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不同表面处理方式对锂硅玻璃陶瓷拉伸粘结强度的影响。

Effect of Different Surface Treatments on the Tensile Bond Strength to Lithium Disilicate Glass Ceramics.

出版信息

J Adhes Dent. 2018;20(3):261-268. doi: 10.3290/j.jad.a40632.

Abstract

PURPOSE

To evaluate the influence of different surface treatments of lithium disilicate glass ceramics on the bonding efficacy of three luting composites.

MATERIALS AND METHODS

A total of 450 blocks of e.max CAD (Ivoclar Vivadent) ground with 600-grit silicon carbide paper were prepared and divided into three groups (n = 150) according to the composite cements used: Variolink Esthetic DC (VE), Multilink Automix (MA), and SpeedCEM (SC). Each group was further divided into five subgroups (n = 10) according to the surface treatment performed: no treatment (control), Monobond Plus (MP), 37% phosphoric acid and Monobond Plus (PA), < 5% hydrofluoric acid and Monobond Plus (HF), and Monobond Etch & Prime (ME). All treated ceramic specimens were bonded with three composite cements and light cured. After 24-h water storage and 5000 or 10,000 thermocycles, tensile bond strength (TBS) was measured. The specimens underwent failure mode analysis. The results were statistically analyzed using two-way ANOVA and t-tests with Bonferroni correction.

RESULTS

The TBSs were significantly influenced by surface treatments (p < 0.05). There were no significant differences in HF and ME among most of the groups. Furthermore, ME showed the highest bond strength with MA after 10,000 thermocycling. Most specimens of the ME groups exhibited cohesive failures, whereas a combination of adhesive failures and mixed failures were observed in control, MP, PA, and HF groups.

CONCLUSION

In the surface treatment of lithium disilicate glass ceramics, Monobond Etch & Prime was found to be a possible substitution for the combination of hydrofluoric acid and Monobond Plus.

摘要

目的

评估不同的锂硅玻璃陶瓷表面处理对三种粘固复合材料粘结效果的影响。

材料与方法

共制备 450 块 e.max CAD(义获嘉伟瓦登特)块,用 600 目碳化硅砂纸研磨,根据使用的复合黏固剂将其分为 3 组(n = 150):Variolink Esthetic DC(VE)、Multilink Automix(MA)和 SpeedCEM(SC)。每组根据表面处理方法进一步分为 5 个亚组(n = 10):未处理(对照)、Monobond Plus(MP)、37%磷酸和 Monobond Plus(PA)、< 5%氢氟酸和 Monobond Plus(HF)和 Monobond Etch & Prime(ME)。所有处理后的陶瓷标本均与三种复合黏固剂粘结并光固化。24 h 水储存和 5000 或 10000 次热循环后,测量拉伸粘结强度(TBS)。对标本进行失效模式分析。采用双向方差分析和 t 检验(Bonferroni 校正)对结果进行统计学分析。

结果

表面处理显著影响 TBS(p < 0.05)。HF 和 ME 在大多数组之间无显著差异。此外,在 10000 次热循环后,ME 与 MA 结合表现出最高的粘结强度。ME 组的大多数标本表现出内聚性失效,而对照、MP、PA 和 HF 组则观察到粘结性失效和混合性失效的组合。

结论

在锂硅玻璃陶瓷的表面处理中,Monobond Etch & Prime 可能是替代氢氟酸和 Monobond Plus 的组合。

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