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Polymerization shrinkage behaviour of resin composites functionalized with unsilanized bioactive glass fillers

机译:用无铅锌生物活性玻璃填料官能化树脂复合材料的聚合收缩行为

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Previous work has shown that partial replacement of reinforcing fillers with unsilanized silica particles can diminish polymerization shrinkage stress of dental resin composites. The aim of the present study was to investigate whether such an effect can be attained by using unsilanized bioactive glass (BG). Incorporating BG fillers into resin composites is interesting due to their potential for exerting caries-preventive effects. Experimental light-curable composites with a total filler load of 77?wt% were prepared. Reinforcing fillers were partially replaced with 0–60?wt% of BG 45S5 and an experimental low-sodium fluoride-containing BG. The following properties were investigated: linear shrinkage, degree of conversion, shrinkage stress, maximum shrinkage stress rate, and time to achieve maximum shrinkage stress rate. The diminishing effect of BG 45S5 on shrinkage stress was mediated by a decrease in degree of conversion caused by this BG type. In contrast, as the degree of conversion remained unaffected by the experimental BG, the resulting shrinkage behaviour was governed by the effect of varying amounts of silanized and unsilanized fillers on material’s viscoelastic properties. The replacement of silanized reinforcing fillers with unsilanized BG did not reduce polymerization shrinkage stress unless the reduction was attained indirectly through a diminished degree of conversion.
机译:以前的作品表明,具有不耐药二氧化硅颗粒的增强填料的部分替代可以减少牙科树脂复合材料的聚合收缩应力。本研究的目的是研究是否可以通过使用不泛化的生物活性玻璃(BG)来实现这种效果。将Bg填料掺入树脂复合材料中是有趣的,因为它们的施加龋齿预防效果。制备实验可光固化复合材料,其总填料载荷为77℃。将增强填料部分替换为0-60·wt%的BG 45S5和含有实验性低钠氟化钠的BG。研究了以下性质:线性收缩,转化程度,收缩应力,最大收缩应力率,以及实现最大收缩应力率的时间。 BG 45S5对收缩应力对收缩应力的递减效果通过该BG型引起的转化程度的降低介导。相反,随着通过实验BG不受影响的转化程度,所得的收缩行为是通过改变量的硅烷化和不泛化填料对材料的粘弹性性质的影响来控制的。除非通过减少转化程度间接地实现,否则用不泛化的BG替换硅烷化增强填料的粒化不降低聚合收缩应力。

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