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Synergistic effect on static and dynamic mechanical properties of carbon fiber-multiwalled carbon nanotube hybrid polycarbonate composites

机译:碳纤维多壁碳纳米管杂交碳酸氢盐复合材料静态和动态力学性能的协同作用

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Carbon fiber (CF) and multiwalled carbon nanotube (MWCNT)-reinforced hybrid micro–nanocomposites are prepared through melt mixing followed by injection moulding. The synergistic effect on both the static and dynamic mechanical properties with MWCNT/aMWCNT and CF reinforcement in a polycarbonate matrix is investigated by utilizing dynamic mechanical analysis, and flexural and tensile measurements. The enhancement in the flexural modulus and strength of the composite specimens as compared to pure PC for maximum loading of CF is 128.40% and 39.90%, respectively, which further improved to 142.94% and 42.60%, respectively, for CF-functionalized MWCNTs. Similarly, the storage modulus of the composite specimens reinforced with a maximum loading of CF and CF-functionalized MWCNTs show an increment of 176.57% and 203.33%, respectively over pure PC at 40 °C. Various types of parameter such as the coefficient C factor, degree of entanglement and adhesion factor have been calculated to analyze the interaction between fillers and the polymer matrix. Composite specimens containing 2 wt% of functionalized MWCNTs show a lower C value than the as-synthesized MWCNTs, which is indicative of a higher effectiveness of functionalized MWCNT-containing composite specimens. These results are well supported by optical microscopy and Raman spectroscopy by confirming the distribution of reinforcements and the interaction to PC, respectively.
机译:碳纤维(CF)和多壁碳纳米管(MWCNT) - 通过熔融混合洗涤,然后通过注射成型制备碳纤维含有杂交微纳米复合材料。利用动态力学分析和弯曲和拉伸测量,研究了对MWCNT / AMWCNT和CF加固静态和动态力学性能和CF加固的协同作用。与纯PC相比,复合试样的弯曲模量和强度的增强分别为CF的最大负载,分别进一步提高至CF官能化MWCNT的128.40%和39.90%,进一步提高至142.94%和42.60%。类似地,随着CF和CF官能化的MWCNT的最大负载增强的复合样品的储存模量在40℃下分别在纯PC上分别为176.57%和203.33%的增量。已经计算了各种类型的参数,例如系数C因子,缠结程度和粘合因子,以分析填料与聚合物基质之间的相互作用。含有2wt%的官能化MWCNT的复合样品显示出比合成的MWCNT的较低的C值,这表明含有含官能化MWCNT的复合样本的有效性。这些结果通过光学显微镜和拉曼光谱分别通过确认增强物和与PC的相互作用分布良好的光谱分子。

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