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Influence of Silane Coupling Agent and Nano-Filler on the Properties of Dental Resin Composite Cements

机译:硅烷偶联剂和纳米填料对牙科树脂复合水泥性能的影响

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Dental resin composite cements were prepared with simply mixing method of Part A and Part B. The material components in Part A were composed of Bis-GMA, TEDGMA, 4-META, SiO_2 nanopowders and BPO. The components in Part B were Bis-GMA, TEDGMA, 4-META, SiO_2 nanopowders and 2,2'-(4-methylphenylimino) diethanol. Before using SiO_2 nano-filler in the formulation of Part A and Part B, it had to be coated with methacryloxypropyltrimethoxysilane (MPS) which served as a silane coupling agent. Therefore, the optimum amount of MPS (1, 1.2, 1.5 and 2%) and SiO_2 nano-filler (20, 27.27 and 33.33 wt%) used to fabricate the composites were investigated. The homogeneous mixture of Part A and Part B at mass fraction of 1:1 was formed into the bar shape with dimension of 25 mm x 2.0 mm x 2.0 mm and then cured under light source for 20 s. Then flexural strength was measured using the universal testing machine. Depth of cure was tested using mould which was perforated in cylindrical shape of 6 mm in depth and of 4 mm in diameter. The result showed that composite with 27.27 wt% of salinized SiO_2 nanopowders by 1.5% of MPS showed the highest flexural strength of 65 MPa and depth of cure of more than 5 mm which were accepted according to ISO 4049. This study could be concluded that using a proper amount of MPS to silanize SiO_2 nanopowders and using an optimum amount of SiO_2 nanopowders significantly improved the flexural strength of dental resin composite cements.
机译:用部分A和第B部分的简单混合方法制备牙科树脂复合水泥。部分A中的材料组分由双-GMA,Tedgma,4-Meta,SiO_2纳米粉和BPO组成。 B部分中的组分是双-GMA,Tedgma,4-Meta,SiO_2纳米粉醇和2,2' - (4-甲基苯基咪唑亚基氨基)二乙醇。在使用SiO_2纳米填料的配方A和B部分中,必须用甲基丙烯酰氧基丙基三甲氧基硅烷(MPS)涂覆,其用作硅烷偶联剂。因此,研究了用于制造复合材料的MPS(1,1.2,1.5和2%)和SiO_2纳米填料(20,27.27和33.33wt%)的最佳量。将A和B部分的均匀混合物在1:1的质量分数中形成为杆形,尺寸为25mm×2.0mm×2.0mm,然后在光源下固化20 s。然后使用通用试验机测量弯曲强度。使用模具测试固化深度,该模具在深度为6mm的圆柱形状和直径为4mm的圆柱形形状中穿孔。结果表明,用27.27wt%的盐化的SiO_2纳米粉粉的复合材料均为1.5%的MPS显示出65MPa的最高弯曲强度,并根据ISO 4049接受超过5mm的固化深度。该研究可以得出结论,可以得出结论适量的MPS至硅烷化SiO_2纳米粉末和使用最佳SiO_2纳米粉末的最佳量显着提高了牙科树脂复合水泥的抗弯强度。

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