School of Dentistry, University Federal of Pará, Rua Augusto Corrêa 01, 66075-110 Belém, PA, Brazil.
School of Dentistry, University of Santo Amaro, Rua Professor Enéas de Siqueira Neto 340, 04829-300 São Paulo, SP, Brazil.
Biomed Res Int. 2018 Mar 15;2018:9845427. doi: 10.1155/2018/9845427. eCollection 2018.
This study evaluated the influence of formulation and thermal treatment on the degree of conversion, fracture toughness, flexural strength, and elastic modulus of experimental composites. Six composites were analyzed at BisGMA : TEGDMA molar ratios of 1 : 1 and 7 : 3 with filler at 30, 50, and 70 wt%. The degree of conversion was analyzed by Fourier transform infrared spectroscopy, fracture toughness was measured using the single-edge notched beam, and flexural strength and elastic modulus were measured with the 3-point bend test. For all tests, one-half of the specimens received thermal treatment at 170°C for 10 min. Data were analyzed by the Kruskal-Wallis or ANOVA/Tukey's test ( = 5%). The 1 : 1 BisGMA : TEGDMA ratio showed higher properties than the 7 : 3 ratio. Although the material with 70% filler had a conversion lower than the one with 50%, it showed higher mechanical properties. The thermal treatment improved all properties in all materials. Therefore, the use of an equimolar ratio of BisGMA : TEGDMA can be paired with 70 wt% filler to design dental composites that possess increased advantageous physical and chemical properties. Furthermore, the simple and low-cost method of thermal treatment proposed for use in clinical dentistry has been shown to effectively improve the properties of all evaluated materials.
本研究评估了配方和热处理对实验性复合材料转化率、断裂韧性、弯曲强度和弹性模量的影响。分析了 BisGMA:TEGDMA 摩尔比为 1:1 和 7:3 且填料分别为 30、50 和 70wt%的六种复合材料。通过傅里叶变换红外光谱分析转化率,通过单边缺口梁法测量断裂韧性,通过三点弯曲试验测量弯曲强度和弹性模量。对于所有测试,一半的样本在 170°C 下接受 10 分钟的热处理。通过 Kruskal-Wallis 或 ANOVA/Tukey's 检验( = 5%)分析数据。1:1 BisGMA:TEGDMA 比例的性能高于 7:3 比例。尽管具有 70%填料的材料的转化率低于具有 50%填料的材料,但它表现出更高的机械性能。热处理提高了所有材料的所有性能。因此,使用 BisGMA:TEGDMA 的等摩尔比可以与 70wt%的填料结合,设计具有增加的有利物理和化学性能的牙科复合材料。此外,用于临床牙科的简单且低成本的热处理方法已被证明可有效改善所有评估材料的性能。