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Facile Fabrication of a Novel PZT@PPy Aerogel/Epoxy Resin Composite with Improved Damping Property

机译:新型PZT @ PPy气凝胶/环氧树脂复合材料的改进阻尼性能

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摘要

A novel lead zirconate titanate@polypyrrole (PZT@PPy) aerogel (PPA) was fabricated via in-situ polymerization and subsequent freeze-drying method. The porous PPA was then saturated with epoxy resin to obtain the PPA/epoxy composite (PPAE) by a simple vacuum filling method. In this way, the filler content and dispersion uniformity are well guaranteed, which is in favor of improving the damping and mechanical properties of composites. The morphology and structure of PPAs were investigated using XRD, SEM, EDS and nitrogen absorption and desorption measurements. The results showed that the PPA possessed a three-dimensional porous structure with uniform lead zirconate titanate (PZT) distribution. The influence of PZT content on the damping property of PPAE composite was investigated by dynamic mechanical analysis (DMA). PPAE-75 (i.e., the mass ratio of PZT to PPy is 75 wt %) exhibited the maximum damping loss factor value, 360% higher than that of the epoxy matrix, suggesting good structural damping performance.
机译:通过原位聚合反应和随后的冷冻干燥方法,制备了一种新型的锆钛酸钛@聚吡咯(PZT @ PPy)气凝胶(PPA)。然后,通过简单的真空填充方法将多孔的PPA用环氧树脂饱和,以获得PPA /环氧复合材料(PPAE)。这样,可以很好地保证填料含量和分散均匀性,这有利于改善复合材料的阻尼和机械性能。使用XRD,SEM,EDS和氮吸收和解吸测量研究了PPA的形态和结构。结果表明,PPA具有三维多孔结构,钛酸锆钛酸铅(PZT)分布均匀。通过动态力学分析(DMA)研究了PZT含量对PPAE复合材料阻尼性能的影响。 PPAE-75(即PZT与PPy的质量比为75 wt%)表现出最大的阻尼损耗因子值,比环氧基质的阻尼损耗因子值高360%,表明结构阻尼性能良好。

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