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FUNCTIONALIZED MWCNTS REINFORCED POLYETEHYLENE FIBER COMPOSITE: MECHANICAL STRENGTH CHARACTERIZATION

机译:官能化MWCNTS增强聚乙烯纤维复合材料:机械强度表征

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This article studies about the mechanical strength of different functionalized Carbon nanotubes (CNTs) reinforced Polyethylene (PE) fiber composite fabricated by melt spinning. There are four types of CNTs used, which are called as produced, carboxylated, octadecylated, polymer wrapped CNTs. Influence of mechanical drawing (melt spinning) on the mechanical strength of fibers is measured by direct comparison with mechanical strength of bulk type functionalized CNTs polymer composites, which fabricated using hot press. Dispersion and interfacial bonding strength/adhesion of CNTs with PE matrix are investigated through fracture surfaces image analysis. Functionalized CNTs composites show a significant improvement of mechanical strength of pure polymer than non functionalized CNTs polymer composite. Whereas polymer wrapped CNTs polymer composite give the highest mechanical strength in this study. Mechanical strength of bulk composites are significantly increased after mechanical drawing process indicates that melts spinning may influence on the crystallization of polymer. Fracture surface analysis revealed that additional functionalized CNTs enhanced dispersion and interfacial bonding with polymer matrix.
机译:本文研究了由熔融纺丝制造的不同官能化碳纳米管(CNT)增强聚乙烯(PE)纤维复合材料的机械强度的研究。使用了四种类型的CNT,其称为产生的羧化,十八烷基化,聚合物包裹的CNT。机械拉伸(熔体纺丝)对纤维机械强度的影响通过与散装型官能化CNTS聚合物复合材料的机械强度直接比较来测量,用热压机制造。通过断裂表面图像分析研究了CNT与PE基质的分散和界面键合强度/粘附。官能化CNTs复合材料显示出纯聚合物的机械强度的显着提高而不是非官能化的CNT聚合物复合材料。虽然聚合物包裹的CNTS聚合物复合材料在本研究中具有最高的机械强度。在机械拉伸过程中表明熔化纺丝可能对聚合物的结晶产生影响,散装复合材料的机械强度显着增加。断裂表面分析显示,附加官能化CNT和聚合物基质的分散和界面键合。

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