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Wear of Resin Composites Polymerized by Conventional Halogen Light Curing and Light Emitting Diodes Curing Units

机译:通过常规卤素光固化和发光二极管固化单元聚合的树脂复合材料的磨损

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In this study, the wear characteristics of five different dental composite resins cured by conventional halogen light and LED light sources were investigated. Five different dental composite resins of Surefil, Z100, Dyract AP, Fuji II LC and Compoglass were worn against a zirconia ceramic ball using a pin-on-disk type wear tester with 15 N contact force in a reciprocal sliding motion of sliding distance of 10 mm/cycle at 1Hz under the room temperature dry condition. The wear variations of dental composite resins were linearly increased as the number of cycles increased. It was observed that the wear resistances of these specimens were in the order of Dyract AP > Surefil > Compoglass > Z100 > Fuji II LC. On the morphological observations by SEM, the large crack formation on the sliding track of Fuji II LC specimen was the greatest among all resin composites. Dyract AP showed less wear with few surface damage. There is no significant difference in wear performance between conventional halogen light curing and light emitting diodes curing sources. It indicates that a light emitting diodes (LED) source can replace a halogen light source as curing unit for composite resin restorations.
机译:在该研究中,研究了通过常规卤素光和LED光源固化的五种不同牙科复合树脂的磨损特性。使用具有15N型接触力的销芯片型磨损测试仪佩戴紫外线,Z100,Dyract AP,Fuji II LC和Compoglass的五种不同的牙科综合树脂,在往复滑动距离10 MM /循环在1Hz下,室温干燥条件下。随着循环次数增加,牙科复合树脂的磨损变化是线性增加的。观察到这些样本的耐磨性是Dyract AP> Quemfil> Compoglass> Z100> Fuji II LC的顺序。在SEM的形态学观测中,富士II型LC样本滑动轨道上的大裂纹形成是所有树脂复合材料中最大的。 Dyract AP表现出较少的表面损坏。传统卤素光固化与发光二极管固化源之间的磨损性能没有显着差异。表示发光二极管(LED)源可以代替卤素光源作为用于复合树脂修复的固化单元。

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