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Ultrasonic transducers using electron-irradiated vinylidene fluoride-trifluoroethylene copolymers

机译:使用电子辐照的偏二氟乙烯-三氟乙烯共聚物的超声换能器

摘要

Single-element, planar transducers have been fabricated using electron-irradiated poly(vinylidene fluoride-trifluoroethylene) 80/20 mol% copolymers with different electron dosage. Electrical field-induced strain response of copolymer film with 100 Mrad dosage has been studied at 5 kHz and the electrostrictive coefficient was calculated. The transmitting response of the air-backing and epoxy-backing transducers was evaluated with the application of high DC bias voltages. Clear ultrasonic amplitudes and high frequency spectrum (20 MHz) were observed when driven from a standard ultrasonic voltage source through a decoupling circuit. It has also showed that larger generation of ultrasonic waves will be induced under high DC bias field, which is due to the increase of induced d33 piezoelectric coefficient. Two different polar bias voltages, positive and negative, were applied to the transducers and inverse waveforms were received, which was coincident with the theoretical analysis of the strain response of electrostrictive film.
机译:单元素平面换能器已使用电子辐照的聚电子(聚偏二氟乙烯-三氟乙烯)80/20 mol%的电子剂量不同的共聚物制成。研究了在5 kHz下100 Mrad剂量的共聚物薄膜在电场下的应变响应,并计算了电致伸缩系数。使用高直流偏置电压评估了空气背衬式和环氧背衬式换能器的传输响应。从标准超声电压源通过去耦电路驱动时,观察到清晰的超声幅度和高频频谱(> 20 MHz)。它也表明在高直流偏置电场下会产生更大的超声波,这是由于所感应的d33压电系数的增加。将两种不同的极性偏置电压(正负)施加到换能器,并接收到反向波形,这与电致伸缩膜的应变响应的理论分析相符。

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