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Flexible and flame-retarding thermoplastic polyurethane-based electromagnetic interference shielding composites

机译:柔性和阻燃热塑性聚氨酯基电磁干扰屏蔽复合材料

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摘要

A flexible and flame-retarding thermoplastic polyurethane (TPU)-based electromagnetic interference (EMI)-shielding composite with multilayered structure was fabricated via coextrusion technology. The layer multiplication could not only create numerous layer interfaces, but also tailor the selective distribution of flame retardants (FRs) and carbon nanotubes (CNTs) endowing each extrudate excellent flexibility. When the layer numbers reached 32, synergistic flame-retarding and EMI-shielding multiple functional networks were generated and performed the optimum comprehensive performances, overcoming the major disadvantage of the conventional composites where the networks may breakup each other. Due to the interfacial polarization loss caused by the impedance difference between conducting and flame-retarding layers, the maximum shielding effectiveness (SE) of 38.5 dB was obtained with less than 4 wt% CNTs. Besides, superior flame retardancy rated by V-0 with quick self-extinguishment and low heat release was achieved owning to the production of continuous and foaming carbonaceous structure among layers. More significantly, the SE of the char residue, which was less concerned in conventional composite systems, was even beyond 60 dB. The maintenance of the multilayered architecture and the generation of atmosphere cavities were regarded to benefit for providing numerous impedance-mismatched interfaces and extending the transmission path of the microwaves. Consequently, the multilayer-assembled strategy was proposed to balance the mechanical, flame-retarding and EMI-shielding performances for satisfying with the stringent requirements of protective materials.
机译:通过共挤出技术制造具有多层结构的柔性和阻燃热塑性聚氨酯(TPU)的基于电磁干扰(EMI) - 屏蔽复合材料。层乘法不仅可以创造许多层界面,而且还可以根据赋予每个挤出物优异的柔韧性来定制阻燃剂(FRS)和碳纳米管(CNT)的选择性分布。当层数达到32时,产生协同阻燃和EMI屏蔽多功能网络并且执行了最佳的综合性能,克服了传统复合材料的主要缺点,其中网络可以彼此分解。由于导电和阻燃层之间的阻抗差异引起的界面偏振损失,获得38.5dB的最大屏蔽效果(Se),以小于4wt%的CNT。此外,通过快速自熄和低热释放的V-0评定的卓越的阻燃性,并在层中的连续和发泡碳质结构中的产生。更重要的是,在常规复合体系中不太关注的炭残余物的SE甚至超过60dB。认为多层架构和大气腔的产生的维持有利于提供许多阻抗错配的接口并延伸微波的传输路径。因此,提出了多层组装的策略来平衡机械,阻燃和EMI屏蔽性能,以满足保护材料的严格要求。

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