首页> 外文期刊>Journal of prosthodontics: official journal of the American College of Prosthodontists >Effect of surface preparation on the failure load of a highly filled composite resin bonded to a denture base resin.
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Effect of surface preparation on the failure load of a highly filled composite resin bonded to a denture base resin.

机译:表面处理对粘结到义齿基体树脂上的高填充复合树脂破坏载荷的影响。

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摘要

PURPOSE: The purpose of this study was to evaluate the effect of the surface preparation on the maximum fracture load value of a highly filled gingival shade composite resin bonded to a denture base resin. MATERIALS AND METHODS: Block specimens were prepared from a heat-processed denture base resin and divided into five groups. The flat surfaces of the specimens were abraded with 400-grit silicon carbide paper, then prepared in one of the following ways: (1) without preparation (group 1); (2) application of silane coupling agent (group 2); (3) application of dichloromethane (group 3); (4) application of dichloromethane following the silane coupling agent (group 4); or (5) tribochemical silica coating (group 5). A highly filled gingival shade composite resin was applied (area diameter= 5 mm) and polymerized with a light polymerizing unit. Specimens made entirely of heat-processed denture base resin were also fabricated as references (group 6). The halves of the specimens of groups 4, 5, and 6 were thermocycled up to 10,000 times in water between 5 degrees C and 55 degrees C with a 1-minute dwell time at each temperature. Shear testing was performed in a universal testing machine at a crosshead speed of 1 mm/min, and the maximum fracture load values were determined (n = 10). RESULTS: The maximum fracture load values of the highly filled gingival shade composite resin bonded to the denture base resin for all preparation groups were significantly enhanced before thermocycling (p < 0.05). Group 5 exhibited the greatest fracture load value, followed by group 4, compared to the other groups (p < 0.05), however, the fracture load values significantly decreased for these groups after thermocycling (p < 0.05), whereas the fracture load value of group 6 did not decrease (p > 0.05). CONCLUSIONS: Tribochemical silica coating and the application of dichloromethane after the silane coupling agent were effective surface preparations for the bonding of a highly filled gingival shade composite resin to a denture base resin, however, the bond durability of these treatments may be insufficient.
机译:目的:本研究的目的是评估表面处理对粘结在义齿基础树脂上的高度填充的牙龈阴影复合树脂的最大断裂载荷值的影响。材料与方法:块状试样由热处理的义齿基体树脂制成,分为五组。用400粒度的碳化硅纸研磨试样的平坦表面,然后按以下方式之一进行制备:(1)不进行制备(第1组); (2)硅烷偶联剂(第2组)的应用; (3)二氯甲烷的使用(第3组); (4)在硅烷偶联剂(第4组)之后施加二氯甲烷;或(5)摩擦化学二氧化硅涂层(第5组)。涂覆高度填充的牙龈阴影复合树脂(面积直径= 5 mm),并用光聚合单元聚合。还制作了完全由热处理义齿基料树脂制成的样品作为参考(第6组)。将第4、5和6组的一半样品在5摄氏度至55摄氏度之间的水中热循环多达10,000次,在每种温度下停留1分钟。在万能试验机中以1 mm / min的十字头速度进行剪切试验,并确定最大断裂载荷值(n = 10)。结果:在热循环前,所有制剂组粘结在义齿基托树脂上的高填充牙龈阴影复合树脂的最大断裂载荷值均得到显着提高(p <0.05)。与其他组相比,第5组的骨折负荷值最大,其次是第4组(p <0.05),但是,这些组的热负荷后的断裂负荷值显着降低(p <0.05),而第5组的断裂负荷值第6组未降低(p> 0.05)。结论:摩擦化学二氧化硅涂层和在硅烷偶联剂之后施加二氯甲烷是将高填充牙龈阴影复合树脂粘合到义齿基础树脂上的有效表面制剂,但是这些处理的粘合耐久性可能不足。

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