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Electric Poling-Assisted Additive Manufacturing Process for Lead-Free Piezoelectric Device Fabrication

机译:用于无铅压电器件制造的电动杆辅助添加剂制造工艺

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This paper presents a new additive manufacturing method based on electric poling process often used in many polymeric materials processing for lead-free piezoelectric device fabrication. This is to directly and continuously print piezoelectric devices from Polyvinylidene fluoride (PVDF) polymeric filament rods under a strong electric field and mechanical stretching along the filament core. Piezoelectric devices were fabricated and its crystalline phase transition was measured by using the Fourier transform infrared spectroscope. The results demonstrate that increasing the electric field increases the piezoelectric crystalline phase transitions and results in a device with higher current output under stress. This technique can be used to fabricate fully 3D freeform structured piezoelectric devices for sensing, actuator and energy harvesting applications with a simple, low cost, integrated processing and fabrication step.
机译:本文介绍了一种基于电动抛光过程的新的添加剂制造方法,该方法通常用于无铅压电装置制造的许多聚合物材料处理。这是直接和连续地从聚偏二氟乙烯(PVDF)聚合物长丝杆下的压电装置在强电场下和沿长丝芯的机械拉伸。制造压电器件,通过使用傅里叶变换红外光谱镜测量其晶相转变。结果表明,增加电场增加压电晶相转变并导致压力下电流较高输出的装置。该技术可用于制造完全3D自由形式结构化压电装置,用于具有简单,低成本,集成处理和制造步骤的传感,致动器和能量收集应用。

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