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Studying the Effects of Adding Silica Sand Nanoparticles on Epoxy Based Composites

机译:研究添加硅砂纳米颗粒对环氧树脂基复合材料的影响

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The research about the preparation of submicron inorganic particles, once conducted in the past decade, is now leading to prepare polymer matrix composite (PMC) reinforced with nanofillers. The objective of present research is to study the modified effects of reinforcement dispersion of nanoparticle silica in epoxy resin on the physical properties, mechanical and thermal behaviour, and the microstructure of resultant composites. Stirrer mixing associated with manual mixing of silica sand nanoparticles (developed in our earlier research) (Ahmad and Mamat, 2012) into epoxy was followed by curing being the adopted technique to develop the subject nanocomposites. Experimental values showed that 15 wt.% addition of silica sand nanoparticles improves Young’s modulus of the composites; however, a reduction in tensile strength was also observed. Number of holes and cavities produced due to improper mixing turn out to be the main cause of effected mechanical properties. Addition of silica sand nanoparticles causes a reduction in degree of crystallinity of the nanocomposites as being observed in differential scanning calorimetry (DSC) analysis.
机译:在过去的十年中,曾经进行过有关亚微米无机颗粒制备的研究,现在正导致制备用纳米填料增强的聚合物基复合材料(PMC)。本研究的目的是研究纳米颗粒二氧化硅在环氧树脂中的增强分散体对物理性能,机械性能和热性能以及所得复合材料微观结构的改性作用。将硅砂纳米颗粒(在我们较早的研究中开发)(Ahmad和Mamat,2012年)手动混合到环氧树脂中进行搅拌混合,然后采用固化技术开发主题纳米复合材料。实验值表明,添加15 nanoparticleswt。%的硅砂纳米颗粒可以改善复合材料的杨氏模量;然而,还观察到拉伸强度降低。由于不适当的混合而产生的孔和腔的数量被证明是影响机械性能的主要原因。如在差示扫描量热法(DSC)分析中所观察到的,硅砂纳米颗粒的添加导致纳米复合材料的结晶度降低。

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