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How filler properties, filler fraction, sample thickness and light source affect light attenuation in particulate filled resin composites

机译:填料性能,填料分数,样品厚度和光源如何影响颗粒状填充树脂复合材料的光衰减

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Objective. It was hypothesized that by standardizing variables such as light sources, filler types and filler surface treatment, it should be possible to use Beer-Lambert's law to predict light absorption in visible light-cured dental composites. Methods. Mixture of 50 wt% bisGAAA and 50 wt% TEGDAAA to which a photo-initiator (0.35 wt% champhorquinone) and a co-initiator (0.7 wt% of dimethylaminoethyl-methacrylate) was prepared. Three different filler types (HBB, SBB and KU) were added to that mixture in eight different volume percentage. Filler particles were either silane surface treated or not. Specimens were made with thicknesses of 1-5 mm. Total number of 1200 specimens were made for this study. Light transmission was obtained for halogen source and laser lights, which made the number of observations 2400. The absorbance values of the different materials were analyzed in Matlab with respect to the differences in filler fraction and sample thickness. Results: The obtained results revealed that of the two light sources, more light was absorbed by the composite when the laser light was used. Among different filler types, the HBB filler absorbed most light and the KU filler the least. There were significant differences (p<0.05) in light absorption between all three filler types. Significance. By comparing the modeled surfaces generated by Matlab for different materials it was possible to determine how different variables such as filler type, filler surface treatment and light source affect light attenuation. The characteristic of incident light affected the light absorbance, meaning that not only the composite's composition needs to be considered in light absorption studies of dental composites.
机译:目的。假设通过标准化变量(例如光源,填充剂类型和填充剂表面处理),应该可以使用比尔-朗伯定律预测可见光固化牙科复合材料中的光吸收。方法。制备了50重量%的bisGAAA和50重量%的TEGDAAA的混合物,在其中形成了光引发剂(0.35重量%的樟脑醌)和共引发剂(0.7重量%的甲基丙烯酸二甲基氨基乙基酯)。将三种不同的填充剂类型(HBB,SBB和KU)以八种不同的体积百分比添加到该混合物中。填料颗粒是否经过硅烷表面处理。标本的厚度为1-5mm。这项研究总共制作了1200个标本。卤素源和激光的透光率达到2400。观察到的不同材料的吸光度值在Matlab中针对填充率和样品厚度的差异进行了分析。结果:获得的结果表明,在两种光源中,当使用激光时,复合材料吸收了更多的光。在不同类型的填料中,HBB填料吸收的光最多,而KU填料的吸收最少。在所有三种填料类型之间,光吸收存在显着差异(p <0.05)。意义。通过比较Matlab为不同材料生成的建模表面,可以确定不同的变量(例如填料类型,填料表面处理和光源)如何影响光衰减。入射光的特性影响吸光度,这意味着在牙科复合材料的光吸收研究中不仅需要考虑复合材料的成分。

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