Li Zhipeng, Li Jinghao, Chen Hejuan
School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.
Micromachines (Basel). 2020 Sep 30;11(10):913. doi: 10.3390/mi11100913.
This paper aims to present a novel airflow-induced acoustic piezoelectric generator that can be used to solve the problem of insufficient power supply of modern intelligent fuzes. The sound waves induced by airflow are the key to power generation performance. It is proposed that an edge tone frequency equal to the acoustic mode frequency is a sufficient condition for evoked acoustic waves, and a design idea and scheme for a universal fuze power supply is provided. We establish the vibration model of the airflow-induced acoustic piezoelectric generator. According to the model, the experimental research on the power generation performance shows that the sound pressure frequency, vibration displacement frequency, and output voltage frequency are consistent. The model provides a design idea for a vibration sensor. At the flow rate of 100.8 m/s, the output power is 45.3 mW, which is much higher than the fuze power sources such as the magnetic backseat generator. Therefore, the airflow-induced piezoelectric generator can effectively solve the problem of the modern fuze less types of power supply and low output energy.
本文旨在提出一种新型气流诱导声压电发电机,可用于解决现代智能引信电源供应不足的问题。气流诱导产生的声波是发电性能的关键。提出边缘音调频率等于声学模式频率是诱发声波的充分条件,并提供了一种通用引信电源的设计思路和方案。我们建立了气流诱导声压电发电机的振动模型。根据该模型,对发电性能进行的实验研究表明,声压频率、振动位移频率和输出电压频率是一致的。该模型为振动传感器提供了一种设计思路。在流速为100.8米/秒时,输出功率为45.3毫瓦,远高于磁后座发电机等引信电源。因此,气流诱导压电发电机能够有效解决现代引信电源类型少、输出能量低的问题。