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Optimization of a flexible piezoelectric module structure based on a lead-free piezoceramic embedded in nanofiber composites

机译:纳米纤维复合材料中基于无铅压电陶瓷的柔性压电模块结构的优化

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摘要

To realize flexible piezoelectric materials with energy harvesting properties and vibrational characteristics, a piezoelectric module structure based on a lead-free piezoceramic embedded in a nanofiber composite was optimized according to the electrode structure and the module array arrangement. Lead-free piezoceramic particles embedded in nanoflber composites were prepared by an electrospinning process and then modularized by adding upper and lower electrodes via lamination. The energy harvesting properties of the flexible piezoelectric single modules with electrode structures consisting of top and bottom electrodes or interdigitated electrodes with various electrode widths and electrode intervals were characterized according to the oscillation frequency and the bending motion. The displacement and vibrational mode shapes of the flexible single modules were analyzed using a laser scanning vibrometer. Based on the optimized electrode structures of the flexible single modules, flexible piezoelectric dual modules were fabricated according to x- and z-axis array arrangements and to serial and parallel connection methods. The energy harvesting properties were measured and structural health monitoring sensor tests were conducted for several simulated situations. Among the examined modules, the flexible piezoelectric dual module with a serially connected x-axis array showed the best performance. This work provides a new guideline for using module structure design to enhance the piezoelectric effect in flexible modules.
机译:为了实现具有能量收集特性和振动特性的柔性压电材料,根据电极结构和模块阵列布置,优化了基于无铅压电陶瓷嵌入纳米纤维复合材料的压电模块结构。通过电纺丝工艺制备了嵌入纳米纤维复合材料中的无铅压电陶瓷颗粒,然后通过层压添加上下电极将其模块化。根据振荡频率和弯曲运动,表征了具有顶部和底部电极或具有不同电极宽度和电极间隔的叉指电极的电极结构的柔性压电单模块的能量收集特性。使用激光扫描振动计分析了柔性单个模块的位移和振动模式形状。基于柔性单模块的优化电极结构,根据x和z轴阵列布置以及串行和并行连接方法,制造了柔性压电双模块。测量了能量收集特性,并针对几种模拟情况进行了结构健康监测传感器测试。在所检查的模块中,具有串联x轴阵列的柔性压电双模块显示出最佳性能。这项工作为使用模块结构设计增强柔性模块中的压电效应提供了新的指导。

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