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Measurements of Acoustic Material Properties Using Ultrasonic Through Transmission Technique

机译:通过传输技术使用超声波测量声学材料的测量

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A method to measure phase velocity and attenuation of compressional and shear waves has been developed using a broadband through-transmission technique. Two pairs of transducers were used, one pair with center frequency 5 MHz (Olympus C309-SU), and the other pair with center frequency 10 MHz (Olympus V327-SU). The method was tested on the homogeneous material Polymethylmethacrylate (PMMA) and the composite material Eccosorb MF-117. Our results were compared with published values for the PMMA material, showing a good agreement with literature, hence, verifying the accuracy of our method In addition, the temperature in the sample was varied from 19°C to 37°C, to investigate how this influences the parameters. A small variation of around 3% was found for the phase velocity, while the temperature influence on the attenuation was considerably larger, increasing 30% when temperature was changed from 19°C to 37°C. These acoustic properties and their temperature effects are essential for transducer designs, especially for clinical applications.
机译:使用宽带通透透射技术开发了测量压缩和剪切波的相位速度和衰减的方法。使用两对换能器,一对符合中心频率5 MHz(OLYMPUS C309-SU),另一对与中心频率10 MHz(OLYMPUS V327-SU)。该方法在均质材料聚甲基丙烯酸甲酸酯(PMMA)上测试和复合材料ECCOSORB MF-117。我们的结果与PMMA材料的公布值进行了比较,表现出与文献的良好协议,因此,验证我们方法的准确性,样品中的温度从19°C变化至37°C,以研究如何影响参数。发现相速度约为3%的小变化,而对衰减对衰减的温度影响相当大,当温度从19℃变为37℃时,增加30%。这些声学性质及其温度效应对于换能器设计至关重要,特别是对于临床应用。

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