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Near-field electrospinning enhances the energy harvesting of hollow PVDF piezoelectric fibers

机译:近场静电纺丝增强了中空PVDF压电纤维的能量收集

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In this study we used the near-field electrospinning (NFES) process with the metallic coaxial needle injector to fabricate piezoelectric poly(vinylidene fluoride) (PVDF) hollow fiber tubes. Using these tubes, we designed an energy capture device featuring parallel electrodes to harvest low-frequency energy. We examined the effects of several parameters on the properties of the piezoelectric PVDF fiber tubes (PPTs), including the core flow rate, shell flow rate, concentration of PVDF, rotating tangential speed, and electric field. The elongation of the PPTs was greater than that of solid PVDF fibers, with the tensile strength of the PPTs reaching 32.49 MPa (as determined through a micro-tensile measurement). The output voltage of the PPTs was considerably higher (71.66 mV) and, with an external load resistance of 6 MU, the output power was also significantly greater (856.07 pW) than the solid PVDF fiber (output voltage = 45.66 mV and the maximum output power = 347.61 pW). As a result, the power generation of the PPTs was 2.46 times higher than that of the solid fibers. Thus, the PPTs not only displayed mechanical stiffness but also produced a greater power output.
机译:在这项研究中,我们将近场静电纺丝(NFES)工艺与金属同轴针头注射器一起用于制造压电聚偏二氟乙烯(PVDF)中空纤维管。使用这些管,我们设计了一种具有平行电极的能量捕获装置,以收集低频能量。我们检查了几个参数对压电PVDF纤维管(PPT)性能的影响,包括纤芯流速,壳流速,PVDF浓度,旋转切线速度和电场。 PPT的伸长率大于固体PVDF纤维的伸长率,PPT的抗张强度达到32.49 MPa(通过微拉伸测量确定)。 PPT的输出电压要高得多(71.66 mV),并且在6 MU的外部负载电阻下,输出功率也要比实心PVDF光纤(输出电压= 45.66 mV和最大输出功率)大得多(856.07 pW)。功率= 347.61 pW)。结果,PPT的发电量是实心纤维的发电量的2.46倍。因此,PPT不仅显示出机械刚度,而且还产生了更大的功率输出。

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