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Effect of Al_2O_3 Nanoparticles on the Mechanical and Physical Properties of Epoxy Composite

机译:Al_2O_3纳米粒子对环氧复合材料力学性能的影响

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The effect of alumina nanoparticles and the dispersion homogeneity on the composite performance, in terms of mechanical and physical properties, has been studied extensively. The effect of alumina nanoparticles weight percentage (0.25-0.5-0.75-1 wt%) and particle size of 60 nm mixed with commercial epoxy resin (Kemapoxy 150) are used in this investigation. Bending, hardness, tension, erosion, water absorption, and TGA tests are studied. Experimental results indicate improvement in the mechanical behavior with 0.25 wt% particles for both bending strength and wear resistance by 7 and 67% relative to pure epoxy. Water absorption depends mainly on particle distribution, and TGA testing slightly increases with the increase in particles dosage. The tested samples were studied using environmental scanning electron microscopy. Good distribution and dispersion of nanoparticles in the epoxy matrix lead to reducing the mobility of the epoxy chains due to the formation of high immobile nano-layers around the alumina nanoparticles. Thus, creating hydrogen bonding between chains and particles. Consequently, increased constraints between particles/polymer chains and polymer chains themselves are found leading chains to bear extra forces. Fracture strength decreases due to nanoparticles agglomerations causing an increase in the space distance (free volume space) between epoxy chains. This study suggests possible applications of the tested coating due to improved mechanical and physical properties upon nanoparticles addition.
机译:就机械和物理性能而言,已经广泛研究了氧化铝纳米颗粒和分散体均质性对复合材料性能的影响。在这项研究中,使用了氧化铝纳米粒子重量百分比(0.25-0.5-0.75-1 wt%)和60 nm粒径与商用环氧树脂(Kemapoxy 150)混合的效果。研究了弯曲,硬度,张力,腐蚀,吸水率和TGA测试。实验结果表明,相对于纯环氧树脂,0.25 wt%的抗弯强度和耐磨性颗粒的机械性能提高了7%和67%。吸水率主要取决于颗粒分布,TGA测试随颗粒剂量的增加而略有增加。使用环境扫描电子显微镜对测试样品进行了研究。纳米颗粒在环氧基质中的良好分布和分散性由于在氧化铝纳米颗粒周围形成高固定性纳米层而导致环氧链的迁移率降低。因此,在链和颗粒之间产生氢键。因此,发现颗粒/聚合物链和聚合物链本身之间的约束增加,导致链承受额外的力。由于纳米颗粒的团聚导致了环氧基链之间的空间距离(自由体积空间)的增加,断裂强度降低。这项研究表明,由于添加纳米粒子后机械和物理性能的改善,该测试涂层的可能应用。

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