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Preparation and Characterization of the Modified Carbon Nanotubes Enhanced Epoxy Resin Composites

机译:改性碳纳米管增强型环氧树脂复合材料的制备及表征

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In this study, the surfaces of the multi-walled carbon nanotubes (MWNTs) were treated by acrylic acid. The acid-treated MWNTs were functionalized and were characterized by Infrared spectroscopy. The MWNTs were opened at their ends by ultrasonic treating and UV irradiating. Different adding amounts of the opened MWNTs were filled to the epoxy resin, and their mechanical properties and thermal properties were measured by Instron, impact and differential scanning calorimeter (DSC), etc. The optimum adding amount of MWNTs to the epoxy resin is 2.0%, which is according to the parameters obtained from mechanical testing and T{sub}g. The activation energy of the epoxy resin during curing can be calculated from infrared spectra according to the change of the epoxide band. The electrical conductivity of the MWNTs-filled composites was increased with proper (12.87%) amount of MWNTs adding, this is due to the networks constructed between MWNTs completely.
机译:在该研究中,通过丙烯酸处理多壁碳纳米管(MWNT)的表面。酸处理的MWNT是官能化的,并通过红外光谱表征。通过超声波处理和紫外线照射,在其末端打开MWNT。将打开的MWNT的添加量填充到环氧树脂上,通过Instron,冲击和差示扫描量热计(DSC)测量它们的机械性能和热性能等。环氧树脂的最佳增加量为2.0% ,这是根据从机械测试和T {Sub} G获得的参数。根据环氧化物带的变化,可以根据红外光谱计算固化期间环氧树脂的活化能。填充的复合材料的电导率随适当的(12.87%)的MWNTS增加而增加,这是由于在MWNT之间完全构造的网络。

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