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Energy-harvesting characteristics of PZT-5A under gunfire shock

机译:炮火冲击下PZT-5A的能量收集特性

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The energy-harvesting behaviors of a ring-shaped PZT-5A element exposed to gunfire shock are investigated for military applications such as an in-flight power source for electronic fuze. A laboratory test using a pneumatic shock machine up to 3000 g's and a gunfire test accompanied by the acceleration of 65,000 g's have been performed. The PZT-5A element subjected to gunfire shock has worked in its strong-depolarization region, thereby generating the electric energy whose quantity is about 140.4 times larger than that measured in its linear operation region. The experimental studies on the PZT-5A element under dynamic load have demonstrated three physico-electric characteristics: the dependence of piezoelectric constant on load-rate, the shock-aging of piezoelectric effect, and the dependence of energy-transfer efficiency on the change in normalized impulse.
机译:研究了环形PZT-5A元件受到炮火冲击的能量收集行为,以用于军事应用,例如用于电子引信的飞行中电源。已经使用最大3000 g's的气动冲击机进行了实验室测试,并伴随着65,000 g's的加速进行了射击测试。受到枪击冲击的PZT-5A元件在其强去极化区域中起作用,从而产生的电能约为其线性工作区域中所测得电能的140.4倍。在动态负载下对PZT-5A元件进行的实验研究表明了三个物理电学特性:压电常数对负载率的依赖性,压电效应的冲击时效以及能量传递效率对电流变化的依赖性。归一化的冲动。

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