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Influence of ionizing radiation on the mechanical properties of BisGMA/TEGDMA based experimental resin

机译:电离辐射对基于BisGMA / TEGDMA的实验树脂的机械性能的影响

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Dental restorative composites are activated by visible light and the polymerization process, known as direct technique, is initiated by absorbing light in a specific wavelength range (450-500 nm). However this technique presented some disadvantages. If light is not inserted correctly, layers uncured can cause countless damage to restoration, especially with regard to mechanical properties. A clinical alternative used to reduce the shortcomings of direct application is the use of composite resins for indirect application. These composites are adaptations of resins prepared for direct use, with differences mainly in the healing process. Besides the traditional photoactivation, indirect application composites may be submitted to particular curing conditions, such as a slow curing rate, heating, vacuum, and inert-gas pressure leading to an oxygen-free environment. However few studies have been conducted on the process of post-curing by ionizing radiation at low doses. On this sense the purpose of this study was to evaluate possible interactions of ionizing radiation in the post-curing process of the experimental composites based on BisGMA/TEGDMA filled with silica Aerosil OX-50 silanized. Characterization of the experimental composites was performed by thermogravimetry analysis, infrared spectroscopy, elastic modulus and flexural strength. Statistical analysis of results was calculated by one-way ANOVA/Tukey's test. Cross-linking of the polymeric matrix caused by ionizing radiation, influenced the thermal stability of irradiated specimens. FTIR analysis showed that the ionizing radiation induced a post-cure reaction in the specimens. The irradiation dose influenced directly the mechanical properties that showed a strong positive correlation between flexural strength and irradiation and between modulus strength and irradiation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:牙齿修复性复合材料被可见光激活,聚合过程(称为直接技术)通过吸收特定波长范围(450-500 nm)的光而引发。但是,该技术存在一些缺点。如果没有正确插入光,未固化的层可能会对修复造成无数损坏,特别是在机械性能方面。用于减少直接施用的缺点的临床替代方法是将复合树脂用于间接施用。这些复合材料是为直接使用而准备的树脂的改型,主要区别在于修复过程。除了传统的光活化以外,间接施加的复合材料还可能会经受特殊的固化条件,例如缓慢的固化速度,加热,真空和惰性气体压力,从而导致无氧环境。然而,关于通过低剂量电离辐射进行后固化过程的研究很少。从这个意义上讲,本研究的目的是评估基于BisGMA / TEGDMA的实验复合材料的后固化过程中电离辐射的可能相互作用,该复合材料填充了硅烷化的Aerosil OX-50二氧化硅。通过热重分析,红外光谱,弹性模量和弯曲强度对实验复合材料进行表征。通过单向方差分析/ Tukey检验计算结果的统计分析。电离辐射引起的聚合物基体的交联影响了被辐照样品的热稳定性。 FTIR分析表明,电离辐射在样品中引起了后固化反应。辐照剂量直接影响机械性能,该机械性能在弯曲强度和辐照之间以及模量强度和辐照之间显示出很强的正相关性。 (C)2015 Elsevier Ltd.保留所有权利。

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