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Influence of acoustoelastic coefficient on wave time of flight in stress measurement in piezoelectric self-excited system

机译:压电自激系统中应力测量中声弹性系数对飞行时间的影响

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This paper presents the Self-excited Acoustical System (SAS) in elastic construction stress change measurement. The system is based on the acoustical autoresonance phenomena and enables an indirect measurement of the construction effort level. The essence of the SAS system is to use a piezoelectric vibration emitter and a piezoelectric vibration receiver placed at a distance, which are coupled with a proper power amplifier, and which are operating in a closed loop with a positive feedback. This causes the excitation of the system. The change of the velocity of wave propagation, which is associated with the change of the resonance frequency in the system is caused by the stress change in the examined material. A variable, which determines the change of the acoustic wave velocity, is called an acoustoelastic coefficient β. Such a coefficient allows to determine the absolute stress value in the tested material.
机译:本文介绍了弹性结构应力变化测量中的自激声学系统(SAS)。该系统基于声学自谐振现象,可以间接测量施工工作量。 SAS系统的本质是使用相距一定距离的压电振动发射器和压电振动接收器,它们与适当的功率放大器耦合,并在具有正反馈的闭环中运行。这引起系统的激励。波传播速度的变化与系统中共振频率的变化有关,这是由被检查材料中的应力变化引起的。决定声波速度变化的变量称为声弹性系数β。这样的系数可以确定被测材料中的绝对应力值。

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