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The influence of retention hole and adhesive systems on the shear bond strengths of resin composite to amalgam

机译:固位孔和粘合剂体系对树脂复合材料与汞合金的剪切粘合强度的影响

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摘要

The aim of the study is to evaluate the influence of surface-treatment methods with and without the use of a retention hole on the shear bond strength of a resin composite adhered to amalgam using an adhesive system. Amalgam specimens were divided into six groups. Group 1 (Bur) specimens were roughened with a diamond bur, Group 2 (Al2O3) specimens were sandblasted with a 50 μm aluminum oxide powder, Group 3 (CoJet~R) specimens were sandblasted with 30 μm CoJet~R Sand, Group 4 (Bur + Rh) specimen surfaces were prepared with a retention hole 1 mm in diameter and 1 mm deep and roughened with a diamond bur, Group 5 (Al2O3 + Rh) specimens were also prepared with a retention hole and sandblasted with 50 μm aluminum oxide powder, and Group 6 (CoJet~R+ Rh) surfaces were prepared with a retention hole and sandblasted with 30 μm CoJet~R Sand. Resin composite cylinders were bonded onto the amalgam surfaces using Xeno~R IV, Optibond~(TM) All-in-One, Clearfil~(TM) SE Bond, Adper~(TM) Single Bond Plus, and Scotchbond~(TM) Multi-Purpose adhesive systems. In addition, silane (Monobond S) was used for Groups 5 and 6. The shear bond was determined and statistically analyzed using two-way analysis of variance and post hoc Tukey's tests (p ≤ 0.05). The surface treatment significantly affected the shear bond strengths of the adhesive systems. The shear bond strengths of Optibond~(TM) All-In-One (2.661 ± 0.48 MPa) in Group 1 and Scotchbond Multi-Purpose (3.818 ±0.98) in Group 4 were significantly higher than those of the other adhesive systems. Silica coating of the amalgam surface significantly improved the shear bond strength of the resin composites. The addition of a retention hole on the amalgam affects the bonding strength of the composite adhesion.
机译:该研究的目的是评估使用和不使用固位孔的表面处理方法对使用胶粘剂系统粘附在汞合金上的树脂复合材料的剪切粘合强度的影响。汞合金标本分为六组。第1组(Bur)标本用金刚石钻进行粗加工,第2组(Al2O3)标本用50μm氧化铝粉末喷砂处理,第3组(CoJet〜R)标本用30μmCoJet〜R Sand,第4组喷砂处理( Bur + Rh)试样表面准备有直径1 mm,深1 mm的定位孔并用金刚石bur进行粗糙化处理,第5组(Al2O3 + Rh)试样也准备有定位孔并用50μm氧化铝粉末喷砂处理和第6组(CoJet-R + Rh)表面准备有留置孔,并用30μmCoJet-R Sand喷砂处理。使用Xeno〜R IV,Optibond〜TM All-in-one,Clearfil〜TM SE Bond,Adper〜TM Single Bond Plus和ScotchbondTM Multi将树脂复合材料圆柱体粘结到汞合金表面上-用途粘合剂系统。另外,硅烷(Monobond S)用于第5组和第6组。使用方差的双向分析和事后Tukey检验确定剪切键并进行统计分析(p≤0.05)。表面处理显着影响了粘合剂体系的剪切粘合强度。第一组的Optibond〜TM All-In-One(2.661±0.48 MPa)和第四组的Scotchbond Multi-Purpose(3.818±0.98)的剪切粘结强度显着高于其他粘合剂体系。汞合金表面的二氧化硅涂层显着提高了树脂复合材料的剪切粘结强度。在汞齐上添加保留孔会影响复合材料粘合的粘合强度。

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