Acoustic Emission Sensors to Monitor Early Onset of Necking During Uniaxial Tension

M. Baral, Ali Al-Jewad, A. Breunig, J. Ha, P. Groche, Y. Korkolis, B. Kinsey
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Abstract

Elastic waves are generated and propagate when a material undergoes plastic deformation and can be detected by acoustic emission (AE). In this work, AE measurements are obtained during a uniaxial tension (UT) test using a custom-made sensor employing piezoelectric crystals. The UT tests are performed on an MTS machine with two AE sensors clamped on each end of the specimen gage section. A low pass Butterworth filter is designed to attenuate the high frequency noise from the AE signals. Also, full-field strain measurements on the specimen surface are acquired using the 2-D digital image correlation (DIC) method. A typical result from a UT test reveals, as the plastic deformation increases, the AE signals from each sensor increase until they reach a maximum value followed by a drop of signal until the specimen fractures. It is found through interrogation of the DIC images that the maximum amplitude from the AE signals corresponds to the early onset of localized necking. The goal of this work is to implement the UT findings in an actual forming process (e.g., cup drawing) and monitor the event in real time using closed loop control to achieve improved formability.
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声发射传感器监测在单轴拉伸过程中颈缩的早期发作
弹性波是材料发生塑性变形时产生和传播的,可以通过声发射(AE)来检测。在这项工作中,使用使用压电晶体的定制传感器在单轴张力(UT)测试期间获得声发射测量。UT测试是在MTS机器上进行的,两个声发射传感器夹在试样计部分的每一端。设计了一种低通巴特沃斯滤波器来衰减声发射信号中的高频噪声。同时,利用二维数字图像相关(DIC)方法获得了试件表面的全场应变测量值。UT测试的典型结果表明,随着塑性变形的增加,来自每个传感器的声发射信号增加,直到达到最大值,然后信号下降,直到试样破裂。通过对DIC图像的分析发现,声发射信号的最大振幅对应于局部颈缩的早期发生。这项工作的目标是在实际成形过程(例如,杯形拉伸)中实施UT发现,并使用闭环控制实时监控事件,以实现改进的成形性。
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