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Feasibility research on break-out detection using audio signal in drilling film cooling holes by EDM

机译:EDM钻孔薄膜冷却孔中音频信号爆破检测的可行性研究

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The electrical discharge machining (EDM) process with inner and outer flush is effective for drilling film cooling holes on the blades of aeroengines and gas turbines. Due to the hollow structure of the blades, the break-out status needs to be accurately detected in order to control the position of tool electrode end to prevent the back strike. Currently, the break-out detection is mainly realized based on the change of electrical signals and tool electrode velocity. The previous research shows that the machining stability of the process can be improved by optimizing the outer flush. However, in this case the break-out status is difficult to be detected using the existing methods. In this research, a novel break-out detection method using audio signal is proposed. The audio signals of the process are firstly collected and analyzed through time and frequency domain methods to provide the basis for algorithm design. Then a filter of the audio signals is designed based on the comparison of original signals collected before and after break-out to reduce the impact of noise. And the feature extraction algorithms are designed to reflect the characteristics of break-out with less dimension. Next a recognition model using artificial neural network is established by the features of audio signals, which are classified as before or after break-out. The recognition model is validated by test data acquired by machining experiments and the results verified that the break-out detection using audio signal is feasible in drilling film cooling holes.
机译:具有内部和外侧冲洗的电气放电加工(EDM)工艺对于钻孔薄膜冷却孔在航空发动机和燃气轮机的刀片上是有效的。由于叶片的中空结构,需要精确地检测到突口状态,以便控制刀具电极端以防止后撞击的位置。目前,突破检测主要基于电信号和刀具电极速度的变化来实现。先前的研究表明,通过优化外部冲洗,可以改善该过程的加工稳定性。但是,在这种情况下,使用现有方法难以检测突破状态。在该研究中,提出了一种使用音频信号的新型破坏检测方法。通过时间和频域方法首先收集和分析该过程的音频信号,以提供算法设计的基础。然后基于在突破之前和之后收集的原始信号的比较来设计音频信号的过滤器,以减少噪声的影响。并且特征提取算法旨在反映断裂的特性,尺寸减少。接下来,通过音频信号的特征建立使用人工神经网络的识别模型,其被归类为突破之前或之后。通过通过加工实验获得的测试数据验证识别模型,结果证明了使用音频信号的断开检测在钻孔膜冷却孔中是可行的。

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