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Comprehensive properties of a novel fiber reinforced composite with a UEDMA-based resin matrix

机译:带有UEDMA基树脂基质的新型纤维增强复合材料的综合性能

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The traditional fiber reinforced composite (FRC) contains bisphenol A glycidyl methacrylate (bis-GMA) in the resin matrix, which is thought to have some disadvantages. This research aimed at replacing bis-GMA with another monomer-urethane dimethacrylate (UEDMA), with the desired properties for dental use still retained. Four groups were prepared with light-curing (n = 30), one Control group with a bis-GMA-based resin matrix and three experimental groups with UEDMA-based matrices (Exper 1, Exper 2 and Exper 3 with a varying UEDMA weight percentage). Specimens were stored in dry conditions for 24 h or in deionized water for 1, 3, 6 or 12 months prior to the tests. Water sorption (n = 6), Vicker's hardness (n = 6) and flexural properties (n = 6) after each storage time were investigated. Scanning electron microscopy (SEM) images were taken at the fracture sites after 3-point bending. All the results were statistically analyzed (α = 0.05). The Exper 1 group exhibited the lowest weight increase after water storage among the experimental groups. As for dry conditions, 1- and 6-month storage, different resin matrix compositions made no significant difference to hardness, while for 3- and 12-month storage, "Control" possessed the highest hardness. The Control group's strength and modulus, Exper 1 and Exper 2's modulus were stable during water storage. Compared to other experimental groups, Exper 1 had the highest strength and modulus values with most of the storage times. SEM images showed relatively good adhesion between the fiber and the matrix. With all the tested properties considered, the Exper 1 group had superior performance among all the three experimental groups.
机译:传统的纤维增强复合材料(FRC)在树脂基体中包含双酚A甲基丙烯酸缩水甘油酯(bis-GMA),这被认为具有一些缺点。这项研究旨在用另一种单体-氨基甲酸酯二甲基丙烯酸酯(UEDMA)代替bis-GMA,同时仍保留牙科用的所需性能。使用光固化(n = 30)制备四组,对照组使用基于bis-GMA的树脂基质,三组使用UEDMA基质的实验组(实验1,实验2和实验3,其中UEDMA的重量百分比不同) )。在测试之前,将样品在干燥条件下保存24小时或在去离子水中保存1、3、6或12个月。研究了每个储存时间后的吸水率(n = 6),维氏硬度(n = 6)和弯曲特性(n = 6)。三点弯曲后在断裂部位拍摄扫描电子显微镜(SEM)图像。所有结果均经过统计学分析(α= 0.05)。实验组中,Exper 1组在储水后表现出最低的重量增加。对于干燥条件,储存1个月和6个月,不同的树脂基质组成对硬度没有显着影响,而对于3个月和12个月的储存,“对照”具有最高的硬度。对照组的强度和模量,Exper 1和Exper 2的模量在储水期间稳定。与其他实验组相比,Exper 1在大多数存储时间下具有最高的强度和模量值。 SEM图像显示了纤维与基质之间的相对良好的粘附性。考虑到所有测试的性能,Exper 1组在所有三个实验组中均具有出色的性能。

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