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首页> 外文期刊>Journal of Sandwich Structures and Materials >The flexural and impact behavior of the laminated aluminum-epoxy/basalt fibers composites containing nanoclay: An experimental investigation
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The flexural and impact behavior of the laminated aluminum-epoxy/basalt fibers composites containing nanoclay: An experimental investigation

机译:含有NanoClay的层压铝 - 环氧/玄武岩纤维复合材料的弯曲和冲击性能:实验研究

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摘要

In this study, the effect of different weight percents of modified/unmodified nanoclay particles on the flexural and impact properties of fiber-metal laminates made of 2024-T3 aluminum sheets and basalt fibers as the reinforcements and epoxy as the matrix was investigated. As a first step, the surface of nanoclay particles was modified by the silane-coupling agent. The creation of the functional groups on the surface of nanoclay particles was confirmed by Fourier transform infrared spectroscopy analyses. The modified nanoclay with different weight percents of 0, 1, 3, and 5 was added into the epoxy matrix; then, for the better distribution and dispersion of nanoparticles in the matrix, the mechanical and ultra-sonication machines were used. Also, to ensure better interaction and adherence between the matrix and the aluminum sheets, the mechanical and chemical treatments were conducted. Then, the mixture of epoxy and nanoclay with woven basalt fibers and aluminum sheets was used to fabricate fiber-metal laminates. To survey the effect of these nanoparticles on the mechanical properties, the three-point bending test and the high-velocity impact test were used. The results showed that the maximum effect of adding nanoclay particles on the flexural and impact behavior was obtained by using 3 wt.% of the modified nanoclay. These properties of fiber-metal laminates, which contained the 3 wt.% unmodified nanoclay, were weakened in comparison to a similar specimen containing the modified nanoclay. Furthermore, the flexural modulus was enhanced by increasing the weight percent of the nanoparticles. Also, to investigate the fracture mechanism, the field emission scanning electron microscope was used. The microscopic images revealed that adding nanoclay particles led to the improvement of the interaction between the matrix and basalt fibers, thereby improving the flexural and impact properties.
机译:在该研究中,研究了改性/未改性纳米粘土颗粒对由2024-T3铝板和玄武岩纤维制成的纤维金属层压板弯曲和冲击性能的影响,作为基质的增强剂和环氧树脂。作为第一步,通过硅烷偶联剂改性纳米粘土颗粒的表面。通过傅里叶变换红外光谱分析证实了纳米粘土颗粒表面上的官能团的产生。加入0,1,3和5种不同重量的改性的纳米粘体;环氧基质;然后,为了更好地分布和分散纳米颗粒在基质中,使用机械和超声波机器。而且,为了确保基质和铝板之间的更好的相互作用和粘附,进行机械和化学处理。然后,使用具有编织玄武岩纤维和铝板的环氧和纳米粘土的混合物制造纤维金属层压板。为了调查这些纳米颗粒对机械性能的影响,使用三点弯曲试验和高速冲击试验。结果表明,通过使用3重量%,得到纳米粘土颗粒对弯曲和冲击行为的最大效果。%改性纳米粘土。与含有改性纳米粘土的类似样品相比,含有3重量%的纳米粘土的纤维金属层压材料的这些性质被削弱。此外,通过增加纳米颗粒的重量百分比来提高弯曲模量。而且,为了研究裂缝机制,使用现场发射扫描电子显微镜。显微镜图像显示,添加纳米粘土颗粒导致基质和玄武岩纤维之间的相互作用改善,从而改善弯曲和冲击性能。

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