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Physical and mechanical properties of flowable composite incorporated with nanohybrid silica synthesised from rice husk

机译:稻壳合成纳米杂化二氧化硅的可流动复合材料的物理机械性能

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This study aims to fabricate experimental flowable composites (FCs), by incorporating spherical nanohybrid silica as the filler and subsequently to evaluate their physical and mechanical properties in comparison to a commercial counterpart (Revolution Formula 2). The nanohybrid silica used in this study was synthesised from rice husk using sol–gel method and the dilution effect of Bis-GMA on the physical and mechanical properties of the experimental FCs was also investigated. Three experimental FCs (EF50B, EF45B and EF40B) were prepared by diluting the base monomer namely Bis-GMA to obtain the desired flowability. Surface roughness, surface morphology, Vickers hardness, compressive strength and compressive modulus of each group were determined. The data were statistically analysed using one-way ANOVA followed by Scheffe post hoc test. The surface roughness and Vickers hardness of the experimental FCs were comparable to Revolution Formula 2. Even though experimental FCs were inferior in compressive strength compared to Revolution Formula 2, they had passed the minimum requirement for compressive strength. The compressive modulus of experimental FCs was higher than Revolution Formula 2, but no statistically significant difference was detected except for EF50B. The dilution of the base monomer among the experimental FCs had no significant effect on their physical and mechanical strength. In conclusion, experimental FCs from rice husk had adequate physical and mechanical strength in comparison to the commercial counterpart rendering them a potential sustainable green-based product in dentistry.
机译:这项研究的目的是通过掺入球形纳米杂化二氧化硅作为填料来制造实验性可流动复合材料(FC),并随后与商用同类产品(革命配方2)相比,评估其物理和机械性能。本研究中使用的纳米杂化二氧化硅是使用溶胶-凝胶法从稻壳中合成的,并且还研究了Bis-GMA对实验FC的物理和机械性能的稀释作用。通过稀释基础单体即Bis-GMA来制备三种实验性FC(EF50B,EF45B和EF40B),以获得所需的流动性。测定各组的表面粗糙度,表面形态,维氏硬度,抗压强度和压缩模量。使用单向方差分析,随后进行Scheffe事后检验对数据进行统计分析。实验FC的表面粗糙度和维氏硬度与Revolution Formula 2相当。尽管实验FC的抗压强度比Revolution Formula 2差,但它们已经达到了抗压强度的最低要求。实验FC的压缩模量高于Revolution Formula 2,但除EF50B外,未检测到统计学上的显着差异。在实验FC中稀释基础单体对其物理和机械强度没有明显影响。总之,与商业同行相比,稻壳中的实验性FC具有足够的物理和机械强度,使其成为牙科领域潜在的可持续绿色产品。

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