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Mechanical properties of fibers made from single-walled carbon nanotube reinforced thermoplastic polymer composites.

机译:由单壁碳纳米管增强的热塑性聚合物复合材料制成的纤维的机械性能。

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Single-walled carbon nanotubes are high strength materials with nano-sized dimensions, which make them attractive as reinforcing materials for polymer matrices. Their nano-sized dimensions however make them difficult to manipulate for macroscopic applications. This thesis focuses on manufacturing and studying nanotube continuous fibers as a means of manipulating these stronger reinforcing materials in thermoplastic polymer matrices to increase the mechanical properties of the composite generated. The thermoplastic polymers used in this thesis are polypropylene and nylon 6,6. This thesis demonstrates the effects of alignment, new chemical functionalizations and increasing weight percentages of the single-walled carbon nanotubes in the nanotube continuous fiber systems. The functionalizations studies include the use of fluorinated single-walled nanotubes, and an attempt to use benzoyl peroxide to initiate covalent bonding of single-walled nanotubes to the polymer in the processing stage of the polypropylene composite systems. (Abstract shortened by UMI.)
机译:单壁碳纳米管是具有纳米尺寸的高强度材料,使其成为聚合物基体的增强材料具有吸引力。然而,它们的纳米尺寸使它们难以在宏观应用中进行操作。本文致力于制造和研究纳米管连续纤维,作为在热塑性聚合物基体中处理这些更强的增强材料的手段,以提高所产生复合材料的机械性能。本文使用的热塑性聚合物是聚丙烯和尼龙6,6。本文证明了纳米管连续纤维系统中单壁碳纳米管的排列,新化学功能化和重量百分比增加的影响。功能化研究包括使用氟化单壁纳米管,以及尝试使用过氧化苯甲酰在聚丙烯复合材料系统的加工阶段中引发单壁纳米管与聚合物的共价键合。 (摘要由UMI缩短。)

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