首页> 外文会议>Society for the Advancement of Material and Process Engineering Technical Conference and Exhibition >(2375) INTERFACIAL AND OPTOELECTRONIC PROPERTIES OF GNP AND CNT/PVDF COMPOSITE SHEETS FOR ACOUSTIC ACTUATOR WITH NANO- AND HETERO- STRUCTURES
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(2375) INTERFACIAL AND OPTOELECTRONIC PROPERTIES OF GNP AND CNT/PVDF COMPOSITE SHEETS FOR ACOUSTIC ACTUATOR WITH NANO- AND HETERO- STRUCTURES

机译:(2375)用纳米和异质结构的声学执行器的GNP和CNT / PVDF复合板的界面和光电性能

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Nano- and hetero-structures of graphene nanoplatelet (GnP) and carbon nanotube (CNT) can control piezoelectric and optoelectronic properties for acoustic actuator, flexible transparent speaker. Optimized conditions were obtained by obtaining the best dispersion and interfacial durability for the long-term use. Optical transmittance and electrical resistance were measured for GnP and CNT dip- and spraying coating on piezoelectric poly(vinylidene fluoride) (PVDF) sheets with elapsing time under cyclic loading. Uniform dip-coating was simply tried using Wilhelmy plate machine as well as spraying coating. The change in electrical resistance and optical transmittance of coated layer was dependent upon the number of dip-coating, the concentration of nano-solutions. Electric properties of coated layers were measured using four-point method and surface resistance was calculated by dual configuration method. Optical transmittance of GnP and CNT coated PVDF sheet was evaluated using UV spectrum. Surface energy and hydrophobicity were investigated by wettability test. As the elapsing time of cyclic loading passed and heating condition right after coating, the stability of surface resistance and thus comparative interfacial adhesion between coated layer and PVDF sheet was evaluated by comparing with the thermodynamic work of adhesion, Wa. As dip-coating number increased, surface resistance of coated sheet decreased, whereas the transmittance decreased steadily due to thicker nano-networking layer. Nano- and hetero-structural effects of GnP and CNT solution on the optical and acoustic response were studied. The thin film transducers showed good acoustic response over wide frequency ranges. Improved interfacial adhesion of was contributed to increase the sound pressure level (SPL) for acoustic actuator.
机译:石墨烯纳米型(GNP)和碳纳米管(CNT)的纳米和杂结构可以控制用于声学致动器,柔性透明扬声器的压电和光电性能。通过获得长期使用的最佳分散体和界面耐久性来获得优化的条件。测量光电聚(偏二氟乙烯氟乙烯)(PVDF)片上的GNP和CNT浸渍和喷涂涂层测量光学透射率和电阻,在循环载荷下通过经过的时间。使用Wilhelmy Blate机器以及喷涂涂层简单地尝试均匀浸涂。涂层的电阻和光学透射率的变化取决于浸涂的数量,纳米溶液的浓度。使用四点法测量涂覆层的电性能,通过双配置方法计算表面电阻。使用UV光谱评估GNP和CNT涂覆的PVDF片材的光学透射率。通过润湿性试验研究了表面能和疏水性。作为循环加载通过和涂覆后的加热条件的经过时间,通过比较粘附性的热力学工作,评价涂层和PVDF片之间的表面电阻和比较界面粘合的稳定性。由于浸涂编号增加,涂层片的表面电阻降低,而由于纳米网络层较厚,透射率稳定地降低。研究了GNP和CNT溶液对光学和声反应的杂结构效应。薄膜换能器在宽频范围内显示出良好的声学响应。改进的界面粘附是有助于增加声压水平(SPL)的声学致动器。

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