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Experimental research on dynamic response of PZT-5H under impact load

机译:冲击载荷下PZT-5H动力响应的实验研究

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摘要

In order to improve the stability of PZT-based sensors, the mechanical, dielectric, ferroelectric and piezoelectric properties of PZT-5H under impact load were studied experimentally by using the separated Hopkinson pressure bar (SHPB) with an electrical output measurement device. At the same time, the experimental study on the material properties of PZT-5H before and after the impact was carried out. The effect of impact cracks on the output voltage of PZT-5H was also analyzed. The results show that the dynamic piezoelectric constants of PZT-514 under low stress impact (10-50 MPa) are different from those under quasi-static state, and the empirical relationship between them and the peak stress is obtained through experiments. The dielectric properties of PZT-5H did not change under low stress impact, but micro-cracks occurred in the material and dielectric loss increased at high frequencies. Under short circuit, the residual polarization intensity of PZT-5H decreases sharply due to impact load. While the impact load causes the secondary polarization and the increase of the residual polarization intensity of PZT under open circuit. When the stress is over 45 MPa, the PZT-5H breaks. The formation of cracks causes abnormal discharge voltage and gap discharge.
机译:为了提高基于PZT的传感器的稳定性,通过使用具有电输出测量装置的分离的Hopkinson压力棒(SHPB)来实验研究冲击载荷下PZT-5H的机械,电介质,铁电和压电性能。同时,对冲击前后PZT-5H的材料特性进行实验研究。还分析了冲击裂纹对PZT-5H的输出电压的影响。结果表明,低应力撞击(10-50MPa)下PZT-514的动态压电常数与准静态下的不同之处不同,并且通过实验获得它们之间的经验关系和峰值应力。 PZT-5H的电介质特性在低应力撞击下没有变化,但在材料中发生微裂纹,介电损耗在高频上增加。在短路下,由于冲击载荷,PZT-5H的残余极化强度急剧下降。虽然冲击载荷导致开路下PZT的二次偏振和升高偏振强度的增加。当应力超过45MPa时,PZT-5H断裂。裂缝的形成导致异常放电电压和间隙放电。

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