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首页> 外文期刊>Iranian polymer journal >Role of sonication time on mechanical properties of graphene oxide/ epoxy nanocomposites under quasi-static loading conditions
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Role of sonication time on mechanical properties of graphene oxide/ epoxy nanocomposites under quasi-static loading conditions

机译:准静态加载条件下超声处理时间对氧化石墨烯/环氧纳米复合材料力学性能的影响

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摘要

Ultrasonication is an effective method for dispersing nanoparticles in fabrication of thermoset nanocomposites. Among the various parameters of sonication, the sonication time is the most important one which can directly affect the dispersion of nanoparticles in the matrix. In this study, the effect of sonication time on mechanical properties of the graphene oxide/epoxy nanocomposites is investigated. The nanocomposites were fabricated for 0.05, 0.1, 0.3, 0.5 and 0.7 wt% of graphene oxide (GO). Sonication times of 30-45-60, 40-65-90, 90-120-150, 150-180-210, 210-240-270 min were considered for 0.05, 0.1, 0.3, 0.5 and 0.7 wt% of GO, respectively. Then, the Vickers micro-hardness and compressive response of the samples were examined. The experimental results indicated that the sonication time had considerable effect on the mechanical response of the nanocomposites. For instance, the maximum improvement in yield strength and elastic modulus were 7.55%, 9.83% and were obtained for 0.7 wt% of GO under 270 min of sonication time. The maximum improvement in hardness was 6.83% and was obtained for the sonication time of 120 min for 0.3 wt% of GO. Moreover, a new model was introduced which correlated Vickers micro-hardness of nanocomposites to the compressive properties and the nanofiller weight percentage. The energy transferred during the ultrasonication to the mixture was evaluated and a novel curve was presented for selection of ultrasonication parameters. SEM technique was also used to examine the effect of sonication time on the quality of the nanoparticle dispersion.
机译:超声是在热固性纳米复合材料制造中分散纳米颗粒的有效方法。在超声处理的各种参数中,超声处理时间是最重要的参数,它可以直接影响纳米颗粒在基质中的分散。在这项研究中,研究了超声处理时间对氧化石墨烯/环氧纳米复合材料力学性能的影响。制备了0.05、0.1、0.3、0.5和0.7重量%的氧化石墨烯(GO)的纳米复合材料。对于0.05、0.1、0.3、0.5和0.7 wt%的GO,考虑30-45-60、40-65-90、90-120-150、150-180-210、210-240-270分钟的超声处理时间,分别。然后,检查样品的维氏显微硬度和压缩响应。实验结果表明,超声处理时间对纳米复合材料的机械响应有很大影响。例如,屈服强度和弹性模量的最大改善为7.55%,9.83%,并且在270分钟的超声处理时间下,以0.7 wt%的GO获得了最大的改善。硬度的最大提高为6.83%,并且在120分钟的超声处理时间内获得了0.3 wt%的GO。此外,引入了新的模型,该模型将纳米复合材料的维氏显微硬度与压缩性能和纳米填料的重量百分比相关联。评估了超声处理过程中转移到混合物中的能量,并提出了一条用于选择超声处理参数的新曲线。 SEM技术也用于检查超声处理时间对纳米颗粒分散体质量的影响。

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