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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Comparison of methanol/hydrochloric, ferric chloride acid versus tribochemical silica coating for adhesion of resin cement to zirconium dioxide
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Comparison of methanol/hydrochloric, ferric chloride acid versus tribochemical silica coating for adhesion of resin cement to zirconium dioxide

机译:甲醇/盐酸,氯化铁酸与摩擦化学二氧化硅涂层对树脂水泥与二氧化锆的粘附性的比较

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摘要

This study compared air-abrasion and etching regimens on adhesion of resin luting agent to zirconium dioxide. Ceramic specimens (LAVA, 3 M ESPE) (N = 16) were embedded in acrylic resin and exposed surfaces were polished. The specimens were randomly assigned into four groups (n = 12, 3 specimens for each disc): SC: Air-borne particle abrasion (30 mu m aluminum oxide particles coated with silica, CoJet, 3 M ESPE); MH: Heated chemical solution (Methanol-800 mL; 37% Hydrochloric Acid-200 mL; Ferric Chloride-2 g) at 100 degrees C for 30 min, MHP: Primer (Metal/Zirconia Primer, Ivoclar Vivadent) + MH, P: Primer only (Metal/Zirconia Primer). Cylindrical molds (internal diameter: 0.7 mm; height: 1.5 mm) were placed on each conditioned specimen, filled with resin cement (Multilink Automix) and photo-polymerized for 60 s. After 24 h, the molds were removed and the specimens were stored in distilled water at 37 degrees C for six months). Microshear test was performed in a Universal Testing Machine (1 mm/min). Failures types were classified as adhesive, mixed, or cohesive. In another set of specimens (n = 2 per group) contact angle measurements were recorded. Data were analyzed statistically using Kruskal-Wallis and Dunn's tests (alpha = 0.05). The surface conditioning method significantly affected the mean bond strength (MPa) (p < 0.0001): SC(18.3 +/- 0.3)(a) < P(5.00 +/- 0.07)(b) < MHP(4.7 +/- 0.08)(c) < MH(0.84 +/- 0.01)(c). While Group SC showed mainly adhesive (58%) and mixed (41.7%) failure types, groups MH, MHP, and P presented exclusively adhesive failures. SC, MHP, and P (29-32 degrees) showed lower contact angle than MH (78.9 degrees). Volume loss was the highest with MHP (9.92 mu l) followed by SC (9.67 mu l).
机译:这项研究比较了空气磨蚀和蚀刻方案对树脂诱剂对二氧化锆的粘附性。将陶瓷样品(LAVA,3 M ESPE)(N = 16)嵌入丙烯酸树脂中,并对裸露的表面进行抛光。将样本随机分为四组(每张光盘n = 12,每个样本3个样本):SC:气载颗粒磨损(30微米氧化铝颗粒,涂有二氧化硅,CoJet,3M ESPE); MH:在100°C下加热的化学溶液(甲醇-800 mL; 37%盐酸-200 mL;氯化铁2 g)在100摄氏度下处理30分钟,MHP:底漆(金属/氧化锆底漆,Ivoclar Vivadent)+ MH,P:仅底漆(金属/锆石底漆)。将圆柱形模具(内径:0.7 mm;高度:1.5 mm)放置在每个条件试样上,填充树脂胶泥(Multilink Automix)并进行光聚合60 s。 24小时后,将模具取出,并将样品在37摄氏度的蒸馏水中保存6个月。微剪切试验在通用试验机(1mm / min)中进行。失败类型分为粘附性,混合性或内聚性。在另一组样品中(每组n = 2),记录了接触角的测量值。使用Kruskal-Wallis和Dunn检验对数据进行统计分析(α= 0.05)。表面处理方法显着影响平均粘结强度(MPa)(p <0.0001):SC(18.3 +/- 0.3)(a)

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