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振动磁力测定法:理论方面与模拟

Vibro-magnetometry: theoretical aspects and simulations.

作者信息

Carneiro Adilton O, Baffa Oswaldo, Silva Glauber T, Fatemi Mostafa

机构信息

Departamento de Física e Matemática, Universidade de São Paulo, Brazil.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 May;56(5):1065-73. doi: 10.1109/TUFFC.2009.1140.

Abstract

In this article, we introduce the theory for vibro-magnetometry (VM) with computational simulations for an idealized experimental setup. A method based on acoustic radiation force and magnetic measurement has been proposed for interrogating the mechanical vibrations of a target immersed in fluid medium. In this method, ultrasound radiation is used to exert a low-frequency (in kHz range) force on a rigid magnetized target immersed in a viscoelastic medium. In response, the target vibrates sinusoidally in a pattern determined by viscoelastic properties of the medium. The magnetic field resulting from target vibration is related to both the ultrasonic and low-frequency (kHz range) mechanical characteristics of the medium. We report the relationship between the magnetic field signal and the incident ultrasonic pressure field in terms of the mechanical parameters of the medium. Simulations were conducted to demonstrate a simple approach based on using amplitude-modulated ultrasound to generate a dynamic acoustic radiation force on a magnetic target. The magnetic field generated by vibration of this target is then obtained and used to estimate the radiation-force-induced displacement as a function of time. It was observed that the intensity of the dynamic component of the magnetic field caused by the acoustic excitation is high enough to be registered by a conventional magnetic sensor. When a low stress is applied on a reactive magnetic target embedded in the medium, the subsequent oscillating magnetic field is measured by a dedicated magnetic sensor, yielding the applicable mechanical information of the host medium. The proposed methodology presents a powerful tool for evaluation of acoustic radiation force as well as the mechanical properties of soft materials.

摘要

在本文中,我们介绍了振动磁强计(VM)的理论,并针对理想化的实验装置进行了计算模拟。提出了一种基于声辐射力和磁测量的方法,用于探测浸没在流体介质中的目标的机械振动。在该方法中,超声辐射用于对浸没在粘弹性介质中的刚性磁化目标施加低频(kHz范围)力。作为响应,目标以由介质的粘弹性特性决定的模式进行正弦振动。目标振动产生的磁场与介质的超声和低频(kHz范围)机械特性都有关。我们根据介质的机械参数报告了磁场信号与入射超声压力场之间的关系。进行了模拟,以演示一种基于使用调幅超声在磁性目标上产生动态声辐射力的简单方法。然后获取该目标振动产生的磁场,并用于估计作为时间函数的辐射力引起的位移。观察到由声激发引起的磁场动态分量的强度足够高,可被传统磁传感器记录。当对嵌入介质中的反应性磁性目标施加低应力时,专用磁传感器会测量随后的振荡磁场,从而得出主体介质的适用机械信息。所提出的方法为评估声辐射力以及软材料的机械性能提供了一个强大的工具。

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