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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of short glass fibers on the polymerization shrinkage stress of dental composite
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Effect of short glass fibers on the polymerization shrinkage stress of dental composite

机译:短玻璃纤维对牙科复合材料聚合收缩应力的影响

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摘要

Abstract This study examines contraction stresses of seven short fiber reinforced composites (sFRC) exhibiting different volume loads and aspect ratios (AR)* of fibres. The shift towards a greater utilization of posterior resin composites in dentistry has seen increased interest in the use of randomly oriented short glass fibers in these restorative materials. While the effect of these fibers on modulus, strength, and toughness has been studied, very little information exists on their effect on polymerization shrinkage and even less on shrinkage stress. S2‐glass fibers with an average AR of 68 were used to form three experimental groups with 5%, 10%, and 20% volume loads. Commercial sFRC with ARs of 20 and 100 were also tested. A tensilometer set up was used with moderate compliance, 5.4 J/cm 2 irradiance, and a C‐factor of 2.75. Data was statistically analyzed using ANOVA followed by post hoc Tukey's test. The addition of 5% of the experimental fiber did not significantly increase stress while the 10% and 20% groups resulted in 36.3% and 39.1% higher stress values, respectively, compared to the non‐fiber control group ( p ??0.05). Of all the sFRC groups, the very low AR material exhibited the lowest stress [0.682 MPa ( p ?=?0.001)] while another commercial material with higher AR fibers exhibited the highest overall value [1.822 MPa ( p ??0.001)] when compared to the control group. The results indicate that both short fiber volume and AR are important variables to consider with regards to setting stresses of sFRC. ? 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 1930–1937, 2017.
机译:摘要本研究检查了表现出纤维的不同体积载荷和纵横比(AR)*的七种短纤维增强复合材料(SFRC)的收缩应力。朝向牙科后树脂复合材料的更大利用的转变已经看出,在这些恢复材料中使用随机取向的短玻璃纤维的兴趣增加。虽然已经研究了这些纤维对模量,强度和韧性的影响,但对它们对聚合收缩的影响非常少的信息甚至少于收缩应力。平均AR为68的S2-玻璃纤维用于形成具有5%,10%和20%体积载荷的三个实验组。还测试了20和100的商业SFRC。设置的张力计设置为适度符合性,5.4 j / cm 2辐照度和2.75的C因子。使用ANOVA进行统计分析数据,然后进行HOC Tukey的测试。加入5%的实验纤维没有显着增加应力,而10%和20%的基团分别与非纤维对照组相比,分别为36.3%和39.1%的应力值(p≤0.05 )。在所有SFRC基团中,非常低的AR材料表现出最低应力[0.682MPa(P?= 0.001)],而具有较高AR纤维的另一种商业材料表现出最高总值[1.822MPa(p≤≤0.001) ]与对照组相比。结果表明,短纤维体积和AR都是在确定SFRC的应力方面考虑的重要变量。还2016 Wiley期刊,INC.J生物保解率A型B:苹果生物摩特,105B:1930-1937,2017。

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