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A study of time stability of piezoelectricity in porous polypropylene electrets

机译:多孔聚丙烯驻极体中压电时间稳定性的研究

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Time stability of piezoelectricity in porous polypropylene (PP) electrets was studied. Piezoelectric e33 and d33 constants and the electromechanical coupling factor kt were evaluated by dielectric resonance method. The amount of storage charge and its temperature stability were measured by short circuit TSD measurement. The experimental results showed e33, d33 and kt decreased after a day passed from charging and became stable after that. The TSD spectra showed three peaks at 65°C, 90°C and 120°C. The decrease of piezoelectricity was in correspond with a decrease of TSD peak at 65°C. Temperature spectra of Young's modulus and permittivity showed ß-relaxation around 10°C and ¿-relaxation around 100°C. The peak temperatures of TSD were covered with the temperature range of ¿-relaxation in a crystal region of PP. Airborne ultrasonic transducer using the porous PP electrets showed the maximum SPL of 95 dB at 150 kHz.
机译:研究了多孔聚丙烯(PP)驻极体中压电的时间稳定性。通过介电共振法评估压电常数e 33 和d 33 以及机电耦合系数k t 。通过短路TSD测量来测量存储电荷的量及其温度稳定性。实验结果表明,充电后一天,e 33 ,d 33 和k t 下降,此后趋于稳定。 TSD光谱显示在65°C,90°C和120°C的三个峰。压电的减少与在65°C的TSD峰值的减少相对应。杨氏模量和介电常数的温度谱显示10°C附近的γ-γ-松弛和100°C附近的γ-γ-β松弛。 TSD的峰值温度覆盖了PP晶体区域中γ-β松弛的温度范围。使用多孔PP驻极体的机载超声换能器在150 kHz时的最大SPL为95 dB。

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