05).The lowest bond strength was observed in the control group (12.51 megapascal [MPa]). No statistical significant difference was observed among group H5-120 (20.31 MPa), group H9-120 (20.55 MPa), or group P-180 (20.57 MPa) (P > .05). These groups demonstrated the highest bond strength values (P < .05).For the FRC posts, all acid-etching procedures tested showed significantly increased bond strength when compared with the control group. Acid-etching with 5% hydrofluoric acid and 9.6% hydrofluoric acid for 2 minutes and with 35% phosphoric acid for 3 minutes (groups H5-120, H9-120, and P-180, respectively) demonstrated the highest bond strength values between the FRC post and composite core material. Although the bond strength was increased by prolonged acid etching, the microstructure of the FRC posts might have been damaged.
机译:为了探讨不同酸和蚀刻时间对复合芯材的玻璃纤维增​​强复合材料(FRC)柱的粘合强度的影响。用六个FRC柱(FRC Postec Plus)随机分为13组(每个n = 2 )。一组没有表面处理(对照)。其他基团中的柱用35%磷酸和5%和9.6%氢氟酸凝胶蚀刻,用于四次不同的蚀刻时间(30,60,120和180秒)。将圆柱形聚四氟乙烯模具置于处理过的柱周围并填充双固化复合芯材(多芯流量)。所有样品都是光固化60秒。在储水24小时后,在水冷下垂直于粘合界面垂直切片,以获得2mm后核标本。八个标本由每组制成。使用通用测试机以0.5mm / min的十字头速度进行推出测试。通过单向ANOVA分析数据,然后是Tukey诚实的显着差异测试(alpha = .05)。对照组观察到最低的粘合强度(12.51兆帕斯卡斯[MPA])。在H5-120(20.31MPa),H9-120组(20.55MPa)组或基团P-180(20.57MPa)中没有观察到统计显着差异(20.57MPa)(p> .05)。这些组证明了最高的粘合强度值(P <.05)。对于FRC柱,与对照组相比,所有测试的酸蚀刻程序显示出明显增加的粘合强度。用5%氢氟酸和9.6%氢氟酸酸蚀刻2分钟,3分钟磷酸3分钟(分别为H5-120,H9-120和P-180,分别)显示了最高的粘合强度值FRC柱和复合核心材料。尽管通过延长酸蚀刻增加粘合强度,但FRC柱的微观结构可能已受损。

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