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Effects of monomer ratios and highly radiopaque fillers on degree of conversion and shrinkage-strain of dental resin composites

机译:单体比例和不透射线的填料对牙科树脂复合材料转化率和收缩率的影响

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Objectives. The degree of conversion (DC) and polymerization shrinkage of resin composites are closely related manifestations of the same process. Ideal dental composite would show an optimal degree of conversion and minimal polymerization shrinkage. These seem to be antagonistic goals, as an increase in monomer conversion leads to a high polymerization shrinkage. This paper aims to determine the effect of opaque mineral fillers and monomer ratios on the DC and the shrinkage-strain of experimental composites based on (BisGMA/TEGDMA) monomers (traditionally used monomers). A relationship between the shrinkage-strain and the degree of conversion values was also investigated. The radiopacity of these experimental composites has been investigated in a previous paper. Methods. Experimental resin composites were prepared by mixing different monomer ratios of (BisGMA/TEGDMA) with Camphoroquinone and dimethyl aminoethyl methacry-late (DMAEMA) as photo-initiator system. Five different radiopacifying filler agents: La_2O_3, BaO, BaSO_4, SrO and ZrO_2 at various volume fractions ranging from 0 to 80 wt.% were added to the mixture. The degree of conversion of experimental composites containing different opaque fillers contents was measured using FTIR/ATR spectroscopy. The shrinkage-strain of specimens, photopolymerized at circa 500mW/cm~2, was measured using the bonded-disk technique at room temperature with respect to time.rnResults. The result revealed that the DC and the shrinkage-strain decrease slightly with the increasing of opaque fillers loadings, but this decrease is not significant. However, these two properties are closely related to the monomer concentration of the organic matrix. The results have also showed a linear correlation between the shrinkage-strain and DC of experimental composites investigated.rnSignificance. The nature and the volume effects of the opaque fillers on the DC and shrinkage of the experimental composites investigated were not significant. However, this study has confirmed the importance of viscosity in the system and shrinkage behavior of dimethacry-late monomers studied. Then we confirmed that direct relationships linked the shrinkage and the DC of filled dental resin composites.
机译:目标。树脂复合材料的转化率(DC)和聚合收缩率是同一过程的密切相关的表现。理想的牙科复合材料将显示出最佳的转化率和最小的聚合收缩率。这些似乎是不利的目标,因为单体转化率的增加导致高聚合收缩率。本文旨在确定不透明矿物填料和单体比例对基于(BisGMA / TEGDMA)单体(传统使用的单体)的实验复合材料的DC和收缩应变的影响。还研究了收缩应变与转化率值之间的关系。这些实验复合材料的射线不透性已在先前的论文中进行了研究。方法。通过将不同比例的(BisGMA / TEGDMA)单体与樟脑醌和甲基丙烯酸甲酯(DMAEMA)作为光引发剂体系混合,制备实验树脂复合材料。将五种不同的不透辐射填充剂:La_2O_3,BaO,BaSO_4,SrO和ZrO_2,以0至80 wt。%的不同体积分数添加到混合物中。使用FTIR / ATR光谱法测量包含不同不透明填料含量的实验复合材料的转化度。在室温下使用粘合圆盘技术测量了在约500mW / cm〜2的光聚合下的样品的收缩应变随时间的变化。结果表明,随着不透明填料填充量的增加,DC和收缩应变略有下降,但这种下降并不明显。但是,这两个性质与有机基质的单体浓度密切相关。结果还表明,所研究的复合材料的收缩应变与DC之间呈线性关系。不透明填料对DC的性质和体积影响以及所研究的复合材料的收缩率均不显着。但是,该研究已经证实了粘度在体系中的重要性以及所研究的二甲基丙烯酸酯单体的收缩行为。然后,我们确认直接的关系将填充的牙科树脂复合材料的收缩率和DC关联起来。

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