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Fabrication and performances of epoxy/multi-walled carbon nanotubes/piezoelectric ceramic composites as rigid piezo-damping materials

机译:环氧/多壁碳纳米管/压电陶瓷复合材料作为刚性压电阻尼材料的制备与性能

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摘要

Piezo-damping epoxy-based composites containing various amounts of multi-walled carbon nanotubes (CNT) and piezoelectric lead zirconate titanate (PZT) were prepared, and their performances were investigated. The composites exhibited a percolation threshold in the range of 1-1.5 g CNT per 100 g epoxy, in which a continuous electro-conductive network formed. Dynamic mechanical thermal analysis reveals that the loss factors of the composites were improved by incorporation of the PZT and the CNT at above critical electrical percolation loading. Based on this new type rigid piezo-damping material, the PZT contributes to the transformation of mechanical noise and vibration energies into electric energy, while the CNT serve in shorting of the generated electric current to the external circuit. Thermal stability and mechanical properties were also improved by incorporating these two fillers. An optimum formulation for the rigid piezo-damping materials can be designed on the basis of the results of this study.
机译:制备了包含各种数量的多壁碳纳米管(CNT)和压电锆钛酸铅(PZT)的压电阻尼环氧复合材料,并对其性能进行了研究。该复合材料的渗滤阈值范围为每100 g环氧树脂1-1.5 g CNT,其中形成了连续的导电网络。动态机械热分析表明,通过在高于临界电渗流负荷下掺入PZT和CNT,可以改善复合材料的损耗因子。在这种新型的刚性压电阻尼材料的基础上,PZT有助于将机械噪声和振动能转化为电能,而CNT则可缩短流向外部电路的电流。通过掺入这两种填料,还改善了热稳定性和机械性能。刚性压电阻尼材料的最佳配方可以根据这项研究的结果进行设计。

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