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Investigation of the nonlinearity of transducer acoustic couplants for nonlinear elastic measurements

机译:用于非线性弹性测量的换能器声耦合剂的非线性研究

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摘要

The study of nonlinear elasticity of materials often relies on attaching contact transducers to a sample to achieve the required strain amplitudes. When measuring and quantifying the degree of nonlinearity, it is assumed that the nonlinearity of the bond between the material and the transducer is negligible. Here, we aim to characterize the nonlinearity of common acoustic couplants used in nonlinear measurements. Other factors are also reported since bond nonlinearity is not the only important property when choosing an acoustic couplant, i.e., amount of energy transfer, thermal properties, cure time, toxicity, and ease of application and/or removal. Various types of acoustic couplants including, epoxies, glues, thermal adhesives, and coupling agents were studied using Nonlinear Resonance Ultrasound Spectroscopy (NRUS), which is a measure of the hysteretic nonlinearity of a material. Measurements were made on cylindrical samples of acrylic, aluminum alloy 6061-T651, and Crab Orchard sandstone, chosen for their range of sound speeds, attenuation, and nonlinearity.
机译:材料非线性弹性的研究通常依赖于将接触式换能器连接到样品上以获得所需的应变幅度。在测量和量化非线性程度时,假设材料和换能器之间键的非线性可以忽略不计。在这里,我们旨在表征非线性测量中使用的普通声学耦合剂的非线性。还报道了其他因素,因为当选择声学耦合剂时,键的非线性不是唯一重要的性质,即,能量转移的量,热性质,固化时间,毒性以及易于施用和/或除去。使用非线性共振超声光谱法(NRUS)研究了各种类型的声学耦合剂,包括环氧树脂,胶水,热粘合剂和偶联剂,该方法可测量材料的滞后非线性。对丙烯酸,圆柱形6061-T651和Crab Orchard砂岩的圆柱形样品进行了测量,并根据其声速,衰减和非线性范围进行了选择。

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