压电发电机的最大电荷产生

C.S. Pinkston, T. Engel
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引用次数: 2

摘要

本研究的压电发电机提供了一种将机械能转化为电能的方法。脉冲调节级也包括在发电机中。虽然发电机的能量密度与电池相比不是很高,但它的耐用性、紧凑性和长保质期在某些应用中是有利的。压电发电机由市售的压电元件组成,这些压电元件排列成堆叠并并联电连接。一块钢块落在压电堆上,作为机械能的来源。由于其内部电容,压电发电机的效率最多为50%。在本研究中,压电发生器的内部电容为0.15 muF。压电发生器通过整流二极管连接到外部0.1 muF电容器。外部电容器用作中间能量存储或脉冲调节阶段。结果表明,该压电发电机产生的能量为0.3 J,高于以往研究的发电机。最大能量储存时间在本研究中没有测量,而是受到外部电容器耗散的限制。在发电机最高电压为1.4 kV时,测量了约18 kN的峰值机械力。
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Maximum Charge Generation in a Piezoelectric Generator
The piezoelectric generator of this investigation provides a method to convert mechanical energy into electrical energy. A pulse conditioning stage is also included in the generator. Although the energy density of the generator is not extremely high in comparison to batteries, its durability, compactness, and long shelf-life are advantageous in certain applications. The piezoelectric generator consists of commercially available piezoelectric elements arranged in a stack and electrically connected in parallel. A steel mass is dropped on the piezoelectric stack and serves as a source of mechanical energy. The piezoelectric generator is, at most, 50% efficient due to its internal capacitance. In this investigation, the piezoelectric generator has a 0.15 muF internal capacitance. The piezoelectric generator is connected to an external 0.1 muF capacitor through a rectifier diode. The external capacitor is used as an intermediate energy storage, or pulse- conditioning stage. Results show the piezoelectric generator produces 0.3 J of energy which is higher than generators of previous studies. The maximum energy storage time was not measured in this investigation but is limited by the dissipation of the external capacitor. Peak mechanical forces of approximately 18 kN were measured along with maximum generator voltages of 1.4 kV.
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