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An Improved Technique for Locating the Point of Impact from the Acoustic Emission Data

机译:一种从声发射数据中确定碰撞点的改进技术

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Triangulation technique for impact point location works very well when the acoustic emission sensors are placed at a relatively large distance from the point of impact. In this situation the time of arrival measurement is not affected significantly by the small error that might arise from not being able to pinpoint the exact time of arrival of the acoustic signal. The conventional technique also requires that the wave speed in the medium is well-known and non-dispersive in the frequency range of interest. If the receiving wave is a P-wave or S-wave or a non-dispersive Rayleigh wave then the conventional triangulation technique is reliable. In this paper it is shown that the conventional triangulation technique is not very reliable for locating the impact point in a plate when the sensors are placed close to the striking point for two reasons - first, it is difficult to pin point the exact time of arrival of the signal and secondly the Lamb modes in a plate are dispersive. Dispersive signals attenuate differently at various frequencies and propagate with different speeds causing distortions in the received signals and thus introduce more error in the time of flight measurement. In this paper an alternative approach is proposed to locate the impact point more accurately. Experiments are carried out with an aluminum plate. The impact points predicted by the conventional triangulation technique and the proposed modified method are compared.
机译:当声发射传感器距撞击点的距离较大时,用于撞击点定位的三角测量技术效果很好。在这种情况下,到达时间的测量不会受到很小的误差的影响,该误差可能是由于无法查明声音信号的确切到达时间而引起的。传统技术还要求介质中的波速是众所周知的,并且在感兴趣的频率范围内是非分散的。如果接收波是P波或S波或非分散瑞利波,则常规三角测量技术是可靠的。本文表明,当传感器靠近撞击点放置时,传统的三角剖分技术对于将撞击点定位在板中并不十分可靠,其原因有两个:第一,很难精确指出到达的确切时间信号的第二,板中的兰姆模式是分散的。色散信号在各种频率下衰减不同,并以不同的速度传播,从而导致接收信号失真,从而在飞行测量时引入更多误差。在本文中,提出了另一种方法来更准确地定位影响点。实验是用铝板进行的。比较了传统三角剖分技术和改进方法预测的冲击点。

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