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Nanomechanical properties and wear resistance of dental restorative materials

机译:牙科修复材料的纳米力学性能和耐磨性

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摘要

The effects of thermocycling procedure and material shade on the mechanical properties and wear resistance of resin-based dental restorative materials are investigated. The modulus of elasticity, hardness, plasticity index and wear resistance are determined for the conventional composite, the nanohybrid composite and the nanofilled dental composites. Disc-shape samples are prepared from each material to investigate the effects of thermocycling procedure on the mechanical properties and wear resistance of different types of dental restorative materials. In this respect, a group of samples is thermocycled and the other group is stored in ambient conditions. Then nano-indentation and nano-scratch tests are performed on the samples to measure their mechanical properties and wear resistance. Results show that the A1E shade of the dental nanocomposite possesses higher modulus of elasticity and hardness values compared to the two other shades. According to the experimental results, the mean values for the modulus of elasticity and hardness of the A1E shade of the nanocomposite are 13.71 GPa and 1.08 GPa, respectively. The modulus of elasticity and hardness of the conventional dental composite increase around 30 percent in the oral environment due to the moisture and temperature changes. The wear resistance of the dental composites is also significantly affected by moisture and temperature changes in the oral conditions. It is observed that thermocycling has no significant effect on the hardness, plasticity index and wear resistance of the nanohybrid composite and the nanocomposite dental materials.
机译:研究了热循环程序和材料色泽对树脂基牙科修复材料的机械性能和耐磨性的影响。确定常规复合材料,纳米杂化复合材料和纳米填充牙科复合材料的弹性模量,硬度,塑性指数和耐磨性。从每种材料制备盘状样品,以研究热循环程序对不同类型的牙齿修复材料的机械性能和耐磨性的影响。在这方面,一组样品被热循环,另一组样品被存储在环境条件下。然后对样品进行纳米压痕和纳米划痕测试,以测量其机械性能和耐磨性。结果表明,与其他两种阴影相比,牙科纳米复合材料的A1E阴影具有更高的弹性模量和硬度值。根据实验结果,纳米复合材料的AlE阴影的弹性模量和硬度的平均值分别为13.71GPa和1.08GPa。由于水分和温度的变化,在口腔环境中,常规牙科复合材料的弹性模量和硬度增加了约30%。牙科复合材料的耐磨性还受到口腔条件中水分和温度变化的显着影响。观察到热循环对纳米杂化复合物和纳米复合牙科材料的硬度,可塑性指数和耐磨性没有显着影响。

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