首页> 外文期刊>Journal of Polymer Research >Filler-immobilization assisted designing of hydroxyapatite and silica/hydroxyapatite filled acrylate based dental restorative composites: Comparative evaluation of quasi-static and dynamic mechanical properties
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Filler-immobilization assisted designing of hydroxyapatite and silica/hydroxyapatite filled acrylate based dental restorative composites: Comparative evaluation of quasi-static and dynamic mechanical properties

机译:填充固定化辅助设计的羟基磷灰石和二氧化硅/羟基磷灰石填充的丙烯酸酯基牙科修复复合材料:准静态和动态力学性能的比较评估

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摘要

The comparative effect of filler combinations on the quasi-static and thermo-mechanical properties of light cured acrylate based restorative composites is addressed in the study. Two series of acrylate based restorative composites filled with hydroxyapatite (Hap) and silica/Hap combination were prepared. FTIR spectroscopy showed the filler-assisted functional interference with the chemical structure of the resin, whereas SEM-EDX revealed the state of micro-dispersion/ distribution morphology of the filled composites. The silica/Hap combination filled (micro-hybrid) composites with 30 wt.-% filler showed highest compressive strength (CS) and composites with 20 wt.-% filler showed highest diametral tensile strength (DTS) as well as flexural strength (FS). Dynamic mechanical properties revealed reinforcement effectiveness correlated to extent of filler immobilization effects estimated from Kerner equation. Our study conceptually establishes the possibility of manipulating the mechanical and thermomechanical strength requirements, by catering to the extent of filler induced bulk hardening contributions, as characterized by immobilized volume fraction of the polymer chains. It was imperatively deduced that at very high amount of overall filler content (e.g. > 50 wt.-%) the reinforcement effectiveness is filler-controlled whereas the same extent of effectiveness may be obtained by manipulating the filler induced immobilization effects (e.g. < 20 wt. - %).
机译:研究中讨论了填料组合对光固化丙烯酸酯基修复性复合材料的准静态和热机械性能的比较影响。制备了两个系列的填充有羟基磷灰石(Hap)和二氧化硅/ Hap组合物的丙烯酸酯基修复性复合材料。 FTIR光谱显示填料辅助功能干扰了树脂的化学结构,而SEM-EDX则显示了填充复合材料的微分散/分布形态。填充量为30 wt .-%的二氧化硅/哈普组合填充的(微混合)复合材料显示出最高的压缩强度(CS),填充物为20 wt .-%的复合材料显示出最高的径向拉伸强度(DTS)和弯曲强度(FS) )。动态力学性能表明增强效果与根据克纳方程估算的填料固定化效果程度有关。我们的研究从概念上确定了通过满足填充剂引起的本体硬化贡献(以聚合物链的固定体积分数为特征)来控制机械和热机械强度要求的可能性。必须推断,在非常高的总填料含量(例如> 50 wt .-%)下,增强效果是由填料控制的,而通过控制填料引起的固定效果(例如<20 wt% 。-%)。

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