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Effect of Zirconium Nanoparticles on the Mechanical Properties of Light-Cured Resin Based Dental Composites

机译:锆纳米粒子对光固化树脂基牙科复合材料力学性能的影响

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摘要

The aim of this study was to evaluate the mechanical properties of conventional composite resins (Solare-P) and the modified composite resin having mixed with zirconium nanoparticles. The composite resins are used to replace the missing tooth structure and improve esthetics. In this study, the composite was filled with increments in a mould which was 4 mm in depth and 3 mm in diameter. After filling, it was polymerized with halogen light curing unit for 20 seconds for each increment. In other experiments, the composite was mixed with zirconium nanoparticles and filled in the moulds with increments and polymerized for 20 seconds with halogen light curing unit for each increment. After keeping the moulds at 37 °C for 24 hours their mechanical properties including compressive force, %age elongation, compressive strength and hardness were evaluated. It was seen that by adding zirconium nanoparticles, compressive force, %age elongation, compressive strength and hardness increased significantly. Thus it was concluded that the new materials are better than the conventional compomers.
机译:这项研究的目的是评估常规复合树脂(Solare-P)和掺有锆纳米颗粒的改性复合树脂的机械性能。复合树脂用于替代缺失的牙齿结构并改善美观性。在这项研究中,复合材料在深度为4毫米,直径为3毫米的模具中以增量填充。填充后,将其与卤素光固化单元进行每次聚合反应20秒。在其他实验中,将复合材料与锆纳米颗粒混合,并逐步填充到模具中,并在每次增量的情况下使用卤素灯固化装置聚合20秒。将模具在37°C下放置24小时后,评估了它们的机械性能,包括压缩力,伸长率,压缩强度和硬度。可以看出,通过添加锆纳米颗粒,压缩力,%伸长率,压缩强度和硬度显着增加。因此可以得出结论,新材料比常规的复合材料更好。

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