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Influence of the Power Density on the Kinetics of Photopolymerization and Properties of Dental Composites

机译:功率密度对光聚合动力学和牙科复合材料性能的影响

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Polymer shrinkage during photopolymerization of dimethacrylate monomers, used for many years to produce materials for dental restoration, can induce either the formation of tooth-restoration gaps or the production of residual stress depending on the quality of adhesion between tooth and dental composites. In this work, the effect of the power density, used to photopolymerize three commercial dental composites (Fill Magic, Supra Fill, and Z100), on the kinetics of the reaction was investigated to determine processing conditions in which the generation of residual stress would be reduced by allowing polymer chains and macromers to flow before freezing during gelation of the polymer network. The kinetics of photopolymerization of the dental composites was monitored by real-time infrared (FTIR) spectroscopy. Polymer shrinkage and mechanical properties were also investigated by using, respectively, density and microhardness measurements. Results showed that the final conversion (after 200 s), volumetric shrinkage, and microhardness values were not affected by different power densities, mainly because the amount of energy used during photopolymerization was set constant by using different irradiation times. Lower power densities were able to reduce the maximum polymerization rate and delay the formation of a rigid network. Conversion before the formation of the rigid network was also enhanced by using a lower power density. Considering that too premature gelation can lead to residual stress during shrinkage, the results of this work indicated that the use of a lower power density can be effective in terms of delaying the onset of the formation of a rigid network, providing then conditions for macromolecules to flow and relieve stress during shrinkage.
机译:二甲基丙烯酸酯单体的光聚合过程中的聚合物收缩已被用于生产牙齿修复材料多年,取决于牙齿与牙齿复合材料之间的粘合质量,该聚合物收缩会导致牙齿修复间隙的形成或残余应力的产生。在这项工作中,研究了功率密度(用于使三种市售牙科复合材料(Fill Magic,Supra Fill和Z100)光聚合)对反应动力学的影响,以确定将产生残余应力的加工条件。通过使聚合物网络胶凝过程中的聚合物链和大分子单体在冻结前流动而降低了分子量。通过实时红外(FTIR)光谱监测牙科复合材料的光聚合动力学。还分别通过使用密度和显微硬度测量来研究聚合物的收缩率和机械性能。结果表明,最终转化率(200 s后),体积收缩率和显微硬度值不受不同功率密度的影响,这主要是因为光聚合过程中使用的能量通过设置不同的照射时间而保持恒定。较低的功率密度能够降低最大聚合速率并延迟刚性网络的形成。通过使用较低的功率密度,还可以增强刚性网络形成之前的转换。考虑到过早的凝胶化会在收缩过程中导致残余应力,这项工作的结果表明,使用较低的功率密度可以有效地延迟刚性网络的形成,从而为大分子提供条件。流动并减轻收缩过程中的应力。

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