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Effect of Type and Concentration of Nanoclay on the Mechanical and Physicochemical Properties of Bis-GMA/TTEGDMA Dental Resins

机译:纳米粘土的种类和浓度对Bis-GMA / TTEGDMA牙科树脂力学和物理化学性能的影响

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摘要

Bis-GMA/TTEGDMA-based resin composites were prepared with two different types of nanoclays: an organically modified laminar clay (Cloisite 30B, montmorillonite, MMT) and a microfibrous clay (palygorskite, PLG). Their physicochemical and mechanical properties were then determined. Both MMT and PLG nanoclays were added into monomer mixture (1:1 ratio) at different loading levels (0, 2, 4, 6, 8 and 10 wt.%), and the resulting composites were characterized by scanning electron microscopy (SEM), thermogravimetric analysis (TGA), dynamic mechanical analysis (DMA) and mechanical testing (bending and compressive properties). Thermal properties, depth of cure and water absorption were not greatly affected by the type of nanoclay, while the mechanical properties of dental resin composites depended on both the variety and concentration of nanoclay. In this regard, composites containing MMT displayed higher mechanical strength (both flexural and compression) than those resins prepared with PLG due to a poor nanoclay dispersion as revealed by SEM. Solubility of the composites was dependent not only on nanoclay-type but also the mineral concentration. Dental composites fulfilled the minimum depth cure and solubility criteria set by the ISO 4049 standard. In contrast, the minimum bending strength (50 MPa) established by the international standard was only satisfied by the dental resins containing MMT. Based on these results, composites containing either MMT or PLG (at low filler contents) are potentially suitable for use in dental restorative resins, although those prepared with MMT displayed better results.
机译:使用两种不同类型的纳米粘土制备了基于Bis-GMA / TTEGDMA的树脂复合材料:有机改性的层状粘土(Cloisite 30B,蒙脱土,MMT)和微纤维粘土(坡缕石,PLG)。然后确定它们的理化和机械性能。将MMT和PLG纳米粘土均以不同的负载量(0、2、4、6、8和10 wt。%)添加到单体混合物中(1:1比例),并通过扫描电子显微镜(SEM)对所得复合材料进行表征,热重分析(TGA),动态力学分析(DMA)和机械测试(弯曲和压缩性能)。纳米粘土的类型对热性能,固化深度和吸水率影响不大,而牙科树脂复合材料的机械性能取决于纳米粘土的种类和浓度。在这方面,由于纳米粘土分散性差(如SEM所示),含MMT的复合材料比用PLG制备的树脂显示出更高的机械强度(挠曲性和压缩性)。复合材料的溶解度不仅取决于纳米粘土类型,还取决于矿物质浓度。牙科复合材料符合ISO 4049标准设定的最低深度固化和溶解度标准。相反,仅通过含有MMT的牙科用树脂满足国际标准规定的最小弯曲强度(50MPa)。基于这些结果,尽管使用MMT制备的复合材料显示出更好的结果,但包含MMT或PLG(低填料含量)的复合材料可能适合用于牙科修复树脂。

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