Int J Prosthodont. 2020 Mar/Apr;33(2):212-216. doi: 10.11607/ijp.6453.
To evaluate the effect of different concentrations of hydrofluoric acid (HF) on the surface roughness of a ceramic reinforced by lithium disilicate and on the bond strength formed between the ceramic and self-adhesive resin cement.
A total of 100 disks of IPS e.max Press ceramic (Ivoclar Vivadent) reinforced by lithium disilicate were prepared as follows: group 1 remained untreated (control group); in groups 5-20, 5-40, and 5-60, the surfaces were etched with 5% HF for 20, 40, and 60 seconds, respectively; in groups 10-20, 10-40, and 10-60, the surfaces were etched with 10% HF for 20, 40, and 60 seconds, respectively; and in groups 10-20P, 10-40P, and 10-60P, the surfaces were etched with 10% HF for 20, 40, and 60 seconds, respectively, followed by treatment with 37% phosphoric acid for 5 seconds. Surface roughness and bond strength were analyzed with confocal microscopy and microshear testing, respectively. The values obtained were statistically analyzed using paired t test and two-way ANOVA followed by Tukey post hoc test at a 5% significance level.
Surface roughness was influenced by the concentration and exposure time of acid applied (P < .05) and by the combination of these two factors (P < .05). Treatment with 10% HF for 40 seconds (group 10-40) achieved the highest roughness value. In contrast, bond strength was affected only by the acid exposure time (P < .05).
Conditioning of lithium disilicate ceramics can change the surface morphology, thereby affecting bond strength with resin cement.
评估不同浓度氢氟酸(HF)对锂硅二酸盐增强陶瓷表面粗糙度的影响,以及陶瓷与自粘结树脂水泥之间形成的粘结强度。
共制备 100 个 IPS e.max Press 陶瓷(义获嘉伟瓦登特)增强锂硅二酸盐圆盘:第 1 组未经处理(对照组);第 5-20 组、第 5-40 组和第 5-60 组分别用 5% HF 酸蚀 20、40 和 60 秒;第 10-20 组、第 10-40 组和第 10-60 组分别用 10% HF 酸蚀 20、40 和 60 秒;第 10-20P 组、第 10-40P 组和第 10-60P 组分别用 10% HF 酸蚀 20、40 和 60 秒后,再用 37%磷酸酸蚀 5 秒。采用共聚焦显微镜和微剪切试验分别分析表面粗糙度和粘结强度。使用配对 t 检验和双因素方差分析,随后使用 Tukey 事后检验,以 5%的显著水平对获得的值进行统计学分析。
表面粗糙度受酸的浓度和暴露时间的影响(P <.05),也受这两个因素的组合影响(P <.05)。用 10% HF 酸蚀 40 秒(第 10-40 组)可获得最高的粗糙度值。相比之下,粘结强度仅受酸暴露时间的影响(P <.05)。
对锂硅二酸盐陶瓷进行预处理可改变表面形貌,从而影响与树脂水泥的粘结强度。