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Effect of electrical state on mechanical and electrical response of a ferroelectric ceramic PZT 95/5 to impact loading

机译:电气状态对铁电陶瓷PZT 95/5对冲击载荷的机械和电响应的影响

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摘要

Ferroelectric ceramic specimens 2–10 mm thick were impact loaded in uniaxial strain to a stress of 1.6 GPa. Material velocity‐time wave profiles were measured using a laser interferometer system. Specimen states studied were unpoled, poled and shorted, and poled with a high resistive load (E?2 kV/mm). The results show clearly the effect of the specimen electrical state on the mechanical response. Evolution of the mechanical wave was studied by measuring profiles for several different thicknesses with the same electrical state. For poled specimens, simultaneous measurements were made of the depolarization current during the impact loading. Measured wave speed of the first detectable disturbance was sonic in some but not all cases. Measurements of Hugoniot states for unpoled material were also obtained.
机译:将2–10 mm厚的铁电陶瓷样品以单轴应变方式加载至1.6 GPa的应力。使用激光干涉仪系统测量材料的速度-时间波轮廓。所研究的试样状态是未极化,极化和短路的,并且在高电阻负载(E?2 kV / mm)下极化。结果清楚地表明了样品电状态对机械响应的影响。通过测量具有相同电状态的几种不同厚度的轮廓来研究机械波的演变。对于极化样品,同时测量冲击载荷期间的去极化电流。在某些情况下,但并非所有情况下,首次可检测到的干扰的测量波速都是声音。还获得了未极化物质的Hugoniot态的测量值。

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    《Journal of Applied Physics》 |1978年第4期|P.2494-2498|共5页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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