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Modeling of the viscoelastic behavior of dental light-activated resin composites during curing

机译:牙科光活化树脂复合材料固化过程中粘弹性行为的建模

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Objective. Three models consisting of springs and dashpots were investigated to describe the viscoelastic behavior of a commercial light-activated restorative composite during curing. Methods. Stress-strain data on Z100 were recorded by means of a dynamic test method performed on a universal testing machine. The model was tested by matching its response to experimental data and the material parameters, E (Young's modulus) and 17 (viscosity), associated with the model were calculated. Results. The universal testing machine generated reliable stress-strain data on the fast curing, light-activated resin composite during curing. The high polymerization rate of Z100 had a negative effect on the viscous flow capability of the material. A predictive model of the viscoelastic behavior of Z100 during curing was carried out, using the Maxwell model for the initial 3 min in the curing process and the Kelvin model for the remainder of the process. Significance. Dental researchers analyzing shrinkage stress problems by mathematical modeling can obtain a good quantitative estimate of the shrinkage stress development of Z100 before the restoration is actually made.
机译:目的。研究了由弹簧和减震器组成的三个模型,以描述固化过程中商用光活化修复性复合材料的粘弹性行为。方法。 Z100上的应力应变数据是通过在通用测试机上执行的动态测试方法记录的。通过匹配模型对实验数据的响应来测试模型,并计算与模型关联的材料参数E(杨氏模量)和17(粘度)。结果。万能试验机在固化过程中生成了关于快速固化,光活化树脂复合材料的可靠应力-应变数据。 Z100的高聚合速率对材料的粘滞流动能力有负面影响。对Z100固化过程中的粘弹性行为进行了预测模型,在固化过程的最初3分钟使用Maxwell模型,在其余过程中使用Kelvin模型。意义。牙科研究人员通过数学建模分析收缩应力问题,可以在实际进行修复之前获得Z100收缩应力发展的良好定量估计。

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