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Phase transformation and shock sensor response of additively manufactured piezoelectric PVDF

机译:加值制造压电PVDF的相变和冲击传感器响应

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Recently the authors discovered the ability to print electroactive PVDF using a modified FDM printer. This paper discusses the results from investigating the phase change during printing using FTIR and DSC measurements. FTIR and DSC data were collected on the filament before the print, the printed filament without an applied electric field and the printed filament with a 30MV/m field applied during the print. The results show a definitive phase change during the print and indicate that the alpha phase of the PVDF was significantly modified. The FTIR results do not indicate a significant change in the beta phase of the polymer which is the dominant electroactive phase. Therefore it is likely that the bulk amorphous polymer phases have been aligned in the process. The response of the printed and poled PVDF demonstrates piezoelectric behavior when subjected to impulse indicating the potential use of the modified printing process to produce sensors.
机译:最近,作者发现了使用改进的FDM打印机打印电活性PVDF的能力。本文讨论了使用FTIR和DSC测量在印刷过程中调查相变的结果。 FTIR和DSC数据在灯丝上收集在灯丝之前,在打印期间,没有施加的电场的印刷灯丝和印刷灯丝,在打印期间施加30mV / m的磁场。结果显示在印刷期间的最终相变,并表明PVDF的α相显着修饰。 FTIR结果不表示聚合物的β相的显着变化,这是主要的电活性相。因此,大块非晶态聚合物阶段可能在该过程中对齐。印刷和极化PVDF的响应在经受脉冲时表现出压电行为,该脉冲指示潜在使用改进的印刷过程以产生传感器。

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