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The influence of the external magnetic field on acoustic properties of magnetic elastomers

机译:外部磁场对磁性弹性体声学特性的影响

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The paper contains experimental results for the velocity of longitudinal acoustic wave, density, longitudinal elasticity modulus and viscosity coefficient of nanocomposite Fe-gel material with different percent content of iron nanoparticles. The concise description of the preparation technology of the samples under study is also included. The determination of the velocity and attenuation of the acoustic wave was based on the measurement of the change in the phase-frequency and insertion loss - frequency characteristics due to placing the samples between radiating and receiving transducers. The effect of magnetic field on the velocity of longitudinal acoustic wave has been also experimentally studied for the used samples. The method of the investigation was based on the measurement of the change in phase of output signal due to variation of magnetic field. It has been stated that the longitudinal modulus of elasticity increases with growing frequency of excited bulk acoustic wave and the velocity of longitudinal acoustic wave shows an enhancement up to 1.75 percent with the increase of magnetic field intensity to 10 kOe.
机译:本文含有具有不同百分比铁纳米粒子含量的纵向声波,密度,纵向弹性模量和粘度系数的纵向声波,密度,纵向弹性模量和粘度系数的实验结果。还包括研究样本的制备技术的简明描述。测定声波的速度和衰减是基于相位频率和插入损耗 - 频率特性的变化的测量,因为将样品放置在辐射和接收换能器之间。磁场对纵向声波速度的影响还针对使用的样品进行了实验研究。该研究的方法是基于由于磁场变化而导致输出信号的变化的测量。已经说明,随着激发散装声波的生长频率,纵向声波的速度随着磁场强度的增加至10只koe的增加,纵向声波频率的纵向弹性模量随着纵向声波的速度显示出高达1.75%的增强。

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