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Mechanical Properties of Individual Composite Poly(methyl-methacrylate) -Multiwalled Carbon Nanotubes Nanofibers

机译:各自复合聚(甲基丙烯酸甲酯) - 碳纳米管纳米纤维的机械性能

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Multiwalled carbon nanotubes with their superb mechanical properties are an unique filler material for polymer composites. Here, we present an investigation of mechanical properties of electrospun Poly-(methyl-methacrylate) multiwalled carbon nanotubes composite nanofibers. The method of electrospinning was used to fabricate suspended individual Poly-(methyl-methacrylate) multiwalled carbon nanotubes nanofibers. In order to reinforce the nanofibers, different high concentration of multiwalled carbon nanotubes were used. Transmission electron microscopy measurements reveal a successful filling of the nanofibers. The different types of nanofibers were deposited at SiO_2 substrates. Which were previously etched, to create trenches for bend tests. Followed by fixing the nanofiber with a focus ion beam platinum deposition at the trench edges. An atomic force microscopy was used to perform the mechanical nanofiber bending tests over trenches. The results were compared with pristine Poly-(methyl-methacrylate) nanofibers to nanofibers with 15 weight% and 20 weight% multiwalled carbon nanotubes composite fibers. We observed that pristine nanofibers have Young's modulus of 136 MPa, while for composite nanofibers with 15 weight% have 2.65 GPa and with 20 weight% have 6.06 GPa (at room temperature and air ambiance). This corresponds to an increase of Young's modulus of 19 fold between the pristine nanofibers and the 15 weight% of mutliwalled carbon nanotubes filled nanofibers. Therefore the increase of the Young's modulus compared between the pristine and the 20 weight% MWCNT filled nanofibers corresponds to 45 fold.
机译:具有其精湛机械性能的多壁碳纳米管是用于聚合物复合材料的独特填充材料。在此,我们介绍了电纺 - (甲基 - 甲基丙烯酸甲酯)多壁碳纳米管复合纳米纤维的力学性能的研究。静电纺丝方法用于制造悬浮的个体聚 - (甲基丙烯酸甲酯)多壁碳纳米管纳米纤维。为了加强纳米纤维,使用不同的高浓度的多晶碳纳米管。透射电子显微镜测量揭示了纳米纤维的成功填充。将不同类型的纳米纤维沉积在SiO_2底物上。先前蚀刻,以创建用于弯曲测试的沟槽。然后在沟槽边缘将纳米纤维固定在沟槽边缘处的聚焦离子束铂沉积。原子力显微镜用于在沟槽上进行机械纳米纤维弯曲试验。将结果与原始聚(甲基丙烯酸甲酯)纳米纤维与纳米纤维进行比较,具有15重量%和20重量%的多晶碳纳米管复合纤维。我们观察到原始纳米纤维具有136MPa的杨氏模量,而对于15重量%的复合纳米纤维具有2.65gPa,具有20重量%的6.06GPa(室温和空气氛围)。这对应于初始纳米纤维之间的杨氏模量19倍,并且15重量%的多晶碳纳米管填充纳米纤维。因此,在原始和20重量%MWCNT填充纳米纤维之间比较杨氏模量的增加对应于45倍。

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