Synergistic Effect of Micro and Nano Fillers on Mechanical and Thermal Behavior of Glass-Basalt Hybrid Nano Composites

M. RudreshB, N. RavikumarB, D. Madhu, B. Lingesh
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引用次数: 1

Abstract

This article deals with the combined effect of micro and nano fillers on mechanical, thermal and morphological behavior of glass-basalt hybrid composites (GB). Three material systems were selected for the study: glass-basalt fiber reinforced 80 wt. % PA66 – 20 wt. % PTFE blend (GB), GB/Micro fillers (MoS2, SiC, Al2O3) (GBM) and GBM/nano fillers (TiO2) (GBN). It has been revealed from the experimentation that the effect of micro fillers deteriorated the mechanical behavior of micro composites (GBM). But the combined effect of micro and nano fillers slightly impaired the mechanical behavior of nano composites. The synergistic effect of micro and nano fillers constrained the loss of strength of nano composites. But the impact strength of nano composites has been improved due to hybrid fillers effect. The hybrid effect of fillers significantly improved the thermal stability of nano composites. Further, it is observed from the morphology that the fractured surfaces were characterized by fiber pull out and fiber overlapping, severe deformation and agglomeration of nano particles.
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微纳填料对玻璃-玄武岩杂化纳米复合材料力学和热性能的协同效应
研究了微纳填料对玻璃-玄武岩杂化复合材料力学性能、热性能和形态性能的综合影响。研究中选择了三种材料体系:玻璃玄武岩纤维增强80 wt. % PA66 - 20 wt. % PTFE共混(GB), GB/微填料(MoS2, SiC, Al2O3) (GBM)和GBM/纳米填料(TiO2) (GBN)。实验结果表明,微填料的作用使微复合材料(GBM)的力学性能恶化。但微纳填料的共同作用对纳米复合材料的力学性能有轻微影响。微纳填料的协同作用抑制了纳米复合材料的强度损失。但由于杂化填料的作用,纳米复合材料的冲击强度得到了提高。填料的杂化效应显著提高了纳米复合材料的热稳定性。此外,从形貌上观察到,断裂表面呈现出纤维拔出、纤维重叠、纳米颗粒严重变形和团聚的特征。
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CiteScore
2.60
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0.00%
发文量
22
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