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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Noncontact measurement of vibration using airborne ultrasound
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Noncontact measurement of vibration using airborne ultrasound

机译:使用机载超声进行非接触式振动测量

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摘要

A noncontact ultrasonic method for measuring the surface normal vibration of objects was studied. The instrument consists of a pair of 420 kHz ultrasonic air transducers. One is used to emit ultrasounds toward the moving surface, and the other receives the ultrasound reflected from the object under test. Two effects induce a phase modulation on the received signal. The first effect results from the variation of the round trip time interval /spl tau/ required for the wavefront to go from the emitter to the moving surface and back to the receiver. This is the Doppler effect directly proportional to the surface displacement. The second effect results from the nonlinear parametric interactions of the ultrasonic beams (forward and backward) with the low frequency sound field emitted in the air by the vibrating surface. This latter phenomenon, which is a volume effect, is proportional to the velocity of the vibrating surface and increases with the distance between the transducers and the surface under test. The relative contribution of the Doppler and parametric effects are evaluated, and both have to be taken into account for ultrasonic interferometry in air.
机译:研究了一种用于测量物体表面法向振动的非接触超声方法。该仪器由一对420 kHz超声空气传感器组成。一种用于向移动表面发射超声波,另一种用于接收从被测物体反射的超声波。有两种效应会在接收到的信号上引起相位调制。第一个效果是波前从发射器到移动表面再回到接收器所需的往返时间间隔/ splau的变化引起的。这是与表面位移成正比的多普勒效应。第二个效果是由超声波束(向前和向后)与振动表面在空气中发出的低频声场的非线性参数相互作用产生的。后一种现象是体积效应,与振动表面的速度成比例,并且随着换能器与被测表面之间的距离而增加。对多普勒的相对贡献和参数效应进行了评估,并且在空气中进行超声干涉测量时都必须将两者都考虑在内。

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