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Synergistic effect of flame retardants and carbon nanotubes on flame retarding and electromagnetic shielding properties of thermoplastic polyurethane

机译:阻燃剂和碳纳米管对热塑性聚氨酯阻燃和电磁屏蔽性能的协同作用

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Thermoplastic polyurethane (TPU)-based composites filled with carbon nanotubes (CNTs) and intumescent flame retardants (IFRs) were fabricated through melt compounding method. For comparison, TPU/IFR and TPU/CNT composites with different filling proportions were prepared, respectively. The results presented that the addition of 1 wt% CNTs and 10 wt% IFRs into TPU could achieve good flame retarding and electromagnetic interference (EMI) shielding properties simultaneously. With regard to flame retardancy, the compounding of CNTs and IFRs effectively suppressed the heat release rate and the UL-94 rating was upgraded to V-0 accompanied with prompt self-extinguishment and disappeared melt-dripping, which was equivalent to incorporate 20 wt% IFRs alone. However, the flame retardancy became deteriorated by loading more CNTs. It was revealed that the addition of CNTs could strengthen the carbonization effect of IFRs, but suppress their intumescent effect. Hence, a right amount of CNT loading was of critical importance to achieve synergistic effect with IFRs. Moreover, compared with the TPU/CNT system, the TPU/IFR/CNT system possessing the same CNT contents had a lower percolation threshold. When 1 wt% CNTs were introduced, the electrical conductivity was increased about two orders of magnitude and EMI shielding effectiveness was doubled in the presence of IFRs. The morphological observation and rheological analysis demonstrated that mixing with IFRs not only improved the dispersion of CNTs through particle collisions, but also benefited for establishing the continuous conductive pathways among the IFR particles. Accordingly, this work provided a promising and facile route to fabricate EMI shielding polymeric composites with excellent flame retardancy.
机译:通过熔融复合法制备了填充有碳纳米管(CNTs)和膨胀型阻燃剂(IFRs)的热塑性聚氨酯(TPU)基复合材料。为了比较,分别制备了具有不同填充比例的TPU / IFR和TPU / CNT复合材料。结果表明,向TPU中添加1 wt%的CNT和10 wt%的IFR可以同时获得良好的阻燃性和电磁干扰(EMI)屏蔽性能。关于阻燃性,CNT和IFR的混合有效地抑制了放热率,UL-94等级升至V-0,伴随着迅速的自熄和消失的熔滴现象,相当于添加了20 wt%仅IFR。但是,通过添加更多的CNT,阻燃性变差。揭示了CNT的添加可以增强IFR的碳化作用,但是抑制其膨胀作用。因此,适量的CNT负载对于实现与IFR的协同作用至关重要。此外,与TPU / CNT系统相比,具有相同CNT含量的TPU / IFR / CNT系统具有较低的渗透阈值。当引入1wt%的CNT时,在IFR存在下,电导率增加约两个数量级,并且EMI屏蔽效率增加一倍。形态观察和流变分析表明,与IFRs混合不仅改善了碳纳米管通过颗粒碰撞的分散性,而且有利于在IFR颗粒之间建立连续的导电路径。因此,这项工作为制造具有优异阻燃性的EMI屏蔽聚合物复合材料提供了一种有希望且容易的途径。

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