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Optimization of Positioning of an Acoustic Emission Sensor for Monitoring Hot Forging

机译:用于监测热锻件的声发射传感器的位置优化

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摘要

Optimization of a sensor location for effective characterization of a hot forging process using acoustic emission (AE) signals is discussed in this paper. Acoustic emission signals generated during forging operations on an aluminium alloy were recorded using three sensors simultaneously by mounting them on the top bolster, bottom bolster, and bottom die of the press. The AE signals with maximum sensitivity could be detected with a sensor attached to the bottom die in preference to the other positions. Using AE parameters, the forging process could be differentiated into three regions, i.e., 1) yielding of the workpiece material, 2) intermediate deformation region, and 3) filling of the die. The results show that the optimum position of the AE sensor for monitoring hot forging is found to be the bottom die of the forging press.
机译:本文讨论了使用声发射(AE)信号对热锻过程进行有效表征的传感器位置优化。通过将三个传感器同时安装在压机的顶部承梁,底部承梁和底部模具上,使用三个传感器同时记录铝合金锻造过程中产生的声发射信号。优先于其他位置,可以通过安装在下模上的传感器检测具有最高灵敏度的AE信号。使用AE参数,可以将锻造过程分为三个区域,即1)工件材料的屈服,2)中间变形区域和3)模具的填充。结果表明,用于监视热锻件的AE传感器的最佳位置被发现是锻压机的下模。

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