首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Experimental study of the acoustical properties of polymers utilized to construct PVDF ultrasonic transducers and the acousto-electric properties of PVDF and P(VDF/TrFE) films
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Experimental study of the acoustical properties of polymers utilized to construct PVDF ultrasonic transducers and the acousto-electric properties of PVDF and P(VDF/TrFE) films

机译:用于构造PVDF超声换能器的聚合物的声学特性以及PVDF和P(VDF / TrFE)薄膜的声电特性的实验研究

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Several acoustic transmission and reflection technique measurements were carried out to determine mechanical properties (acoustic attenuation and velocity) versus frequency of polyvinylidene-fluoride (PVDF) and six other polymers. Acoustic measurements (0.5 to 12 MHz) included time-delay spectrometry (TDS; in which separate transmitting and receiving transducers utilize a swept frequency signal) and two pulse-echo methods (short tone burst echoes utilizing transducers with different center frequencies and Fourier analysis of echoes sent and received by damped transducers operating in the broadband pulse mode). Electrical impedance measurements of piezoelectric thin films of PVDF and P(VDF/TrFE) yielded comparable high frequency mechanical parameters. Of the seven acoustically examined polymers, PVDF had the greatest acoustic impedance, lowest acoustic velocity, and greatest mechanical loss (13.4 dB/cm per MHz). Polymethyl-methacrylate (PMMA; lucite) and polydimethyl-pentane (TPX) had the lowest loss. PMMA had the highest acoustic velocity, and TPX had the lowest acoustic impedance and a velocity almost identical to that of PVDF. These data are useful in the design of backing, matching, and lens materials to be used in association with PVDF transducers.
机译:进行了几次声透射和反射技术测量,以确定相对于聚偏二氟乙烯(PVDF)和其他六种聚合物的频率的机械性能(声衰减和速度)。声学测量(0.5至12 MHz)包括时延光谱法(TDS;其中独立的发射和接收换能器使用扫频信号)和两种脉冲回波方法(短脉冲猝发回波使用具有不同中心频率的换能器和傅里叶分析由在宽带脉冲模式下运行的阻尼传感器发送和接收的回波)。对PVDF和P(VDF / TrFE)压电薄膜的电阻抗测量得出了相当的高频机械参数。在七个经过声学检查的聚合物中,PVDF具有最大的声阻抗,最低的声速和最大的机械损耗(13.4 dB / cm / MHz)。聚甲基丙烯酸甲酯(PMMA;萤石)和聚二甲基戊烷(TPX)的损耗最低。 PMMA的声速最高,而TPX的声阻抗最低,其速度几乎与PVDF相同。这些数据对于与PVDF传感器配合使用的背衬,匹配和透镜材料的设计很有用。

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