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首页> 外文期刊>Dental Materials Journal >Polymerization and shrinkage stress formation of experimental resin composites doped with nano- vs. micron-sized bioactive glasses
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Polymerization and shrinkage stress formation of experimental resin composites doped with nano- vs. micron-sized bioactive glasses

机译:用纳米 - 掺杂掺杂的实验树脂复合材料的聚合和收缩应力形成。微米尺寸的生物活性玻璃

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This study investigated the effect of adding bioactive glass 45S5 (BG) of different particle sizes to dental composite on resin polymerization and shrinkage stress formation. Commercial flowable composite was mixed with either 15 wt% BG fillers (nanometric, micrometric, or hybrid BG) or inert barium glass. Real-time linear polymerization shrinkage and shrinkage stress were recorded, and the degree of conversion was measured using FTIR spectroscopy. The commercial (unmodified) composite developed significantly higher linear shrinkage and shrinkage stress than the groups with 15 wt% added inert or BG fillers. After adding inert barium glass, the composite showed significantly higher linear shrinkage than when micrometric BG was added. The addition of bioactive or inert glass fillers did not affect the degree of conversion. Shrinkage stress can be reduced by adding inert or bioactive fillers (nano- and/or microparticulate BG) without affecting monomer conversion.
机译:本研究研究了将不同粒度的生物活性玻璃45s5(Bg)添加到树脂聚合和收缩应力形成的牙科复合物中的作用。 将商用的可流动复合材料与15wt%Bg填料(纳米,微米或杂种Bg)或惰性钡玻璃混合。 记录实时线性聚合收缩和收缩应力,使用FTIR光谱测量转化程度。 商业(未修饰的)复合材料显着提高了比具有15wt%的惰性或Bg填料的基团的线性收缩和收缩应力。 在加入惰性钡玻璃后,复合材料显示出比加入微米BG的线性收缩率显着更高。 添加生物活性或惰性玻璃填料不会影响转化程度。 通过在不影响单体转化的情况下加入惰性或生物活性填料(纳米和/或微粒BG),可以减少收缩应力。

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