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Investigations in the correlation between Martens hardness and flexural strength of composite resin restorative materials

机译:复合树脂恢复材料的Martens硬度与弯曲强度的相关性研究

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摘要

The purpose of this study is to verify the hypothesis that the hardness and flexural strength of composite resin restorative materials are correlated and similarly affected by accelerated aging. With four different composite resins (Tetric Evo Ceram, Synergy, Filtek Supreme, Quixfil), the effects of aging in distilled water at 37 degrees C or by thermal cycling (5 degrees C/55 degrees C) on Martens hardness and flexural strength were assessed. Flexural strength (n=12) was measured according to ISO 4049 immediately after light-curing and after 75 days of aging. Martens hardness (n=6) was measured in intervals up to 75 days. The results were statistically analyzed with one-way ANOVA, followed by a post hoc Bonferroni test. In all cases, the effect of aging on hardness could not be measured. The effect of aging on flexural strength was also not consistent, although it was found that thermal cycling affected flexural strength more than water storage. Martens hardness and flexural strength of composite resins are not correlated.
机译:本研究的目的是验证复合树脂恢复材料的硬度和抗弯强度相关的假设,并通过加速老化相似地影响。用四种不同的复合树脂(Tetric Evo Ceram,Synergy,Filtek至尊,QuixFil),评估了在37℃或通过热循环(5摄氏度C / 55摄氏度)的蒸馏水中老化的影响(5摄氏度)的硬度和弯曲强度。根据ISO 4049,在清淡后和75天老化后,根据ISO 4049测量弯曲强度(n = 12)。 Martens硬度(n = 6)以65天的间隔测量。结果用单向ANOVA进行统计分析,然后是HOC Bonferroni测试。在所有情况下,无法测量老化对硬度的影响。老化对弯曲强度的影响也不一致,尽管发现热循环受影响的弯曲强度超过储水。 Martens硬度和复合树脂的抗弯强度无关。

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