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Ultrasonic measurements of the two characteristic lengths in fibrous materials

机译:超声测量纤维材料中两个特征长度

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In a method for measuring the two characteristic lengths in rigid frame porous media proposed by Leclaire et al. [Ph. Leclaire, L. Keiders, W. Lauriks. Determination of the viscous and thermal characteristic lengths of plastic foams by ultrasonic measurements in helium and air. J Appl Phys 1996;80:2009-12] ultrasonic transmission measurements are made through a sample of material when it is saturated with two different gases. It is shown that the accuracy of this method can be limited when the porous medium in saturated with helium as proposed originally. A considerable improvement in the signal-to-noise ratio can be achieved if argon is used instead of helium because the characteristic impedance is higher and the viscous skin depth in argon is 3 times less than that in helium. This paper also discusses the measurement of the tortuosity and the sound velocity in glass wool.
机译:Leclaire等人提出的一种在刚性框架多孔介质中测量两个特征长度的方法。 [Ph。 Leclaire,L。Keiders,W。Lauriks。通过在氦气和空气中进行超声测量,确定塑料泡沫的粘性和热特性长度。 [J Appl Phys 1996; 80:2009-12]当材料样品被两种不同的气体饱和时,通过样品进行超声波透射测量。结果表明,如最初提出的那样,当多孔介质充满氦气时,该方法的精度可能受到限制。如果使用氩气代替氦气,可以实现信噪比的显着改善,因为特征阻抗更高,并且氩气中的粘性趋肤深度比氦气小3倍。本文还讨论了玻璃棉曲折度和声速的测量。

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