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Efficient method for detecting tool failures in high-speed machining process

机译:检测高速加工过程中刀具故障的有效方法

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This research presents a method for detecting tool failures in high-speed face milling. This method detects tool failures from vibration signature maps. Tests were carried out at different tool failure levels, spindle speeds, feed rates, and workpiece mountings. Vibration signals were obtained with an accelerometer and processed using the continuous wavelet transform methodology. The vibration signature maps showed that healthy cutting tools produce a periodic insert passing frequency and its harmonics. In contrast, a damage tool generates additional nonlinear and transient frequencies at nonsynchronous frequencies. The experimental results agree with vibration signature maps obtained from a simulated cutting force model. The proposed method is effective as a tool failure detection method when transient and nonlinear behaviors are presented in face milling process. Moreover, the proposed method showed good results at different process parameters and for several types of tool failures. Finally, it is important to point out the use of accelerometers because they present several advantages against other types of sensors. Advantages such as low cost, wide bandwidth, and easy implementation are important characteristics for tool condition monitoring in high-speed machining.
机译:这项研究提出了一种在高速端面铣削中检测刀具故障的方法。此方法从振动特征图检测工具故障。在不同的刀具故障等级,主轴转速,进给速率和工件安装位置上进行了测试。用加速度计获得振动信号,并使用连续小波变换方法进行处理。振动信号图表明,健康的切削刀具会产生周期性的刀片通过频率及其谐波。相反,损坏工具会以非同步频率生成其他非线性和瞬态频率。实验结果与从模拟切削力模型获得的振动特征图一致。当端面铣削过程中出现瞬态和非线性行为时,该方法可作为一种有效的刀具故障检测方法。此外,所提出的方法在不同的工艺参数和几种类型的工具故障下均显示出良好的结果。最后,指出加速度计的使用很重要,因为它们相对于其他类型的传感器具有多种优势。低成本,宽带宽和易于实施等优点是高速加工中刀具状态监视的重要特征。

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