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Comparative evaluation of mechanical characteristics of nanofiller containing resin composites.

机译:含纳米填料的树脂复合材料力学性能的比较评估。

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PURPOSE: To determine basic mechanical characteristics of six commercially available nanofiller containing resin composites compared to a microhybrid and a microfilled reference material. The tested hypothesis was that there are no differences in mechanical properties between the materials. METHODS: Durafill VS (DUR) and Filtek Z250 (Z250) were used as microfilled and microhybrid references. The nanofiller containing products were: Filtek Supreme XT (FIL), Grandio (GRA), Kalore (KAL), MI Flow (MIF), Tetric EvoCeram (TET), and Venus Diamond (VED). The following material characteristics were determined after 24 hours water storage (n = 6): Flexural strength and modulus (FM), yield stress (0.02%), tensile strength and modulus (TM), diametral tensile strength, Knoop hardness (KHN), and fracture toughness (KIC). RESULTS: The microfilled composite DUR consistently showed the lowest values for each property investigated. The group of nanofiller containing products could be subdivided into two groups: the nanohybrid products GRA and VED and the nanofilled FIL with higher values, on the one hand, and the flowable MIF, and the prepolymer containing composites KAL and TET, on the other. The mechanical performance of the microhybrid reference material Z250 was overall slightly better or in line with the nanohybrid and nanofilled materials. Stringent linear relationships were found between KHN and the moduli FM and TM, respectively (r > 0.95). Linear relations between the other materialvalues investigated were moderate to high.
机译:目的:确定与微混合和微填充参考材料相比,六种市售含纳米填料的树脂复合材料的基本机械特性。检验的假设是材料之间的机械性能没有差异。方法:Durafill VS(DUR)和Filtek Z250(Z250)用作微灌装和微混合参考。包含纳米填料的产品有:Filtek Supreme XT(FIL),Grandio(GRA),Kalore(KAL),MI Flow(MIF),Tetric EvoCeram(TET)和Venus Diamond(VED)。储水24小时(n = 6)后,确定以下材料特性:弯曲强度和模量(FM),屈服应力(0.02%),抗张强度和模量(TM),径向抗张强度,努氏硬度(KHN),和断裂韧性(KIC)。结果:微填充复合材料DUR始终显示出所研究每种性能的最低值。含纳米填料的产品可分为两类:一方面是具有较高价值的纳米混合产品GRA和VED,以及具有较高流动性的MIF的具有纳米填充的FIL,另一方面是具有复合材料KAL和TET的预聚物。微杂化参考材料Z250的机械性能总体上略好或与纳米杂化和纳米填充材料一致。在KHN与模FM和TM之间分别发现了严格的线性关系(r> 0.95)。研究的其他材料值之间的线性关系为中等到较高。

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