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Bulk shear wave propagation in an epoxy: attenuation and phase velocity over five decades of frequency

机译:环氧树脂中的大剪切波传播:在几十个频率上的衰减和相速度

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Proportionality between the ultrasonic wave attenuation coefficient in epoxies and other polymers and frequency is a commonly observed but little understood phenomenon. How it is ultimately explained will depend on the breadth of the frequency range over which it is significant. This paper presents results of experiments to measure loss in a single epoxy material over 5 decades of frequency using 4 complementary techniques - dynamic mechanical analysis, microwave excited low-frequency resonances, a novel guidedwave technique based on a metal-epoxy-metal sandwich, and a conventional pulse mode ultrasonic spectrometer. The results are confined to bulk shear waves in the epoxy. They confirm the linear relationship between attenuation and frequency, and it is shown that the broadband behavior of the attenuation and shear wave phase velocity is consistent with the Kramers- Kronig relationships.
机译:环氧树脂和其他聚合物中的超声波衰减系数与频率之间的比例是通常观察到的但鲜为人知的现象。最终如何解释将取决于有效频率范围的广度。本文介绍了使用4种互补技术测量单一环氧树脂材料在5个频率上的损耗的实验结果-4种互补技术-动态力学分析,微波激发的低频共振,基于金属-环氧树脂-金属夹心的新型导波技术以及传统的脉冲模式超声波光谱仪。结果仅限于环氧树脂中的整体剪切波。他们证实了衰减和频率之间的线性关系,并且表明衰减和剪切波相速度的宽带行为与Kramers-Kronig关系一致。

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