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Electrical and damping behaviors of CPE/BaTiO_3/VGCF composites

机译:CPE / BaTiO_3 / VGCF复合材料的电学和阻尼行为

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摘要

The electrical and damping behaviors of chlorinated polyethylene (CPE)/barium titanate (BaTiO_3)/vapor-grown carbon fiber (VGCF) composites have been investigated. CPE/BaTiO_3/VGCF composites exhibit a lower percolation threshold compared to the CPE/VGCF two-component system. This can be attributed to the presence of BaTiO_3 particles, which increases the effective concentration of VGCF in the composites For CPE/BaTiO_3/VGCF composites, the dynamic mechanical analysis shows that, at the glass transition temperature of CPE, the values of loss factor decrease with increasing VGCF content. However, within the room temperature region (around 25 deg C), the values of loss factor for CPE/BaTiO_3/VGCF samples are higher than that of CPE/BaTiO_3 and present a peak at 8 vol. percent VGCF content, which corresponds to the beginning of the second percolation stage. This may imply that the piezo-damping effect is directly related to conductive network formation in the composites and a new damping material with both a higher loss factor value and efficient stiffness in the region of practical temperature can be obtained by changing the composition of the CPE/BaTiO_3/VGCF composites.
机译:研究了氯化聚乙烯(CPE)/钛酸钡(BaTiO_3)/气相生长碳纤维(VGCF)复合材料的电学和阻尼行为。与CPE / VGCF两组分体系相比,CPE / BaTiO_3 / VGCF复合材料的渗透阈值更低。这可以归因于BaTiO_3颗粒的存在,它增加了复合材料中VGCF的有效浓度对于CPE / BaTiO_3 / VGCF复合材料,动态力学分析表明,在CPE的玻璃化转变温度下,损耗因子的值减小随着VGCF含量的增加。但是,在室温区域(约25摄氏度)内,CPE / BaTiO_3 / VGCF样品的损耗因子值高于CPE / BaTiO_3的损耗因子,并在8 vol处出现峰值。 VGCF含量百分比,它对应于第二个渗滤阶段的开始。这可能意味着压电阻尼效应与复合材料中的导电网络形成直接相关,并且可以通过改变CPE的成分来获得既具有较高损耗因子值又具有实用刚度的新型阻尼材料,其在实际温度范围内/ BaTiO_3 / VGCF复合材料。

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