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The effect of graphene nanoplatelets on the flexural properties of fiber metal laminates under marine environmental conditions

机译:石墨烯纳米孔对海洋环境条件下纤维金属层压板弯曲性能的影响

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In this research, the effects of adding graphene nanoplatelets (GNPs) on the flexural properties of fiber metal laminates (FMLs) under marine environmental conditions were investigated. The FMLs were fabricated with alternating layers of Al6061 and glass fiber reinforced epoxy (GFRE) with different concentrations of GNPs (0.25, 0.5, and 1.0 wt%). The samples were immersed in the 3.5 wt% NaCl solution for different immersion times (7, 14, and 28 days) at mom temperature. The addition of GNPs led to decreasing the water absorption of samples after immersion in the 3.5 wt% NaCl solution; the lowest absorbed water was for the samples with 0.25 wt% GNPs. Although the flexural properties of samples decreased by increasing the immersion time, the lowest reduction in flexural properties was obtained for the sample with 0.25 wt% GNPs. Results showed that by adding GNPs and immersing the specimens in the 3.5 wt% NaCl solution for 28 days, the flexural strength and modulus, and strain values of specimens containing 0.25 wt% GNPs were respectively about 128%, 63%, and 1.85 times higher than those of samples without GNPs. Also, the reduction of the flexural properties caused by immersion in NaCl solution was lower than that of samples without GNPs. Moreover, the water uptake of samples with 0.25, 0.5, and 1.0 wt% GNPs was about 38%, 31%, and 37% lower than that of samples without GNPs after 28 days of immersion. Microstructural analyses revealed that the improvements in the metal/polymer adhesion and mechanical properties of the polymeric part of FMLs resulting from various mechanisms were the main reasons for the improved performance of samples with GNPs under marine conditions.
机译:在该研究中,研究了在海洋环境条件下加入石墨烯纳米片(GNPS)对纤维金属层压板(FMLS)弯曲性能的影响。使用不同浓度的GNP(0.25,0.5和1.0wt%),用Al6061和玻璃纤维增​​强环氧树脂(GFRE)的交替层制造FML。将样品浸入3.5wt%NaCl溶液中,在MOM温度下进行不同的浸渍时间(7,14和28天)。加入GNPS导致浸入3.5wt%NaCl溶液中后的样品的吸水率;最低吸收水用于样品为0.25wt%GNPS。尽管样品的弯曲性能通过增加浸渍时间而降低,但是用0.25wt%GNP的样品获得弯曲性能的最低降低。结果表明,通过添加GNP并将标本浸入3.5wt%NaCl溶液中28天,抗弯曲强度和模量,含有0.25wt%GNP的样品的应变值分别为约128%,63%和1.85倍而不是没有GNP的样品。而且,通过在NaCl溶液中浸入的弯曲性能的降低低于没有GNPS的样品的弯曲性能。此外,在浸泡28天后,含有0.25,0.5和1.0wt%GNP的样品的水吸收量约为38%,31%和37%,在没有GNP的情况下低于样品。微观结构分析显示,由各种机制产生的FML的金属/聚合物粘附和机械性能的改善是在海洋病症下具有GNP的样品的改善性能的主要原因。

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