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Ferroelectric nylon-5 and nylon-7 dielectric and electromechanical properties and ultrasonic transducer performance

机译:铁电尼龙5和尼龙7的介电和机电性能以及超声换能器性能

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Ferroelectric (odd-numbered) nylons have gained recent interest for their electromechanical properties which are competitive with PVDF and its copolymers for some sensor applications. Nylon films were prepared by melt quenching and cold drawing to impart three-dimensional molecular orientation. Their thickness-mode high frequency dielectric and electromechanical properties were characterized over a temperature range of 0-160/spl deg/C using a piezoelectric resonance technique. These tests yielded electromechanical coupling coefficients of 0.10-0.15 and mechanical quality factors of 8-12, which are competitive with PVDF and its copolymers. Measurements of the ultrasonic pulse-echo performance of ferroelectric nylon-7 were conducted and compared with PVDF and P(VDF-TrFE) copolymer with the use of a simple contact transducer test fixture. Comparisons were also made of the pulse-echo insertion loss, pulse-width, and bandwidth performance. The effects of water absorption on the nylon film properties and ultrasonic transducer performance are also reported.
机译:铁电(奇数)尼龙由于其机电性能而受到了近期的关注,在某些传感器应用中,其与PVDF及其共聚物具有竞争优势。通过熔融淬火和冷拉伸以赋予三维分子取向来制备尼龙膜。使用压电共振技术在0-160 / spl deg / C的温度范围内表征了它们的厚度模式高频介电和机电性能。这些测试产生的机电耦合系数为0.10-0.15,机械品质因数为8-12,与PVDF及其共聚物竞争。进行了铁电尼龙7超声脉冲回波性能的测量,并使用简单的接触换能器测试夹具将其与PVDF和P(VDF-TrFE)共聚物进行了比较。还对脉冲回波插入损耗,脉冲宽度和带宽性能进行了比较。还报道了吸水率对尼龙膜性能和超声换能器性能的影响。

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