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首页> 外文期刊>IEEE Transactions on Plasma Science >High Voltage Generation With Transversely Shock-Compressed Ferroelectrics: Breakdown Field on Thickness Dependence
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High Voltage Generation With Transversely Shock-Compressed Ferroelectrics: Breakdown Field on Thickness Dependence

机译:横向冲击压缩铁电体产生的高电压:取决于厚度的击穿场

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摘要

The ability of ferroelectric materials to generate high voltage under shock compression is a fundamental physical effect that makes it possible to create miniature autonomous explosive-driven pulsed power systems. Shock-induced depolarization releases an electric charge at the electrodes of the ferroelectric element, and a high electric potential and a high electric field appear across the element. We performed systematic studies of the electric breakdown field, Eb(d), as a function of the ferroelectric element thickness, d, for Pb(Zr0.95Ti0.05)O3 (PZT 95/5) and Pb(Zr0.52Ti0.48)O3 (PZT 52/48) ceramics compressed by transverse shock waves (shock front propagates perpendicular to the polarization vector) and established a relationship between these two values: Eb(d) = const· d-ξ. This law was found to be true in a wide range of ferroelectric element thicknesses from 1 to 50 mm. This result makes it possible to predict ferroelectric generator (FEG) output voltages up to 500 kV and it forms the basis for the design of ultrahigh-voltage FEG systems.
机译:铁电材料在冲击压缩下产生高压的能力是一种基本的物理效应,可以创建微型自主爆炸物驱动的脉冲电源系统。激振引起的去极化在铁电元件的电极上释放了电荷,并且在元件上出现了高电势和高电场。我们对Pb(Zr0.95Ti0.05)O3(PZT 95/5)和Pb(Zr0.52Ti0.48)的击穿电场Eb(d)作为铁电体厚度d的函数进行了系统研究O3(PZT 52/48)陶瓷受到横向冲击波压缩(​​冲击波前垂直于极化矢量传播),并在这两个值之间建立了关系:Eb(d)= const·d-ξ。发现该定律在铁电元件厚度范围从1到50 mm的情况下都是正确的。该结果使得可以预测高达500 kV的铁电发电机(FEG)输出电压,并且为超高压FEG系统的设计奠定了基础。

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