基于聚酰胺在聚四氟乙烯上的接触分离和滑动的摩擦电纳米发电机

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引用次数: 1

摘要

摩擦电纳米发电机(TENGs)因其成本低、制造简单而被提出用于获取机械能。本工作讨论了设计一种由聚四氟乙烯(PTFE)和聚酰胺(PA)等两种不同材料的接触、分离和滑动操作的TENG的可能性。实验观察发现,在聚四氟乙烯表面上粘接绝缘铜线,使聚四氟乙烯静电电荷产生的电压增加。0.1 mm直径的铜线产生的电压值最高,随着铜线直径的增大,电压值逐渐降低。似乎铜线产生了一个电场,而电场又产生了电流。此外,随着铜线匝数的增加,开路电压差增大。一般情况下,接触和分离所记录的电压相对较低,而横向滑动所记录的电压最高。似乎是由于PTFE和PA接触表面摩擦产生的双层ESC产生了电场,而铜线感应的电流在滑动表面产生了额外的电场,导致电压升高。结果表明,在其中一个接触面下插入铜线圈可以提高摩擦电纳米发电机的效率
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TRIBOELECTRIC NANOGENERATOR BASED ON CONTACT AND SEPARATION AS WELL AS SLIDING OF POLYAMIDE ON POLYTETRAFLUOROETHELENE
Triboelectric nanogenerators (TENGs) have been proposed to harvest the mechanical energy because of their low cost and simplicity of manufacturing. This work discusses the possibility of designing a TENG operated by the contact and separation as well sliding of two dissimilar materials such as polytetrafluoroethylene (PTFE) and polyamide (PA). The experimental observation revealed that adhering insulated copper wires in PTFE surface sliding on PA increased the voltage generated from the electrostatic charge (ESC). Copper wires of 0.1 mm diameter generated the highest voltage values, then the voltage decreased with increasing the diameter of the wires. It seems that copper wires induced an electric field that induced an electric current. Besides, as the number of copper wires turns increased, voltage difference of the open circuit increased. Generally, contact and separation recorded relatively lower voltage than sliding, while sliding in the transverse direction showed the highest values. It seems that the double layer of ESC generated due to the friction on the contact surfaces of PTFE and PA generated an electric field, while the electric current induced by the copper wires generated extra electric field on the sliding surfaces leading to the voltage increase. It can be concluded that the efficiency of the triboelectric nanogenerators can be enhanced by inserting copper coil under one of the contacting surfaces
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