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Mechanical and thermal properties of carbon-nanotube-reinforced self-healing polyurethanes

机译:碳 - 纳米管增强自愈合聚氨酯的机械和热性能

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摘要

The study was conducted to synthesize self-healing polyurethanes (PUs) in the presence of multiwalled carbon nanotubes (CNTs). Measurements of the self-healing ability of PUs synthesized from N3300 isocyanate and polytetrahydrofuran with various contents of CNTs were taken. The mechanical and thermal properties were studied to analyse healing efficiency in experimentally damaged composite samples. The addition of CNTs results in a slight decrease in the self-healing efficiency of nanocomposites as compared to pure PUs. PU samples containing 40% content of soft segments self-healed much better than the samples with 50% content of soft segments. Functionalized carbon nanotubes CNT-OH due to presence of surface functional groups interact with PU chains, which results in an increase in the healing efficiency of mechanical strength and thermal conductivity of nanocomposites.
机译:在多壁碳纳米管(CNT)存在下,进行该研究以在存在多壁碳纳米管(CNT)的情况下合成自愈聚氨酯(PU)。 采集了从N3300异氰酸酯合成的脓液栓塞和具有各种CNT含量的聚四氢呋喃的自愈能力的测量。 研究了机械和热性能以分析实验损坏的复合样品中的愈合效率。 与纯PU相比,CNT的添加导致纳米复合材料的自愈合效率轻微降低。 PU样品含有40%的软段含量自愈优于具有50%含量的软段的样品。 官能化碳纳米管CNT-OH由于表面官能团的存在与PU链相互作用,这导致纳米复合材料的机械强度和导热率的愈合效率的增加。

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