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Mechanical properties of graphene nanoplatelets reinforced epikote 828 under dynamic compression

机译:石墨烯纳米片的力学性能在动态压缩下加强Epikote 828

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摘要

In this experimental investigation, the influence of graphene nanoplatelets (GNPs) on the dynamic behavior of polymeric material such as diglycidyl ether of bisphenol A (DGEBA) epoxy is investigated using the Split Hopkinson Pressure Bar (SHPB). Nanocomposite samples with a different weight percentage of GNPs i.e. 0, 1, 2, 5 wt % were fabricated and tested under dynamic compression to understand the influence of nanofillers on the mechanical performance of the epoxy. The results established that changing the mass fraction of GNPs greatly influences the mechanical behavior of the epoxy and confirmed that the optimal mass fraction of GNPs was 1 wt % because of the good dispersion and viscosity. While, a further increase in the percentage of GNPs resulted in degradation of the mechanical strength of the material because of the agglomeration of graphene sheets, porosity, and their poor interfacial bonding. Moreover, each mass fraction of nanocomposites was tested at three different impact pressures i.e. 1.5, 2, and 4 bar. The main objective is to quantify the effect of the strain rate on the mechanical behavior and on the resulting damage modes. This study further confirmed that the high percentage of GNPs increases the viscosity of the epoxy resulting in porosity and void in the structure which generates high-localised stresses into the matrix causing premature failure under dynamic loading.
机译:在该实验研究中,使用分裂霍普金森压力棒(SHPB)研究了石墨烯纳米片(GNP)对聚合物材料的动态行为的影响,例如双酚A(DGEBA)环氧树脂的二缩水甘油醚。纳米复合材料具有不同重量百分比的GNPS等,在动态压缩下制造并测试0,1,2,5wt%,以了解纳米填充物对环氧树脂机械性能的影响。结果确定,改变GNP的质量分数大大影响环氧树脂的力学行为,并确认由于良好的分散和粘度,GNP的最佳质量级分为1wt%。虽然,由于石墨烯片,孔隙率和它们差的界面粘合,因此GNP的百分比的进一步增加导致材料的机械强度降低。此外,在三种不同的冲击压力下测试纳米复合材料的每个质量分数,即1.5,2和4巴。主要目的是量化应变率对机械行为的影响以及所产生的损伤模式。该研究进一步证实,高百分比的GNP增加了环氧树脂的粘度,导致结构中的孔隙率和空隙,其在动态负荷下产生过早破坏的基质。

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