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Electromechanical properties of polarized polyvinylidene fluoride films as studied by the piezoelectric resonance method

机译:压电共振法研究偏二氟乙烯偏光膜的机电性能

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摘要

The piezoelectric resonance was observed in free vibrators of uniaxially oriented and biaxially oriented polyvinylidene fluoride films polarized at high electric fields. Using the piezoelectric resonance method, piezoelectric and elastic constants, and electromechanical coupling factors of such films were determined at high frequencies (20 kHz–30 MHz) in the temperature range -170–100 °C. For the uniaxially oriented films, the coupling factors k33 and k32 are independent of temperature, while k31 increases noticeably above the primary dispersion temperature. The value of k33 is about 0.2, one of the largest values ever reported for piezoelectric polymers. Similar results were obtained for the biaxially oriented films. The temperature dependence of elastic and piezoelectric constants of the uniaxially oriented films is interpreted by a model in which the crystalline and amorphous phases are combined in series along the stretching direction and in parallel along the perpendicular directions. The origin of the strong piezoelectric effect in polyvinylidene fluoride is discussed on the basis that the spontaneous polarization depends on applied stress.
机译:在高电场下极化的单轴取向和双轴取向聚偏二氟乙烯薄膜的自由振动器中观察到压电共振。使用压电共振方法,可以在-170–100 C的高温范围(20 kHz–30 MHz)下确定此类薄膜的压电常数和弹性常数以及机电耦合系数。对于单轴取向膜,耦合因子k33和k32与温度无关,而k31在初级分散温度以上明显增加。 k33的值约为0.2,这是压电聚合物有史以来的最大值之一。对于双轴取向膜获得类似的结果。单轴取向膜的弹性常数和压电常数的温度依赖性通过以下模型来解释:在该模型中,结晶相和非晶相沿拉伸方向串联结合而沿垂直方向平行结合。在自发极化取决于施加应力的基础上,讨论了聚偏二氟乙烯中强压电效应的起源。

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    《Journal of Applied Physics》 |1976年第3期|P.949-955|共7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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