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Correlation of the holes quality with the force signals in a microdrilling process of a sintered tungsten-copper alloy

机译:烧结钨铜合金微孔加工中孔质量与力信号的相关性

摘要

Holes quality errors are an undesired but unavoidable consequence in drilling operations. Due to the small dimensions involved in the microdrilling processes, quality measurement and control must be carried out offline, by using microscopy or other high precision measurement devices. This paper presents a study about the correlation between the holes quality and the force signals in the microdilling process of 0.1 mm and 0.5 mm-diameter holes in a sintered tungsten-copper alloy. The surface of the obtained holes was scanned by means of an interferometry microscope and the error of the holes was computed from the scanned data. The three components of the forces were measured during all the drilling process. The behavior of these signals, in three different intervals (tool entrance, forward motion and backward motion) was described by wavelet package analysis. The features having higher correlation with the holes quality error were the average power of the axial component of the forces in the frequency bands of 0~391 Hz and 3906~4297 Hz, during the backward motion. With these features, a statistical regression model was fitted. The main outcomes of this study are the basement for obtaining reliable models for monitoring systems in microdrilling operations.
机译:孔质量误差是钻孔操作中不希望但不可避免的结果。由于微钻孔过程涉及的尺寸很小,因此必须使用显微镜或其他高精度测量设备离线进行质量测量和控制。本文研究了在烧结钨铜合金中直径为0.1 mm和0.5 mm的微孔加工过程中孔质量与力信号之间的相关性。借助于干涉显微镜对获得的孔的表面进行扫描,并根据扫描数据计算出孔的误差。在所有钻孔过程中均测量了力的三个分量。通过小波包分析来描述这些信号在三个不同间隔(工具进入,向前运动和向后运动)中的行为。与孔质量误差相关性较高的特征是,在向后运动期间,在0〜391 Hz和3906〜4297 Hz频带中力的轴向分量的平均功率。利用这些功能,拟合了统计回归模型。这项研究的主要成果是在微钻作业中获得可靠的监控系统模型的基础。

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